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Sophie G Martin

@sophiemartinlab.bsky.social
2.4K followers 492 following 76 posts

Professor @Biologie_UNIGE @MoCel_Geneva Loves cells under the microscope!

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Sophie G Martin @sophiemartinlab.bsky.social · 5h
Our study shows that PAK-family kinases inhibit cell-wall repair at the fusion site in fission yeast. Without them, cells rebuild the wall, preventing fusion or fusion pore re-closure. Thus, fungi protect their fusion site from repair, which is necessary to make fungal cell fusion irreversible.
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Sophie G Martin @sophiemartinlab.bsky.social · 5h
The fungal cell wall protects cells from internal pressure and is essential for survival, making it an important target for antifungal drugs. When damaged, cells normally activate repair mechanisms immediately. During mating, however, fungi must locally destroy this wall to allow two cells to fuse.
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Sophie G Martin @sophiemartinlab.bsky.social · 5h
with help by @sajjitasaha.bsky.social, the Dubochet Center for Imaging (DCI) and ALBA Synchrotron @mocel.bsky.social @biology-unige.bsky.social @sciencesunige.bsky.social
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Sophie G Martin @sophiemartinlab.bsky.social · 5h
Happy to share our latest work showing that fungal cell fusion not only requires local cell wall digestion but also inhibition of cell wall repair! PAK-family kinases promote cell fusion irreversibility by preventing cell-wall repair doi.org/10.1016/j.cu... Led by @juliacoronasserna.bsky.social
Post-fusion pak2 mutant cells with narrow fusion pore blocked by a vacuole
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Snezhka Oliferenko @alebenoit.bsky.social · 27/09/2026
People!!! This workshop will be ACE - please share, please apply!
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Omaya Dudin 𓂆 ¦🍉¦🦠¦🔬¦ @dudinlab.bsky.social · 09/06/2026
"Humbled to receive this recognition. This belongs as much to my team, my family, & to my home, Palestine: the people, the place, the joyful stubbornness to enjoy life." Cheers buddy @gautamdey.bsky.social Thx to my mentors @sophiemartinlab.bsky.social, @paveltomancak.bsky.social, & Pierre Gönczy.
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Sophie G Martin @sophiemartinlab.bsky.social · 12/05/2026
How do cells communicate? They use Sms1 ! 🙂 More seriously, Sms1 is the scaffold of the pheromone-MAPK signalling cascade in fission yeast, which @borissieber.bsky.social et al discovered. Have a look at the paper 👇 @biology-unige.bsky.social
nature.com
Phosphoregulation of the novel hemi-arrestin MAPK scaffold Sms1 prevents untimely mating - Nature Communications
This study identifies the hemi-arrestin Sms1 as the essential scaffold for mitogen-activated protein kinase (MAPK) signalling in fission yeast mating. Phosphorylation detaches Sms1 from the plasma mem...
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Biology-UNIGE @biology-unige.bsky.social · 13/05/2026
Congratulations @sophiemartinlab.bsky.social group for your latest publcation in @natcomms.nature.com Phosphoregulation of the novel hemi-arrestin MAPK scaffold Sms1 prevents untimely mating @mocel.bsky.social @sciencesunige.bsky.social
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Sophie G Martin @sophiemartinlab.bsky.social · 12/05/2026
This protein is essential for cells to communicate with a mating partner. Its discovery also reveals that diverse organisms use convergent pathways (with likely distinct evolutionary origins) to solve the same signalling problem.
Yeast cells communicating during mating. Green shows localization of the Sms1 scaffold.
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Sophie G Martin @sophiemartinlab.bsky.social · 12/05/2026
How do cells communicate? They use Sms1 ! 🙂 More seriously, Sms1 is the scaffold of the pheromone-MAPK signalling cascade in fission yeast, which @borissieber.bsky.social et al discovered. Have a look at the paper 👇 @biology-unige.bsky.social
nature.com
Phosphoregulation of the novel hemi-arrestin MAPK scaffold Sms1 prevents untimely mating - Nature Communications
This study identifies the hemi-arrestin Sms1 as the essential scaffold for mitogen-activated protein kinase (MAPK) signalling in fission yeast mating. Phosphorylation detaches Sms1 from the plasma mem...
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Sophie G Martin @sophiemartinlab.bsky.social · 22/03/2026
As initially presented on Biorxiv: bsky.app/profile/soph..., but with a new figure, where we probe pheromone-induced polarized growth.
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Sophie G Martin @sophiemartinlab.bsky.social · 22/03/2026
Distinct #Cdc42 protein levels differentially regulate polarized growth and cell fusion in Schizosaccharomyces pombe The work of @sajjitasaha.bsky.social and @aiswaryasajeevan.bsky.social, with Laura Merlini and Vincent Vincenzetti, now out in @plosbiology.org ! @biology-unige.bsky.social
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Sophie G Martin @sophiemartinlab.bsky.social · 17/03/2026
Arp2/3-dependent actin assembly shapes endosomes and promotes intracellular trafficking in fission yeast The work from Alejandro Melero @ameleroc.bsky.social and Miguel Basante-Bedoya just out in Current Biology. www.sciencedirect.com/science/arti... @biology-unige.bsky.social
sciencedirect.com
Arp2/3-dependent actin assembly shapes endosomes and promotes intracellular trafficking in fission yeast
Endosomes serve as crucial sorting centers that streamline the distribution of cell surface proteins. The early endosome receives traffic from both th…
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Sophie G Martin @sophiemartinlab.bsky.social · 17/03/2026
This leaves an important question: How does the Arp2/3 complex get activated to regulate endosome function in yeast?
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Sophie G Martin @sophiemartinlab.bsky.social · 17/03/2026
We also show Arp2/3 activity is required for trafficking from the endosome to the vacuole.
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Sophie G Martin @sophiemartinlab.bsky.social · 17/03/2026
Despite yeast lacking known Arp2/3 complex regulators on endosomes, we show that Arp2/3 complex activity is required to shape these organelles The imagea shows electron micrographs of yeast endosomes in wildtype and after Arp2/3 inhibition.
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Sophie G Martin @sophiemartinlab.bsky.social · 17/03/2026
Arp2/3-dependent actin assembly shapes endosomes and promotes intracellular trafficking in fission yeast The work from Alejandro Melero @ameleroc.bsky.social and Miguel Basante-Bedoya just out in Current Biology. www.sciencedirect.com/science/arti... @biology-unige.bsky.social
sciencedirect.com
Arp2/3-dependent actin assembly shapes endosomes and promotes intracellular trafficking in fission yeast
Endosomes serve as crucial sorting centers that streamline the distribution of cell surface proteins. The early endosome receives traffic from both th…
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Sophie G Martin @sophiemartinlab.bsky.social · 10/03/2026
Glad to have contributed a very small amount to this study by Sahand Rahi and colleagues
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Sophie G Martin @sophiemartinlab.bsky.social · 03/03/2026
You are finishing your PhD and looking to continue in science? The Martin lab @biology-unige.bsky.social has an open postdoctoral position in cell biology to study cell-cell fusion. For more information, please consult mocel.unige.ch/research-gro.... Thanks for reposting!
mocel.unige.ch
Contact/Job - Department of Molecular and Cellular Biology - UNIGE
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Sophie G Martin @sophiemartinlab.bsky.social · 06/03/2026
Thanks Omaya!
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Sophie G Martin @sophiemartinlab.bsky.social · 06/03/2026
Thanks Mark!
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Biology-UNIGE @biology-unige.bsky.social · 05/03/2026
✨ New postdoctoral opportunity in #cell biology at UNIGE! @sophiemartinlab.bsky.social is looking for a postdoc to study cell–cell fusion. Spread the word and see details below 👇@mocel.bsky.social @sciencesunige.bsky.socia
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Sophie G Martin @sophiemartinlab.bsky.social · 03/03/2026
You are finishing your PhD and looking to continue in science? The Martin lab @biology-unige.bsky.social has an open postdoctoral position in cell biology to study cell-cell fusion. For more information, please consult mocel.unige.ch/research-gro.... Thanks for reposting!
mocel.unige.ch
Contact/Job - Department of Molecular and Cellular Biology - UNIGE
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Journal of Cell Biology @jcb.org · 16/02/2026
🔬 from our February issue shows live imaging of fission yeast mating cells where the P-cell is labeled with the myosin V Myo52-mScarlet-I and the formin Fus1-sfGFP, and the M-cell is labeled with Myo52-mTagBFP2 and a cytosolic mRaspberry. From @sophiemartinlab.bsky.social doi.org/10.1083/jcb....
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Biology-UNIGE @biology-unige.bsky.social · 16/02/2026
Congratulations R. Loewith'Lab for your latest publication in @natsmb.nature.com: Structure and function of the yeast amino acid-sensing SEAC–EGOC supercomplex @mocel.bsky.social @sciencesunige.bsky.social Illustration: @analudelsolart.bsky.social 👉https://www.nature.com/articles/s41594-026-01746-2
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Sophie G Martin @sophiemartinlab.bsky.social · 30/01/2026
Very excited about this new preprint, in which @juliacoronasserna.bsky.social shows how cells ensure that fusion with another cell is irreversible! www.biorxiv.org/content/10.6... @biology-unige.bsky.social 👇
biorxiv.org
PAK-family kinases promote cell fusion irreversibility by preventing cell wall repair
Cell-cell fusion is critical for the sexual life cycle, as it drives the unidirectional transition between haploid and diploid phases. In eukaryotes where fusion occurs between partners with cell wall, fusion requires not only plasma membrane merging but also local removal of the intervening cell wall. However, the integrity of the cell wall, which resists the strong internal turgor pressure and is essential for survival, is normally monitored by signaling pathways that promote repair upon damage. How cell wall integrity pathways allow localized cell wall degradation is not known. In the fission yeast Schizosaccharomyces pombe, we previously identified pak2 deletion mutants that exhibit transient fusion: cells briefly fuse and exchange cytoplasmic contents that signal meiosis but then reseal their fusion pore. This reversal of fusion directionality induces meiosis in haploid cells, with catastrophic consequences. Here, we show that PAK activity is essential for cell-cell fusion, with major contribution for Pak2 and a more minor role for the essential Pak1. Pak2 accumulates at the fusion site, where its kinase activity is controlled to promote both fusion pore opening and expansion, thereby preventing post-fusion pore closure. Strikingly, osmotic stabilization largely suppresses all PAK-associated fusion defects, pointing to a role in cell-wall remodeling rather than plasma-membrane merging. Indeed, correlative light and cryo-soft-X-ray tomography reveals that resealed pores in PAK mutants rebuilt an intact cell wall. Thus, PAKs enforce fusion directionality by antagonizing cell-wall repair mechanisms that otherwise restore separation between mating partners. ### Competing Interest Statement The authors have declared no competing interest. Swiss National Science Foundation, https://ror.org/00yjd3n13, 310030_207909 European Research Council, https://ror.org/0472cxd90, SexYeast; 101019630 European Molecular Biology Organization, ALTF 351-2021
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Sophie G Martin @sophiemartinlab.bsky.social · 30/01/2026
Public consultation on this decision is now open. Please express your opinion. Anyone can write to the address provided here: www.bafu.admin.ch/fr/newnsb/Te...
bafu.admin.ch
Le Conseil fédéral ouvre la procédure de consultation relative à la réorganisation des commissions extraparlementaires
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Sophie G Martin @sophiemartinlab.bsky.social · 30/01/2026
Like my colleagues and as member of this independent, extra-parliamentary commission, I do not understand this decision and find it very worrying. Here is the statement from the SSC : wissenschaftsrat.ch/en/blog/stel...
wissenschaftsrat.ch
Statement by the Swiss Science Council (SSC) on its planned dissolution
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Sophie G Martin @sophiemartinlab.bsky.social · 30/01/2026
The Federal Council is proposing the dissolution of the Swiss Science Council. Independent fact-based, scientific advice should be available for policy decisions.
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Sophie G Martin @sophiemartinlab.bsky.social · 25/01/2026
Wow - this looks amazing! 🤩
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Journal of Cell Biology @jcb.org · 03/12/2025
New work by @valthomas.bsky.social et al. in @sophiemartinlab.bsky.social provides a live, 8-nm precision map of the actin fusion focus for cell-cell fusion in S. #pombe. This reveals #actin aster formation by #myosin Myo52-driven transport of the formin Fus1 nucleator rupress.org/jcb/article/...
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Rockefeller University Press @rupress.org · 03/12/2025
In @jcb.org, @valthomas.bsky.social et al. @sophiemartinlab.bsky.social provide a live, 8-nm precision map of the actin fusion focus for cell-cell fusion in S. #pombe. This reveals #actin aster formation by #myosin Myo52-driven transport of the formin Fus1 nucleator rupress.org/jcb/article/...
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Biology-UNIGE @biology-unige.bsky.social · 04/12/2025
Congratulations @sophiemartinlab.bsky.social and collaborators from @kaksonen.bsky.social for your latest publication in @jcb.org 👏 @mocel.bsky.social @sciencesunige.bsky.social
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Sophie G Martin @sophiemartinlab.bsky.social · 04/12/2025
Thanks!
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Sophie G Martin @sophiemartinlab.bsky.social · 04/12/2025
Thanks to @reviewcommons.org and very fast handling by @jcb.org
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Sophie G Martin @sophiemartinlab.bsky.social · 04/12/2025
An 8-nm precise map in live cells, which revealed #actin aster formation by #myosin V-driven transport of #formin. Happy to see this work now out! 😃 In collaboration with @kaksonen.bsky.social lab #yeast #pombe #cell_fusion @biology-unige.bsky.social
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PomBase: The S. pombe knowledgebase @pombase.bsky.social · 30/10/2025
If you use PomBase, please help us to demonstrate our value, and make improvements by completing our user survey www.surveymonkey.com/r/7GXJL6X
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PLOS Biology @plosbiology.org · 28/10/2025
How is #cytokinesis coordinated to ensure successful #CellDivision? Jian-Qiu Wu @sophiemartinlab.bsky.social &co show that the Ync13-Rga7-Rng10 module coordinates selective tethering & fusion of vesicles containing glucan synthases at the division site @plosbiology.org 🧪 plos.io/43zJ35Z
Working model for the major pathways of plasma membrane deposition and septum formation during cytokinesis. The septum is illustrated asymmetrically intentionally. The top half septum shows septum formation and digestion of the primary septum; the bottom half shows septum formation. (1) F-BAR protein Cdc15 (and others) anchor the contractile ring to the plasma membrane, which recruits the β(1,3)-glucan synthase Bgs1 and its adaptor Sbg1 for primary septum formation. (2) Association of the F-BAR protein Rga7 and coiled-coil protein Rng10 with the Munc13/UNC-13 protein Ync13 recruits the TRAPP-II complex along the cleavage furrow, which tethers vesicles and primes the SM protein Sec1 and its binding partner Mso1 for the SNARE complex assembly to trigger vesicle fusion with the plasma membrane. This pathway maintains normal levels and distribution of gluacan synthases Bgs4/Smi1 and Ags1 for secondary septum formation. (3) The anillin Mid2 and septin rings restrict most of the exocyst complex to the rim of cleavage furrow to tether secretory vesicles loaded with the glucanases Eng1 and Agn1 and other cargos for digestion of primary septum to trigger daughter-cell separation.
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University of Cambridge @cam.ac.uk · 07/10/2025
It is with great sadness that the University shares the news of the death of Professor Sir John Gurdon, founder of the @gurdoninstitute.bsky.social Read our tribute to the visionary Nobel Laureate and watch an interview from 2012, just after he won: bit.ly/4mM8o3r
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Sophie G Martin @sophiemartinlab.bsky.social · 28/09/2025
@biology-unige.bsky.social
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Sophie G Martin @sophiemartinlab.bsky.social · 28/09/2025
Amazingly, her work also led to Sms1, which @borissieber.bsky.social had identified by biochemical means and found to be the long sought-after MAPK scaffold. Very satisfying to come to the same gene through completely different routes! 😀 bsky.app/profile/bori...
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Sophie G Martin @sophiemartinlab.bsky.social · 28/09/2025
Starting from cells strongly impaired for cell fusion (lacking the gene prm1), she evolved enhanced cell fusion capacity, which she showed occurs through both changes in regulatory pathways that lead to increasing fusion attempts, and also through emergence of a latent pathway.
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Sophie G Martin @sophiemartinlab.bsky.social · 28/09/2025
Super happy to see also this story out! 👇 7 years of amazing perseverance from @gaowen.bsky.social, who not only performed experimental evolution showing tradeoff between sexual and asexual reproduction, but also identified all key transcription and genome changes. www.biorxiv.org/content/10.1...
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Sophie G Martin @sophiemartinlab.bsky.social · 26/09/2025
Thanks! We know your papers well! 😀
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Sophie G Martin @sophiemartinlab.bsky.social · 25/09/2025
Super excited that this story by @borissieber.bsky.social is now on BioRxiv! For decades, we thought there was no MAPK scaffold for the ERK-like cascade that promotes sexual reproduction in fission yeast ... until Boris found it ! See the thread 👇 and enjoy the paper! doi.org/10.1101/2025...
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Sebastian Soyk @sebastiansoyk.bsky.social · 17/09/2025
Our department of Plant Molecular Biology at the University of Lausanne @unil.bsky.social is recruiting a Tenure-Track Assistant Professor in the field of Plant-Organism Interactions 🌱🐛🦠🍄! Application before November 30, 2025. See the official job ad for more details: tinyurl.com/mtxdcz6p
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Marko Kaksonen @kaksonen.bsky.social · 07/07/2025
Hello microscopy and imaging experts and enthusiasts! We are looking for a staff scientist to join us here in Geneva to work on microscopy and image analysis projects! See the link for the job announcement (in French and in English). Please apply and/or repost! jobs.unige.ch/www/wd_porta...
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Omaya Dudin 𓂆 ¦🍉¦🦠¦🔬¦ @dudinlab.bsky.social · 08/07/2025
Come and Join our Dpt in Beautiful #Geneva ! We are looking for a #Microscopy & #Image #Analysis expert to help all of us at the Dpt.
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Marko Kaksonen @kaksonen.bsky.social · 24/06/2025
How do cells switch on the actin assembly at endocytic sites? How can this on-switch evolve? Check out our new preprint! www.biorxiv.org/content/10.1...
Localization of WDS proteins and fimbrin in three fungal species.
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Sophie G Martin @sophiemartinlab.bsky.social · 04/07/2025
Congrats Monica! This is amazing 🤩
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