Leucine zipper protein 1 (LUZP1) regulates the constriction velocity of the contractile ring during cytokinesis

Author:

Hyodo Toshinori1ORCID,Asano‐Inami Eri2,Ito Satoko3,Sugiyama Mai2,Nawa Akihiro2,Rahman Md Lutfur4,Hasan Muhammad Nazmul1ORCID,Mihara Yuko1,Lam Vu Quang5,Karnan Sivasundaram1,Ota Akinobu1ORCID,Tsuzuki Shinobu1,Hamaguchi Michinari6,Hosokawa Yoshitaka1,Konishi Hiroyuki1

Affiliation:

1. Department of Biochemistry Aichi Medical University School of Medicine Nagakute Japan

2. Department of Obstetrics and Gynecology Collaborative Research, Bell Research Center Nagoya University Graduate School of Medicine Japan

3. Junshukai Nagoya Japan

4. Department of Biochemistry Emory University School of Medicine Atlanta GA USA

5. Division of Hematology, Department of Internal Medicine Aichi Medical University School of Medicine Nagakute Japan

6. Japan Science and Technology Agency Tokyo Japan

Abstract

There has been a great deal of research on cell division and its mechanisms; however, its processes still have many unknowns. To find novel proteins that regulate cell division, we performed the screening using siRNAs and/or the expression plasmid of the target genes and identified leucine zipper protein 1 (LUZP1). Recent studies have shown that LUZP1 interacts with various proteins and stabilizes the actin cytoskeleton; however, the function of LUZP1 in mitosis is not known. In this study, we found that LUZP1 colocalized with the chromosomal passenger complex (CPC) at the centromere in metaphase and at the central spindle in anaphase and that these LUZP1 localizations were regulated by CPC activity and kinesin family member 20A (KIF20A). Mass spectrometry analysis identified that LUZP1 interacted with death‐associated protein kinase 3 (DAPK3), one regulator of the cleavage furrow ingression in cytokinesis. In addition, we found that LUZP1 also interacted with myosin light chain 9 (MYL9), a substrate of DAPK3, and comprehensively inhibited MYL9 phosphorylation by DAPK3. In line with a known role for MYL9 in the actin‐myosin contraction, LUZP1 suppression accelerated the constriction velocity at the division plane in our time‐lapse analysis. Our study indicates that LUZP1 is a novel regulator for cytokinesis that regulates the constriction velocity of the contractile ring.

Funder

Hori Sciences and Arts Foundation

Japan Society for the Promotion of Science

Ministry of Education, Culture, Sports, Science and Technology

Takeda Science Foundation

Publisher

Wiley

Subject

Cell Biology,Molecular Biology,Biochemistry

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