Literature DB >> 30923890

Meiotic prophase-like pathway for cleavage-independent removal of cohesin for chromosome morphogenesis.

Kiran Challa1,2, Miki Shinohara1,3, Akira Shinohara4.   

Abstract

Sister chromatid cohesion is essential for chromosome segregation both in mitosis and meiosis. Cohesion between two chromatids is mediated by a protein complex called cohesin. The loading and unloading of the cohesin are tightly regulated during the cell cycle. In vertebrate cells, cohesin is released from chromosomes by two distinct pathways. The best characterized pathway occurs at the onset of anaphase, when the kleisin component of the cohesin is destroyed by a protease, separase. The cleavage of the cohesin by separase releases entrapped sister chromatids allowing anaphase to commence. In addition, prior to the metaphase-anaphase transition, most of cohesin is removed from chromosomes in a cleavage-independent manner. This cohesin release is referred to as the prophase pathway. In meiotic cells, sister chromatid cohesion is essential for the segregation of homologous chromosomes during meiosis I. Thus, it was assumed that the prophase pathway for cohesin removal from chromosome arms would be suppressed during meiosis to avoid errors in chromosome segregation. However, recent studies revealed the presence of a meiosis-specific prophase-like pathway for cleavage-independent removal of cohesin during late prophase I in different organisms. In budding yeast, the cleavage-independent removal of cohesin is mediated through meiosis-specific phosphorylation of cohesin subunits, Rec8, the meiosis-specific kleisin, and the yeast Wapl ortholog, Rad61/Wpl1. This pathway plays a role in chromosome morphogenesis during late prophase I, promoting chromosome compaction. In this review, we give an overview of the prophase pathway for cohesin dynamics during meiosis, which has a complex regulation leading to differentially localized populations of cohesin along meiotic chromosomes.

Entities:  

Keywords:  Cohesin; Meiosis; Prophase pathway; Rec8; Wapl

Mesh:

Substances:

Year:  2019        PMID: 30923890     DOI: 10.1007/s00294-019-00959-x

Source DB:  PubMed          Journal:  Curr Genet        ISSN: 0172-8083            Impact factor:   3.886


  4 in total

Review 1.  Rec8 Cohesin: A Structural Platform for Shaping the Meiotic Chromosomes.

Authors:  Takeshi Sakuno; Yasushi Hiraoka
Journal:  Genes (Basel)       Date:  2022-01-22       Impact factor: 4.096

2.  Meiotic sex chromosome cohesion and autosomal synapsis are supported by Esco2.

Authors:  François McNicoll; Anne Kühnel; Uddipta Biswas; Kai Hempel; Gabriela Whelan; Gregor Eichele; Rolf Jessberger
Journal:  Life Sci Alliance       Date:  2020-02-12

3.  Multiple 9-1-1 complexes promote homolog synapsis, DSB repair, and ATR signaling during mammalian meiosis.

Authors:  Catalina Pereira; Gerardo A Arroyo-Martinez; Matthew Z Guo; Michael S Downey; Emma R Kelly; Kathryn J Grive; Shantha K Mahadevaiah; Jennie R Sims; Vitor M Faca; Charlton Tsai; Carl J Schiltz; Niek Wit; Heinz Jacobs; Nathan L Clark; Raimundo Freire; James Turner; Amy M Lyndaker; Miguel A Brieno-Enriquez; Paula E Cohen; Marcus B Smolka; Robert S Weiss
Journal:  Elife       Date:  2022-02-08       Impact factor: 8.140

4.  Rec8 Cohesin-mediated Axis-loop chromatin architecture is required for meiotic recombination.

Authors:  Takeshi Sakuno; Sanki Tashiro; Hideki Tanizawa; Osamu Iwasaki; Da-Qiao Ding; Tokuko Haraguchi; Ken-Ichi Noma; Yasushi Hiraoka
Journal:  Nucleic Acids Res       Date:  2022-04-22       Impact factor: 19.160

  4 in total

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