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Stefan Schoenfelder

@stefanschoenfelder.bsky.social
880 followers 602 following 181 posts

Enhancers, 3D genome organisation, pluripotent stem cells Babraham Institute and Enhanc3D Genomics

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Reposted by Stefan Schoenfelder
Emilia Dimitrova @edimitrova.bsky.social · 02/10/2026
Great session next week! Not to be missed! @paul-villain.bsky.social from our neighbouring lab has a fantastic story
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Rob Klose @robklose.bsky.social · 30/09/2026
Come join us April 2027 for the next instalment of the EMBL Chromatin and Epigenetics meeting. Great invited speakers and lots of talks selected from abstracts! It will be a fantastic meeting (despite the egregious nucleosome images...)
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Mark Peifer (He, him) @peiferlabunc.bsky.social · 29/09/2026
For the last 34 years I have been on the faculty of the UNC-Chapel Hill Department of Biology and have never regretted that decision. This year we are hiring TWO new Assistant Professors in the broad area of Molecular, Cell, Developmental Biology 1/n bio.unc.edu
Front page of the website
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Evgeny Kvon @evgenykvon.bsky.social · 29/09/2026
This is a really cool finding, congrats! It also reminds me of a recent paper from John Lis's lab showing that LTR promoter transcription in the NMU enhancer attenuates its activity: pubmed.ncbi.nlm.nih.gov/42468524/. So it appears to be a broader mechanism?
pubmed.ncbi.nlm.nih.gov
Checking your browser - reCAPTCHA
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Maxim Greenberg @maxvcg.bsky.social · 29/09/2026
Two more days to submit your abstract!!
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Kazuhiro Maeshima @kazu-maeshima.bsky.social · 26/09/2026
🧬 Highly related @natgenet.nature.com paper from @binzmit.bsky.social group, using nucleosome-resolution chromatin modeling: Euchromatin forms condensed domains with short active regions on the surface www.nature.com/articles/s41... Congratulations! 🎉
nature.com
Euchromatin forms condensed domains with short active regions on the surface - Nature Genetics
Simulations integrating micro-C and imaging data provide a coherent view of chromatin organization from nucleosomes to clutches to domains, revealing that most regions form compact domains but short r...
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Janina Rinke @jannelrinke.bsky.social · 25/09/2026
Very happy to see this paper out! 🐜🧬🐜🧬🐜🧬🐜 Great team effort from everyone, led by @shaggyschrader.bsky.social 🙏🏼
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Lukas Schrader @shaggyschrader.bsky.social · 25/09/2026
1/ New paper: doi.org/10.1126/scia... 🐜🧬 Ants exploded into >15,000 species just after the dinosaur-killing asteroid hit Earth. We think we've found one catalyst behind that radiation: transposable elements. With @jannelrinke.bsky.social, @esthervandenbos.bsky.social & others not on here. 🧵1/11
A Pseudomyrmex ant walking casually on a drop of honey.
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Marco Trizzino @marcotrizzino.bsky.social · 25/09/2026
Check the latest preprint from my group!
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Rob Klose @robklose.bsky.social · 25/09/2026
I really enjoyed chatting with Stefan at the recent EMBO transcription and chromatin meeting about some of my thoughts on CpG island biology!
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Lorraine Reese @lorraine-reese.bsky.social · 25/09/2026
Synthetic Biology UK 2026, 2-3 Nov, Southampton UK. Sessions will cover protein and enzyme design, genome-scale rewriting, next-generation nucleic acid technologies and the engineering of genetic circuits and cellular control systems. Still time to register! #synbio 🧪 bit.ly/Synthetic_Biology_2026
Biochemical Society Scientific Meeting: Synthetic Biology UK. Hampshire, UK, 2-3 November 2026. Includes image of delegates during a poster session at a previous Synthetic Biology meeting, and Biochemical Society and event logos
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Transposon and Cancer Epigenetics Group @deniz-lab.bsky.social · 24/09/2026
Delighted to share our first preprint of the lab! We introduce TEgment, a new RNA-seq pipeline that classifies TE expression into distinct structural modalities, distinguishing functional TE activity from transcriptional noise! www.biorxiv.org/content/10.6...
biorxiv.org
TEgment dissects transposable element reactivation upon CDK9 inhibition in acute myeloid leukemia
Cyclin-dependent kinase 9 (CDK9) inhibition represents a promising therapeutic strategy in cancers that disrupts RNA polymerase II pause release and collapses oncogenic transcripts. Here, we show that...
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Emma R Andersson @anderssonlab.bsky.social · 23/09/2026
🧬 Preprint! 🧵 Our goal is to genetically manipulate every embryonic germ layer to enable high throughput in vivo studies. We previously showed mouse ectoderm can be targeted by amniotic injection, enabling cell-specific manipulation, lineage tracing, and knockouts. But how to reach mesoderm?
Schematic of method developed and application. At embryonic day 7.5, a lentiviral library carrying unique 30-nucleotide barcodes and a fluorescent reporter is injected into the mouse exocoelomic cavity. An E8 embryo cross-section shows that this cavity is continuous with the intraembryonic coelomic cavity, allowing the virus to reach and barcode mesodermal progenitors, including lateral plate and paraxial mesoderm.
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Cell - a Cell Press journal @cp-cell.bsky.social · 23/09/2026
Now online! Direct cell-to-cell transmission of retrotransposons
dlvr.it
Direct cell-to-cell transmission of retrotransposons
Retrotransposons can infect neighboring cells using a mechanism that relies on a small fusogen-like protein rather than on the envelope protein that is typically required for infection.
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Teif lab @teiflab.bsky.social · 23/09/2026
Zeng et al, 2026. Transcription factors read a second regulatory code in chromatin www.biorxiv.org/content/10.6... "our findings establish that TFs interpret two complementary layers of genomic information: the primary DNA sequence and a second code written into the nucleosome architecture"
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Alexis Verger 🧬🧫🧪 @alexis-verger.cpesr.fr · 23/09/2026
🤯
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John Greally @greally.bsky.social · 23/09/2026
Tim Bestor has left us. This obituary captures him well — you always had to be at your intellectual peak with him, while his trainees always spoke highly of their experiences. He made a massive contribution to epigenetics, a giant in our field. www.genetics.cuimc.columbia.edu/news/memoria...
genetics.cuimc.columbia.edu
In memoriam of Professor Timothy H. Bestor
In memoriam: Professor Timothy H. Bestor 1952-2026
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Tien-Chi Huang @tienchihuang.bsky.social · 23/09/2026
www.genetics.cuimc.columbia.edu/news/memoria... such a giant.
genetics.cuimc.columbia.edu
In memoriam of Professor Timothy H. Bestor
In memoriam: Professor Timothy H. Bestor 1952-2026
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Ian McGough 🇪🇺🇮🇪🪰 @ianmcgough.bsky.social · 22/09/2026
Proud to share the labs first preprint! Led by Yeon, whose hard work, dedication and drive have been instrumental in bringing the project to this point. Thank you to everyone involved, especially long-term collaborators Yvonne and Yuguang. #Wnt #WntUK #RASopathy #ERK www.biorxiv.org/content/10.6...
biorxiv.org
GPC6 Lipid Shielding Sustains WNT5A Gradients to Prevent a RASopathy-like Developmental State
Morphogen gradients require ligands to disperse across tissues from their sites of production, yet receptor engagement can consume ligand before it reaches distant cells. This poses a particular chall...
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John Timmer @jtimmer.bsky.social · 22/09/2026
Ok, this "there are two separate brains" thing appears to be making the rounds, and I want to be absolutely clear: this is a press office overhyping some perfectly reasonable science that won't come as a surprise to most developmental biologists.
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Raquel Fueyo @fueyoraquel.bsky.social · 22/09/2026
Want an efficient way to delete cis-regulatory elements in stem cells? 🧬 Our lab just published a methods paper in JoVE's collection on 2D/3D Stem Cell-Based Models of Early Mammalian Development. shorturl.at/QB1xo Thank you @ancheldjs.bsky.social for the invitation to contribute!
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Marc A. Marti-Renom @mamartirenom.bsky.social · 22/09/2026
Join us!! International PhD call 👇🏻👇🏻👇🏻 www.crg.eu/en/content/t...
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Guardian US @us.theguardian.com · 21/09/2026
The “jaw-dropping” El Niño currently heating up the planet has burst through the highest temperature ever recorded for the phenomenon, several months before its expected peak.
A line chart showing temperature anomalies in the Niño 3.4 region of the Pacific Ocean, compared to a 30-year rolling base period since 1982.

A gold line shows temperatures in 1997, a teal line in 2025, and a red line in 2026. The red line surpasses all others reaching 3.07ºC, and at an earlier point (September) than the previous El Niño that reached a comparable range in November 2015.
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Sue Biggins @suebiggins.bsky.social · 21/09/2026
Here it is! @basicsci.fredhutch.org is searching for an associate or senior faculty member!
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Arnaud Krebs @arnaudkr.bsky.social · 21/09/2026
We are recruiting! Wet&Dry either combined or separate. If you are excited about gene regulation, new methods in genomics and AI-based interpretation! Talk to us!
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Mark Peifer (He, him) @peiferlabunc.bsky.social · 21/09/2026
The Hutch does amazing work and you'll have remarkable colleagues
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EMBL @embl.org · 21/09/2026
There is still time to apply for the EMBL International PhD Programme! 📢 Don’t miss this opportunity to receive dedicated mentoring while doing interdisciplinary research. Research groups across EMBL are recruiting now! bit.ly/4x9Edss
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Harmit Singh Malik @harmitmalik.bsky.social · 21/09/2026
Thanks to the generosity of the Bezos Family Foundation, @basicsci.fredhutch.org is excited to announce a new search to recruit a Bezos Family Distinguished Scholar : apply.interfolio.com/193655
apply.interfolio.com
Apply - Interfolio {{$ctrl.$state.data.pageTitle}} - Apply - Interfolio
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MwahahahahahadScientist @mads100tist.bsky.social · 24/08/2023
The plot thickens
An X Y axis plot showing dots that get progressively thicker
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paveltomancak.bsky.social @paveltomancak.bsky.social · 20/09/2026
Wow. Amazing, prescient vision of the future of academia by @giorgio.gilest.ro You don’t need to agree, but read and consider.
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Stefan Schoenfelder @stefanschoenfelder.bsky.social · 20/09/2026
The number of MSCA Postdoctoral Fellowship applications in 2026 (21,627) has more than doubled since 2024 (10,360 proposals) and more than tripled since 2022 (7,044). Stating the obvious here but this is not sustainable.
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Angelika Feldmann @angelikafeldmann.bsky.social · 18/09/2026
1\ We know a bit about how 3D chromatin interactions are formed, but what do we know about how they are disrupted? We asked this question in our latest preprint: doi.org/10.64898/202..., focusing on the massive loss of promoter interactions during neuronal differentiation.
doi.org
Developmentally programmed loss of long-range Polycomb interactions is regulated by cohesin
Distal regulatory elements (DREs), such as enhancers, can regulate genes across megabase-long distances, presumably via coming into close spatial proximity. The establishment of new transcriptional programmes during cell type transitions is associated with widespread rewiring of the spatial organisation of the genome, including gain and loss of chromatin interactions. Extensive effort has been invested into understanding how chromatin interactions are formed during development, yet the mechanisms underlying their developmental loss remain largely unclear. By leveraging chromatin accessibility-assisted footprinting, acute protein degradation and chromatin conformation capture, we show that loss of promoter interactions cannot be explained by reduced binding of sequence-specific transcription factors (TFs). Instead, we identify a subset of interactions that depend on cohesin for programmed developmental disruption. These sites are characterized by high Polycomb enrichment and TF occupancy and engage in strong long-range interactions that undergo extensive differentiation-dependent rewiring. Preventing interaction loss by acute cohesin degradation results in the preferential downregulation of associated genes. Together, these results suggest that cohesin indirectly regulates developmental loss of Polycomb interactions by enabling the acquisition of other potentially regulatory contacts in a process that may shape transcriptional programs during cell type transitions. ### Competing Interest Statement The authors have declared no competing interest. European Research Council Helmholtz Society, VH-NG-1604
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Doudna Lab @doudna-lab.bsky.social · 19/09/2026
Out now in Science: Two papers from our lab reveal VIPR, an RNA-guided DNA-targeting system in bacteriophages, providing clues to the origins of CRISPR www.science.org/doi/10.1126/... www.science.org/doi/10.1126/... Congrats to Peter Yoon, @kenjmloi.bsky.social @terryzzy.bsky.social, T.Docter & team
science.org
A noncontiguous code for RNA-guided DNA recognition at the origin of CRISPR-Cas
CRISPR-Cas provides RNA-mediated adaptive immunity, but how its first RNA-guided effector arose is unclear. In this study, we report the discovery of Viral Interference Programmable Repeat (VIPR) syst...
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Dmitri Petrov @petrovadmitri.bsky.social · 17/09/2026
We are searching for an Assistant Professor in Evolutionary Biology! Looking for colleagues asking fundamental questions relating to evolutionary processes and drivers of evolutionary patterns. If you think it is you, please do apply! And please repost. facultypositions.stanford.edu/jobs/assista...
facultypositions.stanford.edu
Assistant Professor in Evolutionary Biology - Stanford University, California, United States
The Department of Biology at Stanford University seeks applicants for a tenure-track Assistant Professor in Evolutionary Biology. A successful candidate will conduct research that asks fundamental que...
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Rada-Iglesias Lab @radaiglesiaslab.bsky.social · 01/09/2026
Have you ever wondered why developmental genes are often regulated by enhancers located at long distances? In this @natgenet.nature.com perspective, we speculate that long-range enhancer positioning may provide regulatory properties essential for proper gene expression www.nature.com/articles/s41...
nature.com
Mechanisms and functional implications of long-range enhancer-dependent gene regulation - Nature Genetics
Development depends on gene regulation by enhancers across long genomic distances. This Perspective discusses mechanisms enabling long-range enhancer–promoter communication and the potential advantage...
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Waggoner Lab @labwaggoner.bsky.social · 16/09/2026
3D genome architecture is functionally required for innate immune memory in macrophages (i.e. memory is encoded in the chromatin) @pnas.org @genentech.bsky.social www.pnas.org/doi/10.1073/...
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Dr Radu Zabet @raduzabet.bsky.social · 15/09/2026
🎉Excited to share the latest paper from my lab, where we developed a new framework to investigate DNA methylation at single-molecule resolution using @oxfordnanopore.bsky.social (ONT) long read sequencing. Work spearheaded by a very talented student Young Jun Kim. www.biorxiv.org/content/10.6... 1/n
biorxiv.org
A Framework for Quantifying DNA Methylation Heterogeneity and Detecting Co-methylated loci from Native Nanopore Sequencing
DNA methylation is an important epigenetic mechanism involved in gene regulation. Most methods focus on analysing DNA methylation averaged from multiple reads, yet these average methylation profiles o...
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bioRxiv Molecular Biology @biorxiv-molbio.bsky.social · 15/09/2026
Enhancer Tuning by Sequence-Specific Repressors www.biorxiv.org/content/10.64898/20…
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Vijay Ramani @vram142.bsky.social · 14/09/2026
Everything you wanted to know about single-molecule epigenomics but were too afraid to ask! Wonderful to co-write (h/t ENORMOUS lift by @arnaudkr.bsky.social) this primer on our nascent field. Also, a 💯 example of wonderful colleagues building something *together*, not in competition =)
nature.com
A practical guide to studying genome function using single-molecule genomics
Nature Reviews Molecular Cell Biology - Single-molecule genomics methods are used to study the activity of regulatory factors on individual DNA molecules genome-wide, thereby enabling...
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Corinna Gebehart @corinnagebehart.bsky.social · 14/09/2026
This article is so frustrating to read. First, this is not just “google’s brain” - there has been so much effort made by scientists around the world to get these connectomes to where they are today, and none of that is recognized here, instead it’s all turned into “big tech company 👍🏻”. And second -
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Martin Steinegger 🇺🇦 @martinsteinegger.bsky.social · 13/09/2026
Fold Spacer lets you fly through protein structures (Weekend project #2). It’s my first game: I originally set out to build a racer with structures as the tracks, but was a little too crazy. So it became this instead. You can upload your own structures. 🌐 martin-steinegger.github.io/Fold-Spacer/
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Noonan Lab @noonanlab.bsky.social · 14/09/2026
New preprint from the lab! Using a humanized mouse model, we found that a Human Accelerated Region drives heterochronic changes in craniofacial and limb development (apologies for the re-post, we needed to adjust the thread a bit): www.biorxiv.org/content/10.6...
biorxiv.org
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Duncan Sproul @sproullab.bsky.social · 14/09/2026
🚨 #Postdoc position open. Want to understand non-canonical #epigenetic regulation of mammalian transcription? Come work @uoe-igc.bsky.social in Edinburgh! We’re looking for a motivated & collaborative colleague with a strong track record. 📅 14 October 2026 📢 Please share Apply here 👇
elxw.fa.em3.oraclecloud.com
Post-Doctoral Research Associate
An exciting postdoctoral position is available to research the role of epigenetic marks in gene regulation.
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John Greally @greally.bsky.social · 13/09/2026
One week left to register, Workshop Transcriptional memory in health and disease: www.unia.es/estudios-y-a... 15 speakers, plus only 50 participants, 3 days of sharing of insights and ideas with leaders in the field.
unia.es
Workshop Transcriptional memory in health and disease
The idea that cells remember past states to prepare their future endeavors has split into two parallel languages that rarely converse. On one side, chromatin epigenetics defines inheritance through th...
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Teresa Rayon @trayon.bsky.social · 12/09/2026
‼️ Postdoc position open. We study how protein metabolism controls time. If you’re excited by this question, we’d love to hear from you! We’re looking for a motivated & collaborative researcher with a strong track record. 📅 30 September 2026 📢 Please share Apply here 👇👇
babraham.current-vacancies.com
Postdoctoral Research Scientist - Babraham
The lab investigates the molecular mechanisms that control biological timing in mouse and human stem cells (Azzi & Rayon, Curr Opinions 2024; Nakanoh et al., Dev Cell 2026). The central aim of this ex...
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Tobias Warnecke @tobiaswarnecke.bsky.social · 11/09/2026
One of the coolest projects I've seen over the last few years. If you have a chance to invite @florianmayer.bsky.social for a talk, you definitely should! You'd be in for a treat.
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Dr Radu Zabet @raduzabet.bsky.social · 11/09/2026
Happy to share the peer-reviewed version of this manuscript now published in Bioinformatics Journal. Briefly, we developed HiCPotts, a novel method to better detect 3D DNA contacts from HiC/microC data. doi.org/10.1093/bioi... bioconductor.org/packages/HiC... For a summary, see original post.
doi.org
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Philippe Batut @philippebatut.bsky.social · 10/09/2026
🧬🔬 Why are enhancers transcribed and how does that impact gene regulation? I’m really excited to share our new paper in @science.org showing that noncoding RNAs control the timing of gene activation in embryos. With Mike Levine #ScienceResearch @columbiamed.bsky.social A few highlights below... 🧵👇
science.org
Noncoding transcription controls the developmental dynamics of long-range gene regulation
The genomic regions regulating gene expression are often themselves transcribed into a variety of noncoding RNAs (ncRNAs). However, the regulatory roles of this noncoding transcription remain largely ...
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Fena Ochs @fenaochs.bsky.social · 10/09/2026
My lab at the Center for Gene Expression (CGEN), University of Copenhagen is looking for a motivated Postdoc interested in cohesin biology, 3D chromatin, and super-resolution microscopy. 📩 Please email your CV and letter of intent to fena.ochs(at)sund.ku.dk.
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Caroline Bartman @cbartman.bsky.social · 10/09/2026
Excited to share the first published paper from my lab! Postdoc Helen Jordan led this study on 1) how metabolites change differently in inflammation in tissues versus in cells in a dish and 2) the role of one of the most-increased metabolites, soluble sialic acid www.jbc.org/article/S002...
jbc.org
Metabolomics of in vivo inflammation identifies soluble sialic acid as a conserved myeloid-cell metabolite
During an immune response, metabolism changes dramatically. Metabolites are oxidized to power immune cell functions, serve as building blocks for proliferation, and act as effectors to regulate pathog...
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