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Griffiths Lab

@griffithslab.bsky.social

Discovering the remarkable intracellular dynamics of killer T cells

56 Followers  |  10 Following  |  12 Posts  |  Joined: 06.01.2025  |  1.4155

Latest posts by griffithslab.bsky.social on Bluesky

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Cytotoxic T lymphocytes adapt to loss of a key polarity factor Cytotoxic T lymphocytes (CTLs) kill infected or cancerous cells by secreting cytotoxic enzymes at the polarised immune synapse, a process called degranulation. The Rho GTPase CDC42 is crucial for cell...

You can find a great summary of the work by @jcellsci.bsky.social here: journals.biologists.com/jcs/article/...

And a profile of first author @adamrochussen.bsky.social here: doi.org/10.1242/jcs....

Huge thanks to @thecimr.bsky.social for supporting this work!

04.08.2025 19:30 β€” πŸ‘ 4    πŸ” 1    πŸ’¬ 0    πŸ“Œ 0
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Transcriptional adaptation after deletion of Cdc42 in primary T cells Highlighted Article: CRISPR/Cas9-mediated deletion of Cdc42 in primary T cells triggers transcriptional adaptation, leading to enhanced T cell function. Chemical inhibition with CASIN is highly specif...

If you find a difference in phenotype between knockout and inhibitor/knockdown, transcriptional adaptation may be the culprit. This remarkable phenomenon demonstrates the robustness & complexity of cells, but can hamper CRISPR-based investigations if you aren't aware of it!

doi.org/10.1242/jcs....

04.08.2025 19:30 β€” πŸ‘ 2    πŸ” 1    πŸ’¬ 2    πŸ“Œ 0
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This phenomenon is called "transcriptional adaptation", as coined by @stainierlab.bsky.social

Consistent with their NMD-mediated mechanism, we found targeting the promoter of Cdc42 avoids TA in CTLs. It also seems to be specific for CDC42 among Rho GTPases in CTLs.

04.08.2025 19:30 β€” πŸ‘ 0    πŸ” 0    πŸ’¬ 1    πŸ“Œ 0
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Multi-omics revealed that the knockout cells were compensating for the loss of CDC42 by transcriptionally upregulating genes that could enhance T cell function, including by upregulating the activity of related Rho GTPases!

04.08.2025 19:30 β€” πŸ‘ 0    πŸ” 0    πŸ’¬ 1    πŸ“Œ 0
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CRISPR/Cas9-mediated gene deletion normally requires several days of recovery before assaying cellular function.

When we performed killing assays daily after delivery of RNPs, we found that the knockout cells initially pheno-copied inhibited cells, but then regained functionality over time

04.08.2025 19:30 β€” πŸ‘ 0    πŸ” 0    πŸ’¬ 1    πŸ“Œ 0
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Inhibiting CDC42 with a chemical inhibitor (CASIN) gave the opposite result: worsened CTL function.

Meanwhile, the knockout cells showed *enhanced* function regardless of inhibitor treatment ...

04.08.2025 19:30 β€” πŸ‘ 0    πŸ” 0    πŸ’¬ 1    πŸ“Œ 0
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Confusingly, we found the knockout cells performed *better* than control cells across killing, degranulation, migration, and signalling.

04.08.2025 19:30 β€” πŸ‘ 0    πŸ” 0    πŸ’¬ 1    πŸ“Œ 0

CDC42 is a Rho GTPase known to control cell polarity and cytoskeletal dynamics in many cell types.

It is necessary for embryonic viability in mice, and pathogenic variants cause immunodeficiency diseases in humans.

To determine its role in CTLs, we targeted the Cdc42 gene via CRISPR/Cas9

04.08.2025 19:30 β€” πŸ‘ 0    πŸ” 0    πŸ’¬ 1    πŸ“Œ 0
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Sometimes, knocking out a gene isn't a good way to figure out the function of that gene ...

In our new @jcellsci.bsky.social paper, we report potent transcriptional adaptation by cytotoxic T lymphocytes (CTLs) in response to CRISPR/Cas9-mediated deletion of the important polarity protein CDC42 πŸ§΅β¬‡οΈ

04.08.2025 19:30 β€” πŸ‘ 30    πŸ” 10    πŸ’¬ 2    πŸ“Œ 1
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As promised at my seminar at NCBS, here is the video showing what happens to the centrosome in a β€œconfused T cell” that is contacting two targets with equal signals.

17.01.2025 10:34 β€” πŸ‘ 4    πŸ” 0    πŸ’¬ 0    πŸ“Œ 0

You're seeing the actin cytoskeleton of cytotoxic T lymphocytes as they crawl across glass. These guys move at around 0.15 ΞΌm/s. Movie taken by PhD student @adamrochussen.bsky.social on our spinning disk confocal microscope.

08.01.2025 09:59 β€” πŸ‘ 5    πŸ” 0    πŸ’¬ 0    πŸ“Œ 0
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Welcome to the dynamic world of T cells!

08.01.2025 09:59 β€” πŸ‘ 6    πŸ” 1    πŸ’¬ 1    πŸ“Œ 1

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