Mary Mirvis

@marymirvis.bsky.social

mesoscale structural cell bio :: cell anatomy, organelle systems, synthesis, language, interdisciplinarity :: PD @UCSF @wallaceucsf.bsky.social :: toddler mama :: mary.mirv.is Any other cell biologists into meta-research, synthesis, HPS or vice versa? HMU

Doing a PhD is - at heart - one long discussion with your mentor. The discussion changes over time - with unexpected turns and ups & downs - but through it all is a pair of people discussing a topic endlessly to make sense of it. PhD students: choose someone you like to talk to!

🥳 Our new paper on C2CD3 is out in @plosbiology.org With the labs of @cellarchlab.com , @chgenoud.bsky.social , and @stearnslab.bsky.social , we revealed the mammalian centriole Distal Ring architecture by combining #UExM and in situ #CryoET. Big congrats to @ebertiaux.bsky.social and all involved.

PLOS Biology@plosbiology.org · 8mo ago

How does C2CD3 contribute to distal appendage formation in centrioles? @centriolelab.bsky.social show that C2CD3 acts as a central architectural organizer of the distal #centriole, bridging the luminal distal ring complex & peripheral appendage sites @plosbiology.org 🧪 plos.io/496XZuH

C2CD3 localizes to a ring structure observed in the lumen of the distal centriole by in situ cryo-electron tomography. Top: Confocal image of an expanded mouse photoreceptor cell immunolabeled for tubulin (magenta) and C2CD3 (green). DC, daughter centriole; BB, basal body; TZ, transition zone; CC, connecting cilium. Scale bar: 500 nm. Middle: In situ cryo-tomogram slices taken along the longitudinal axis of the centriole and connecting cilium. White arrowheads indicate microtubule triplets, black arrowheads indicate microtubule doublets, orange arrowheads mark the luminal ring structure, and yellow highlights the membrane. Scale bar: 50 nm. Bottom:  Model of the architecture of the distal region of the human centriole.

The giant ciliate Stentor has a macronucleus that undergoes a dramatic shape change during cellular regeneration. In poster 038 at CellBio2025 Monday Dec 8, I present work by Isabella Ibalio showing that histone modifications correlate with these dramatic nuclear shape changes.

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Stentor is a single cell that can regenerate missing pieces, but how does it know when something is missing? In poster 406 at CellBio2025 Monday Dec 8, Connie Yan shows that conserved cell cycle machinery plays a key role in triggering cellular regeneration.

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Stentor is a single cell with a complex cortical pattern showing anterior/posterior polarization In poster 410 at CellBio2025 Monday Dec 8, Yina Hudnall shows a role for posterior-enriched mRNA that encoding DNA binding proteins.

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Mitochondria form dynamic networks that can be represented as graphs. But the space of graphs is complex. In poster 376 at CellBio2025 Monday Dec 8, Raphie Mostov presents a mathematical approach to represent mitochondria far more simply.

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The cell is a crowded place where organelles are packed together . In poster B365 at CellBio2025 Monday Dec 8 in the Quantitative Modeling session room 122, Mary Mirvis uses soft x-ray tomography to explore how packing interactions affect organelle shape and interaction.

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The low Reynolds number of cytoplasmic flow which makes mixing hard. In poster 359 at the CellBio2025 meeting Sunday Dec 7, Ulises Diaz shows how giant cells leverage reversible actin gel assembly to drive rapid mixing of cytoplasm, faster even than "chaotic mixing" schemes.

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Flagellar length control in Chlamydomonas is a paradigm for organelle size regulation. In poster 163 at CellBio2025 Sunday Dec 7, I present work by Hiro Ishikawa using a synthetic biology approach to test a length-sensing model based on diffusion of kinesin in flagella

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Flagellar length control in Chlamydomonas is a paradigm for organelle size regulation. In poster 155 at the CellBio2025 meeting Sunday Dec 7, Ximena Garcia Arceo uses Lithium, which increases intraflagellar transport, as a tool to probe how length-altering mutants work.

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This is incredibly cool: if you search for a condition that’s affected your family, the site returns stats on how much NIH has done for that disease, *and* a contact form for reaching out to tell your Members of Congress why you want to see them defend NIH. Pass it on!

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