MICROTUBULES | Molecular Biochemistry | In vitro Reconstitutions
🦋 posts by lab members
📋 Dynamics and structural changes within the microtubule lattice
🗣️ @kjverhey1.bsky.social - University of Michigan Medical School
📆 Oct 31 - ⏰ 12:00
hosted by: @surreylab.bsky.social - @crg.eu
📍 #PRBB Marie Curie room
📋 Dynamics and structural changes within the microtubule lattice
🗣️ @kjverhey1.bsky.social - University of Michigan Medical School
📆 Oct 31 - ⏰ 12:00
hosted by: @surreylab.bsky.social - @crg.eu
📍 #PRBB Marie Curie room
We’re looking for a *PhD student* to join our lab at @crg.eu
in Barcelona and explore how cells self-organize, uncovering life’s inner design💡
We offer strong mentoring, cutting-edge science, and a vibrant international team🌍
Check the link below!
We’re looking for a *PhD student* to join our lab at @crg.eu
in Barcelona and explore how cells self-organize, uncovering life’s inner design💡
We offer strong mentoring, cutting-edge science, and a vibrant international team🌍
Check the link below!
More info: www.crg.eu/en/content/t...
More info: www.crg.eu/en/content/t...
Sign up here: forms.creacongresos.com/DivIDE/
Sign up here: forms.creacongresos.com/DivIDE/
Do you want to know how do mitotic motors organize the spindle? Wei Xiang's simulations show that just a plus & a minus motor are enough to drive bipolar spindle assembly. Could this explain why kinesin-5 & dynein evolved their unique properties? 🤔
doi.org/10.1073/pnas...
Do you want to know how do mitotic motors organize the spindle? Wei Xiang's simulations show that just a plus & a minus motor are enough to drive bipolar spindle assembly. Could this explain why kinesin-5 & dynein evolved their unique properties? 🤔
doi.org/10.1073/pnas...
Check our latest research @naturecomms.bsky.social: rdcu.be/ecXzr
We reveal how mosaic MTs faithfully mimic the GTP cap, highlighting lattice expansion (not pf twist) as the structural cornerstone of MT stability and dynamic instability.
Congrats to Juan and everybody involved! 🎉
Check our latest research @naturecomms.bsky.social: rdcu.be/ecXzr
We reveal how mosaic MTs faithfully mimic the GTP cap, highlighting lattice expansion (not pf twist) as the structural cornerstone of MT stability and dynamic instability.
Congrats to Juan and everybody involved! 🎉
4 years of tears & anxiety mixed with euphoria, the most genuine laughs & precious friendships. Fabulously chaotic.
Thanks to all those big little #proteins, inside my body and inside the #microscopy chambers 🧪🔬✨
@crg.eu @upf.edu @prbb.org @surreylab.bsky.social
Our team's new publication in the JCB sheds light on the intricate dance of spindle proteins and microtubules! 🕺💃Sabina (@bilirubina.bsky.social) demonstrates that NuMA acts as a mitotic dynein adaptor, binding and capping minus ends to focus them at mitotic spindle poles!
Our team's new publication in the JCB sheds light on the intricate dance of spindle proteins and microtubules! 🕺💃Sabina (@bilirubina.bsky.social) demonstrates that NuMA acts as a mitotic dynein adaptor, binding and capping minus ends to focus them at mitotic spindle poles!