Kinesin-1 patterns Par-1 and Rho signaling at the cortex of syncytial embryos of Drosophila

Author:

Li Long1ORCID,Zhang Na1,Beati Seyed Amir Hamze2ORCID,De las heras chanes Jose3ORCID,di Pietro Florencia3ORCID,Bellaiche Yohanns3ORCID,Müller Hans-Arno J.2ORCID,Großhans Jörg1ORCID

Affiliation:

1. Philipps University 1 Department of Biology, , Marburg, Germany

2. Institute for Biology, University of Kassel 2 Division of Developmental Genetics, , Kassel, Germany

3. Institut Curie, Université PSL, Sorbonne Université, CNRS UMR 3215, Inserm U934, Genetics and Developmental Biology 3 , Paris, France

Abstract

The cell cortex of syncytial Drosophila embryos is patterned into cap and intercap regions by centrosomes, specific sets of proteins that are restricted to their respective regions by unknown mechanisms. Here, we found that Kinesin-1 is required for the restriction of plus- and minus-ends of centrosomal and non-centrosomal microtubules to the cap region, marked by EB1 and Patronin/Shot, respectively. Kinesin-1 also directly or indirectly restricts proteins and Rho signaling to the intercap, including the RhoGEF Pebble, Dia, Myosin II, Capping protein-α, and the polarity protein Par-1. Furthermore, we found that Par-1 is required for cap restriction of Patronin/Shot, and vice versa Patronin, for Par-1 enrichment at the intercap. In summary, our data support a model that Kinesin-1 would mediate the restriction of centrosomal and non-centrosomal microtubules to a region close to the centrosomes and exclude Rho signaling and Par-1. In addition, mutual antagonistic interactions would refine and maintain the boundary between cap and intercap and thus generate a distinct cortical pattern.

Funder

National Institute of Child Health and Human Development

National Institutes of Health

Deutsche Forschungsgemeinschaft

Publisher

Rockefeller University Press

Subject

Cell Biology

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