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Steve Baker

@sfbkr.bsky.social
72 followers 111 following 15 posts

sfbkr lab | influenza and alternative RNA splicing loyola university chicago

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Louise H. Moncla @lhmoncla.bsky.social · 23/09/2026
Our lab just put out a new preprint! Led by Maria Maltepes, we've been working with @tavisanderson.bsky.social and @alexey-markin.bsky.social to understand how host species impacts the fundamentals of how influenza viruses evolve. TLDR, reassortment and selection rates vary widely across species.
scholar.google.com
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Steve Baker @sfbkr.bsky.social · 15/09/2026
Our musings on one of the cell's most radical compartments. Most mitochondrial proteins are nuclear encoded, but it's a long path from gene expression to arrival at the powerhouse. Stressors like viral infection can relocalize mitochondrial proteins to impact defense journals.asm.org/doi/10.1128/...
journals.asm.org
The factory enters the fray: how mitochondrial protein trafficking shapes the host response to infection | Journal of Virology
Mitochondrial protein trafficking sits at the intersection of metabolism and immunity. Redistribution of host and viral proteins to and from the mitochondria underlies a wide range of infection outcom...
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Steve Baker @sfbkr.bsky.social · 20/08/2026
lab 2.0 in Chicago in search of a postdoc! Pursue virus-host interactions, post-translational modifications, and RNA splicing. Excellent in oral and written communication, lab and project management, and an ability to supervise and mentor trainees. sfbkrlab.org www.careers.luc.edu/postings/35620
sfbkrlab.org
sfbkr lab
We study how host alternative splicing shapes the outcome of influenza virus infection — from cryptic isoforms that antagonize the polymerase to the ANP32 proteins that support it.
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Daniel Blanco-Melo @dbm003.bsky.social · 31/01/2026
Excited to share our work on #AncientRNA from alcohol-preserved lungs, recovering the oldest human RNA virus genome (an 18th-century rhinovirus). Our study shows that viral RNA remnants persist in centuries-old tissue, opening new ways to study virus evolution and historical disease #Paleovirology🫁🦠
biorxiv.org
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Ervin Fodor @efodor.bsky.social · 24/01/2026
Cryo-EM structure reveals how influenza A virus NEP binds the viral polymerase at a regulatory hotspot, coordinating RNA synthesis and nuclear export. Fantastic collaboration with @loiccarrique.bsky.social and Jon Grimes. www.science.org/doi/10.1126/...
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Steve Baker @sfbkr.bsky.social · 17/01/2026
Now live! Nearly all human genes contain multiple transcript isoforms - and the genes that predominantly control infection, ISGs, are no different. Using PacBio with analysis help from Yan Guo, Himadri noticed a never-before-seen transcript isoform of ISG15 that potently restricts flu 1/4
biorxiv.org
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Reposted by Steve Baker
Karishma Bisht @karishmabisht.bsky.social · 05/01/2026
Ever wondered how fever helps fight flu? Our research shows that fever-like temperature tip the scales in the battle between the influenza virus and the immune system by enhancing antiviral responses and altering viral RNA dynamics. Check out the full article here: www.science.org/doi/10.1126/...
science.org
Febrile temperature activates the innate immune response by promoting aberrant influenza A virus RNA synthesis
Fever promotes aberrant influenza A virus RNA synthesis and innate immune activation.
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Steve Baker @sfbkr.bsky.social · 19/12/2025
Proud to be in a class with some seriously impressive up-and-comers. Inaugural class here: journals.asm.org/journal/jvi/... I'll be penning an article with colleague and friend @hanckslab.bsky.social on mitochondrial proteins that moonlight to execute immune responses @jvico-eics.bsky.social
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Stephanie L. Williams @stephlwilliams.bsky.social · 27/11/2025
Very happy to have been able to contribute to this study that was published today in Science, which was truly a great collaborative effort. Avian PB1 provides a fitness advantage to IAV at febrile-range temperatures both in vitro and a hyperthermic nouse model 🦠 www.science.org/doi/10.1126/... #flu
science.org
Avian-origin influenza A viruses tolerate elevated pyrexic temperatures in mammals
Host body temperature can define a virus’s replicative profile—influenza A viruses (IAVs) adapted to 40° to 42°C in birds are less temperature sensitive in vitro compared with human isolates adapted t...
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Ed Hutchinson @socialinfluenza.bsky.social · 18/11/2025
On the second day of Christmas, a virus gave to me…
A paper design for cutting out some sort of snowflake
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hanckslab.bsky.social @hanckslab.bsky.social · 26/09/2025
Switches: New..lots of protein-coding mRNAs encode #miRNA ..former Ph.D. student's last hurrah building on our #mitochondria C15orf48/miR-147b stuff bmcgenomics.biomedcentral.com/articles/10....
bmcgenomics.biomedcentral.com
A subclass of small RNAs is encoded by exons of protein-coding genes - BMC Genomics
Background Small RNAs regulate gene expression in species across the tree of life. miRNAs, which impact a variety of cellular and physiological processes ranging from development and stress adaptation to host defense, are one of the best characterized classes of small RNA. Many miRNAs are produced from longer non-coding transcripts generated from host genes via a series of RNA cleavage reactions. The location of a small RNA within a host gene can shape the processing of the mature small RNA. For example, a type of miRNAs derived from host gene intronic sequence, referred to as miRtrons, are Drosha-independent and reliant on splicing for biogenesis. Relatedly, processing of a small RNA from an exon of a protein-coding mRNA, in principle, may destabilize it and compromise translation of the host gene. Prior to extensive transcriptome analysis, informatics analyses identified six human miRNAs embedded in exons of protein-coding genes and experimental studies have characterized additional anecdotal examples. Still, whether protein-coding mRNAs encoding small RNAs represent an appreciable class of host genes given the now recognized complexity of the transcriptome is unclear. Results Our analysis finds 201 small RNAs (118 human and 83 mouse) encoded by expressed exons of protein-coding genes (5’-UTR, CDS, 3’-UTR). Forty-six of these cases (29 human and 17 mouse) are also present in MirGeneDB which includes the most up-to-date miRNA classifications. Many of these small RNAs are poorly characterized with 96% of the protein-coding host gene relationships identified here not previously known. Furthermore, the identification of nearly fifty human and mouse small RNAs embedded within coding exons of canonical ORFs suggests that overlapping hybrid genes might be more common than previously appreciated in higher organisms. Expression analysis for a subset of these small RNAs indicates that many display differential expression across human tissues with the pattern correlating significantly with the expression of the candidate protein-coding host gene. Significance Overall, our analysis suggests that the number of protein-coding transcripts serving as host genes is greater than previously recognized. Our small RNA host gene classifications may serve as a resource to shed new light on small RNA biology, specific host genes, and gene regulation.
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Chris Brooke @christopherbrooke.bsky.social · 29/07/2025
Check out @mfarjo.bsky.social's new preprint where she uses a simulation-based approach to explore the evolutionary consequences of genetic mixing through co-infection for segmented viruses: www.biorxiv.org/content/10.1... hope you like it!
biorxiv.org
The fitness consequences of coinfection and reassortment for segmented viruses depend upon viral genetic structure
Cellular coinfection between multiple virions is a common feature of viral infections. The collective virus-virus interactions enabled by these coinfections can influence the fitness of viral populati...
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Steve Baker @sfbkr.bsky.social · 28/07/2025
Preprint on tandem split-GFP influenza viruses is now up! We strung 7 copies of GFP11 together to make a bright virus with minimal fitness defects. Fluorescence requires GFP1-10 from cells, so we made a few that are relevant for flu. See this fluorescent love story: www.biorxiv.org/cgi/content/...
media.tenor.com
a bald man in a blue suit is making a face .
ALT: a bald man in a blue suit is making a face .
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Erik Karlsson @eakarlsson.bsky.social · 11/07/2025
**JOBS ALERT** The Virology Unit at @PasteurCambodia hiring 1 Scientist and 2 Postdocs to join our fast-moving, field-connected, research-driven team on emerging viruses and zoonoses. 🧪🧬🥼🦠🔬🐓💉🦇😷 Limited time to apply — and we need people to start ASAP.**👇
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Thijs Kuiken @thijskuiken.bsky.social · 28/12/2024
For those interested, my lecture for the University of Sydney Infectious Diseases Institute “The global expansion of H5N1 highly pathogenic avian influenza” is available here on YouTube. It is from May 2024, but is still pertinent. www.youtube.com/watch?v=ImFD...
youtube.com
The global expansion of H5N1 highly pathogenic avian influenza - Prof Thijs Kuiken
YouTube video by Sydney Infectious Diseases Institute
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Steve Baker @sfbkr.bsky.social · 28/11/2024
Nobody ever talks about the Teenage Wildtype Ninja Turtles #MacysThanksgivingDayParade
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Ed Hutchinson @socialinfluenza.bsky.social · 22/11/2024
Do you want to become a virologist? The @CVRinfo PhD programme is now recruiting for both UK and international applicants - rotate in two labs then choose a project tailored to your interests. Also you get to live in Glasgow, which is fab. Please RT! www.findaphd.com/phds/program...
A photo of the Sir Michael Stoker Building, a research centre housed inside a golden metal cube, against the parkland of the Garscube campus as the sun rise lights up the clouds above the Campsie Fells. Image Credit: Rob Gifford.
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Steve Baker @sfbkr.bsky.social · 20/11/2024
Looking for a good PDF reader app that will sync library across devices and allow for simple annotation. I don't need the reference manager aspect. Is there anything better than Paperpile?
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