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Identification of SIN pathway targets reveals mechanisms of crosstalk between NDR kinase pathways
Sneha Gupta1, Sebastian Mana-Capelli, Janel R McLean
1Department of Microbiology and Physiological Systems and Program in Cell Dynamics, University of Massachusetts Medical School, Worcester, MA 01605, USA.
Abstract:
The septum initiation network (SIN) regulates multiple functions during late mitosis to ensure successful completion of cytokinesis in Schizosaccharomyces pombe. One mechanism by which the SIN promotes cytokinesis is by inhibiting a competing polarity pathway called the MOR, which is required for initiation of polarized growth following completion of cytokinesis. Mutual antagonism between the two NDR kinase pathways, SIN and MOR, is required to coordinate cytoskeletal rearrangements during the mitosis-interphase transition. To determine how the SIN regulates the MOR pathway, we developed a proteomics approach that allowed us to identify multiple substrates of the SIN effector kinase Sid2, including the MOR pathway components Nak1 kinase and an associated protein, Sog2. We show that Sid2 phosphorylation of Nak1 causes removal of Nak1 from the spindle pole bodies, which may both relieve Nak1 inhibition of the SIN and block MOR signaling by preventing interaction of Nak1 with the scaffold protein Mor2. Because the SIN and MOR are conserved in mammalian cells (Hippo and Ndr1/2 pathways, respectively), this work may provide important insight into how the activities of these essential pathways are coordinated.
Insights
The septum initiation network (SIN) controls cell division by inhibiting the MOR pathway. This study reveals how SIN kinase Sid2 phosphorylates Nak1, regulating its localization and blocking MOR signaling, crucial for cell cycle coordination.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- The Septum Initiation Network (SIN) and MOR pathway are critical for cell division and growth.
- Mutual antagonism between SIN and MOR coordinates cytoskeletal changes during mitosis-interphase transition.
Purpose of the Study:
- To elucidate the regulatory mechanism of the MOR pathway by the SIN.
- To identify substrates of the SIN effector kinase Sid2 within the MOR pathway.
Main Methods:
- Proteomics approach to identify SIN effector kinase Sid2 substrates.
- Analysis of Nak1 kinase and Sog2 protein interactions.
Main Results:
- Identified MOR pathway components Nak1 and Sog2 as Sid2 substrates.
- Demonstrated Sid2 phosphorylation of Nak1 leads to its removal from spindle pole bodies.
- Showed this phosphorylation may inhibit SIN and block MOR signaling by disrupting Nak1-Mor2 interaction.
Conclusions:
- Sid2-mediated phosphorylation of Nak1 is a key regulatory step coordinating SIN and MOR pathways.
- Findings offer insights into conserved mechanisms regulating cell division and growth in eukaryotes, including mammals (Hippo and Ndr1/2 pathways).
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