Mms19 promotes spindle microtubule assembly in Drosophila neural stem cells.

Abstract:

:Mitotic divisions depend on the timely assembly and proper orientation of the mitotic spindle. Malfunctioning of these processes can considerably delay mitosis, thereby compromising tissue growth and homeostasis, and leading to chromosomal instability. Loss of functional Mms19 drastically affects the growth and development of mitotic tissues in Drosophila larvae and we now demonstrate that Mms19 is an important factor that promotes spindle and astral microtubule (MT) growth, and MT stability and bundling. Mms19 function is needed for the coordination of mitotic events and for the rapid progression through mitosis that is characteristic of neural stem cells. Surprisingly, Mms19 performs its mitotic activities through two different pathways. By stimulating the mitotic kinase cascade, it triggers the localization of the MT regulatory complex TACC/Msps (Transforming Acidic Coiled Coil/Minispindles, the homolog of human ch-TOG) to the centrosome. This activity of Mms19 can be rescued by stimulating the mitotic kinase cascade. However, other aspects of the Mms19 phenotypes cannot be rescued in this way, pointing to an additional mechanism of Mms19 action. We provide evidence that Mms19 binds directly to MTs and that this stimulates MT stability and bundling.

journal_name

PLoS Genet

journal_title

PLoS genetics

authors

Chippalkatti R,Egger B,Suter B

doi

10.1371/journal.pgen.1008913

subject

Has Abstract

pub_date

2020-11-19 00:00:00

pages

e1008913

issue

11

eissn

1553-7390

issn

1553-7404

pii

PGENETICS-D-20-00873

journal_volume

16

pub_type

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