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John Ngo

@johntngo.bsky.social
2K followers 1.4K following 112 posts

Associate Prof of BME at BU Synthetic mechanobiology, single molecules, molecular structure and engineering, bio-organic chemistry, and general enthusiast of science, kindness, and understanding. www.thengolab.com

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Reposted by John Ngo
bioRxiv Cell Biology @biorxiv-cellbio.bsky.social · 20/08/2026
WHaloForce enables chemigenetic imaging of molecular tension in living cells and animals www.biorxiv.org/content/10.64898/20…
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John Ngo @johntngo.bsky.social · 22/05/2026
To H2B… what a LifeAct!
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John Ngo @johntngo.bsky.social · 24/04/2026
My dear ribosome: you’ve betrayed us. #readinglist
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John Ngo @johntngo.bsky.social · 21/04/2026
Excited to share insights on Synthetic Mechanobiology! @currentbiology.bsky.social This field reframes force sensing as a design problem in which mechanical signaling is rewired to achieve useful outcomes & in which rewiring itself is a powerful investigative strategy. www.cell.com/current-biol...
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Michael Lin, MD PhD @michaelzlin.bsky.social · 01/02/2026
Today I'd like to honor the memory of my mentor and friend, Roger Tsien, born 1952 February 1. Today would have been Roger's 74th birthday. Most know Roger for his 2008 Chemistry Nobel Prize with Shimomura and Chalfie. Roger made GFP into the versatile imaging method it is now.
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Julia Lazzari-Dean @jlazzaridean.bsky.social · 18/12/2025
I'm excited to be hiring an intern to develop new fluorescence-based assays for alpha synuclein aggregation at Calico during summer 2026 😃 🔬 If you're a current PhD student who loves microscopy, unnatural amino acids, and/or synuclein biophysics, please apply! www.calicolabs.com/careers/?gh_...
calicolabs.com
Careers - Calico
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John Ngo @johntngo.bsky.social · 10/11/2025
Computrs usd a rstrictd alphabt to dsign protins that fold & “mak sns.”
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Rita Strack @ritastrack.bsky.social · 25/10/2025
@natbiomedeng.nature.com had a 🔥🔥 week this week! Why don't we have any followers on this site 😆😭
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John Ngo @johntngo.bsky.social · 15/10/2025
“Force”-ing this back into your feeds since I forgot to add the ReadCube link! rdcu.be/eKLv5
rdcu.be
Synthetic mechanotransduction
Nature Reviews Bioengineering - Cells convert mechanical forces into biochemical signals through mechanotransduction, a process which can now be synthetically engineered. In this Review, we examine...
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John Ngo @johntngo.bsky.social · 14/10/2025
Pleased to share our review on “Synthetic Mechanotransduction” — now live at Nature Reviews Bioengineering. May the force be with you! www.nature.com/articles/s44...
nature.com
Synthetic mechanotransduction - Nature Reviews Bioengineering
Cells convert mechanical forces into biochemical signals through mechanotransduction, a process which can now be synthetically engineered. In this Review, we examine engineered artificial mechanotrans...
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Nature Reviews Bioengineering @natrevbioeng.nature.com · 13/10/2025
Synthetic mechanotransduction
nature.com
Synthetic mechanotransduction
Nature Reviews Bioengineering, Published online: 13 October 2025; doi:10.1038/s44222-025-00366-7Cells convert mechanical forces into biochemical signals through mechanotransduction, a process which can now be synthetically engineered. In this Review, we examine engineered artificial mechanotransduction mechanisms, from gene circuits responsive to mechanical cues to synthetic force-generating systems that reshape tissue behaviour and cellular function.
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Matt Bogyo @mbogyo.bsky.social · 26/09/2025
After a long journey and much hard work from many talented scientists, our paper is finally out. Take a look if you are interested in proteases and host microbe interactions in the gut. www.cell.com/cell-host-mi...
cell.com
A Bacteroides fragilis protease activates host PAR2 to induce intestinal pain and inflammation
Lakemeyer and colleagues analyze the secretome of gut bacteria to identify factors that target host PAR2. They find that the Bacteroides fragilis protease Bfp1 cleaves and activates PAR2, disrupting i...
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Gene Chong @chongg.bsky.social · 24/09/2025
Engineered bispecific Notch agonists “pull” on and mechanically activate Notch receptors in the presence of desired biomarkers www.nature.com/articles/s41...
nature.com
Engineering synthetic agonists for targeted activation of Notch signaling - Nature Chemical Biology
The development of soluble Notch agonists is a challenge because of the mechanical forces needed to activate Notch receptors. Here, bispecific Notch agonist proteins were designed that ‘pull’ on and activate Notch receptors in the presence of desired biomarkers.
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Itay Budin @ibudin.bsky.social · 15/09/2025
Very excited to share new work out today in @natchembio.nature.com on a new approach - FACES - for selectively imaging of phospholipids and other biomolecules at spatial resolutions down to individual membrane leaflets (1/n) www.nature.com/articles/s41...
nature.com
Leaflet-specific phospholipid imaging using genetically encoded proximity sensors - Nature Chemical Biology
An approach combining bioorthogonal chemistry with genetically encoded fluorogen-activating proteins enables subcellular imaging of phospholipids and glycans, as well as the visualization of lipid tra...
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John Ngo @johntngo.bsky.social · 22/09/2025
🚀 Our new paper is out @natmethods.nature.com! Kuffer & Marzilli engineered conditionally stable MS2 & PP7 coat proteins (dMCP & dPCP) that degrade unless bound to RNA, enabling ultra–low-background, single-mRNA imaging in live cells. 🔗 www.nature.com/articles/s41... 🧬 www.addgene.org/John_Ngo/
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John Ngo @johntngo.bsky.social · 19/09/2025
Do what you love and love what you do, and if you can, leave the world a better, more open, and more understanding place.
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John Ngo @johntngo.bsky.social · 20/08/2025
My lab at BU is looking to hire a post-doc with experience in biophysics, protein engineering, and chemical (or synthetic) biology. The anticipated start date is Jan 2026. Please send a resume, cover letter, and names/emails for 3 references. We are looking to interview people during Sept/Oct 2025.
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Harry Low’s Lab @lowlab.bsky.social · 11/08/2025
Please RT 🙏 If you’re an early career researcher working in the fields of structural or synthetic biology wishing to start your lab then come join us at Imperial. We’re looking to support outstanding individuals for external Career Development Awards/Fellowships. www.imperial.ac.uk/media/imperi...
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John Ngo @johntngo.bsky.social · 17/07/2025
For those who can, and while you are in it, give science, knowledge, possibility, and hope your full effort. We’re counting on you. It’ll be worth it… trust me.
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John Ngo @johntngo.bsky.social · 17/07/2025
For those who can, and while you are in it, give science, knowledge, possibility, and hope your full effort. We’re counting on you. It’ll be worth it… trust me.
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John Ngo @johntngo.bsky.social · 17/07/2025
Everybody be you and keep going. Do your best. We are so proud of you!
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John Ngo @johntngo.bsky.social · 21/06/2025
This group photo from the 1999 Bioorganic GRC is everything… and more!
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John Ngo @johntngo.bsky.social · 19/06/2025
Greetings from the 2025 Bioorganic GRC, where this gem is on display in the meeting history books. So many familiar faces—who do you see? Check out right side row 3 for RYT. @michaelzlin.bsky.social
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John Ngo @johntngo.bsky.social · 18/04/2025
To my fellow young scientists---I have one key message to share with you right now: do what you love and love what you do. That is exactly science needs right now.
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John Ngo @johntngo.bsky.social · 12/05/2025
Quan Le engineered intracellular nanobodies that can be stabilized and activated by NS3 protease inhibitors. By inserting NS3 at key sites, he created drug-sensitive nanobodies targeting GFP, mCherry, ALFA tag, and the β2-adrenergic receptor. Check it out here:
pubs.acs.org
Protease-Containing Nanobodies for Detecting and Manipulating Intracellular Antigens Using Antiviral Drugs
Tools to induce the formation of protein–protein interactions (PPIs) via small molecules are essential for investigating and engineering biological systems. Here we introduce a protease-based strategy...
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John Ngo @johntngo.bsky.social · 09/05/2025
Thank you for a great semester, BE 209!!
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ACS BIOL: Division of Biochemistry and Chemical Biology @acsbiol.bsky.social · 08/05/2025
In partnership with @pubs.acs.org , #ACSBIOL is proud to announce the winners of the 2025 Hammes Awards: Prof. Karen Allen of @bostonu.bsky.social and Dr. Jianjun Cao of @monashuniversity.bsky.social !
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John Ngo @johntngo.bsky.social · 30/04/2025
Honored to be the 2025 recipient of the ACS Synthetic Biology Young Innovator Award. Hope to see you in Houston for #SEED2025!
axial.acs.org
Meet John Ngo, Winner of the 2025 ACS Synthetic Biology Young Innovator Award | ACS Publications Chemistry Blog
Read an exclusive interview with Prof. Ngo covering his research, his history with the journal, and advice to early career researchers.
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John Ngo @johntngo.bsky.social · 30/04/2025
Check out this awesome handheld sarcomere, crafted by a BE209 student as a last-day-of-classes gift! #calcium
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Reposted by John Ngo
Journal of Cell Biology @jcb.org · 29/04/2025
Makino, Tomishige et al. @utokyoofficial.bsky.social demonstrate that, when #kinesin-1 walks along #microtubules, the detached head cannot rebind to the rear binding site because of an intolerable increase in tension, thus ensuring forward stepping after ATP binding. rupress.org/jcb/article/...
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John Ngo @johntngo.bsky.social · 26/04/2025
CryoEM and motor proteins: such a hot combo right now!
nature.com
The mechanochemical cycle of reactive full-length human dynein 1 - Nature Structural & Molecular Biology
Chai et al. use cryo-electron microscopy to systematically interrogate the conformational landscape of motor protein dynein. The reported structures reveal intermediate states in the mechanochemical c...
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John Ngo @johntngo.bsky.social · 18/04/2025
To my fellow young scientists---I have one key message to share with you right now: do what you love and love what you do. That is exactly science needs right now.
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allen institute @alleninstitute.org · 17/04/2025
Our #CellLineOfTheWeek is alpha tubulin - illuminating the microtubules! 🧫 Our high quality cell lines & plasmids are available for just the cost of shipping to reduce the barriers to scientific discovery. 📦 Distributed by @coriellinstitute.bsky.social and @addgene.bsky.social
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Zikang (Dennis) Huang @dennishuang.bsky.social · 15/04/2025
How can an individual protein show adaptation? The light- and temp-sensitive BcLOV4 gives a pulse of translocation during a step input of light. Answer in our preprint: *intra-molecular* feed-forward regulation. bit.ly/3Rg9veD A @bugajlab.bsky.social collab with @nmrkaygee.bsky.social 🧵
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John Ngo @johntngo.bsky.social · 16/04/2025
Meanwhile, CryoEM continues to make strides: here, the swinging lever mechanism of the actinomysin power stroke is resolved in atomic- and time-resolved detail, via a myosin-5 mutant with slow hyrdolysis product release. Some very awesome single molecule biophysics! www.nature.com/articles/s41...
nature.com
Swinging lever mechanism of myosin directly shown by time-resolved cryo-EM - Nature
A study using time-resolved cryogenic electron microscopy reveals the swinging lever mechanism of myosin, providing information on the molecular basis behind the production of force and movement by my...
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John Ngo @johntngo.bsky.social · 11/04/2025
👇👇👇
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John Ngo @johntngo.bsky.social · 03/04/2025
Just putting some positivity out there: this week made me feel like maybe ‘Reviewer 2’ is not so bad. Here’s to you Reviewer 2 — you make us better! (but let’s not get crazy). Keep goin’ everybody… 🤓
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Itay Budin @ibudin.bsky.social · 27/03/2025
Congrats to @jeremybaskin.bsky.social for receiving the ACS Chemical Biology young investigator award…plus organizing a fantastic session capped off with a tour de force talk on phosphatidic acid dynamics
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John Ngo @johntngo.bsky.social · 26/03/2025
This is quite impressive! Single vesicle sensitivity in synaptic glutamate release…
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John Ngo @johntngo.bsky.social · 25/03/2025
Just in time for the Boston Marathon & our BE209 lecture on signaling & glycogen storage! Today, we did action potentials: one of science’s most fantastic, impactful & amazing delineations! The human brain: a machine so powerful that it can invent AI, decipher its own existence, & cure disease!
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Jeremy Baskin @jeremybaskin.bsky.social · 22/03/2025
It’s an honor to receive the ACS Chem Biol Young Investigator Award! I’m most grateful for the contributions from all past & present lab members — it is an award for all of you as much as for me. (& also grateful to still be considered young 😅) axial.acs.org/chemical-bio... @acsbiol.bsky.social 1/2
axial.acs.org
Dr. Jeremy Baskin wins the 2024 ACS Chemical Biology Young Investigator Award | ACS Publications Chemistry Blog
Get to know more about Dr. Baskin's work and career in this exclusive interview.
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Florent Waltz @florentwaltz.bsky.social · 21/03/2025
I'm super happy that our story is now published! 📖 www.science.org/doi/10.1126/... But what changed compared to the original preprint? Also, I feel i should post Movie 1 🎥, that inspired the cover. Back when I did the original bluesky thread, movies were not available.
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Florent Waltz @florentwaltz.bsky.social · 20/03/2025
The final version of our work on the in-cell architecture of the mitochondrial respiratory chain is now online in @science.org 🎉 You can find the full story here www.science.org/doi/10.1126/... @verenaresch.bsky.social did a wonderful job on the cover and animation, she really brought it to life 👩‍🎨
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John Ngo @johntngo.bsky.social · 18/03/2025
It’s our 5 year “learned about Zoom” anniversary, everybody!! We made it!!!! Keep goin’…
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John Ngo @johntngo.bsky.social · 15/03/2025
Excellent new review on Notch signaling by Sarah Bray and Anna Bigas: www.nature.com/articles/s41...
nature.com
Modes of Notch signalling in development and disease - Nature Reviews Molecular Cell Biology
The Notch pathway regulates many developmental and homeostatic processes in animals. This Review discusses how different modes of Notch signalling can have different functional outcomes, and how their...
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Ritu Raman @rituraman.bsky.social · 13/03/2025
Really cool work from friend and colleague Katie Galloway @mitcheme.bsky.social!
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John Ngo @johntngo.bsky.social · 13/03/2025
🤯 This is amazing! Stabilized PINK1 proteins 'caught in the act,’ trapped mid-translocation, cloggin’ up those TOM complexes, and preserved on depolarized mitochondria in detail (3.1-Å resolution). Mutations of PINK1 can cause Parkinson’s Disease.
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bioRxiv Synthetic Biology @biorxiv-synthbio.bsky.social · 11/03/2025
Protease-Containing Nanobodies for Detecting and Manipulating Intracellular Antigens Using Antiviral Drugs www.biorxiv.org/content/10.1101/202…
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John Ngo @johntngo.bsky.social · 03/03/2025
Plasmids for our destabilized MCP (dMCP) & PCP (dPCP) coat proteins are now on @addgene.bsky.social here: www.addgene.org/browse/article/28252367/ These proteins are degraded by cells except when bound to their RNA hairpin targets (MS2 & PP7): www.biorxiv.org/content/10.1101/2024.11.21.624393v1
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John Ngo @johntngo.bsky.social · 27/02/2025
This paper identifies FAM171A2 as a facilitator of α-synuclein uptake in neurons (with a >1000-fold selectivity for fibrils over the monomeric protein). They also found that the drug bemcentinib can block FAM171A2/α-synuclein interactions in vitro, suggesting it could be used to treat Parkinson’s.
science.org
Neuronal FAM171A2 mediates α-synuclein fibril uptake and drives Parkinson’s disease
Neuronal accumulation and spread of pathological α-synuclein (α-syn) fibrils are key events in Parkinson's disease (PD) pathophysiology. However, the neuronal mechanisms underlying the uptake of α-syn...
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