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The dynamic recruitment of LAB proteins senses meiotic chromosome axis differentiation in C. elegans.

Ruoxi Wang | Jiaxiang Li | Yuqi Tian | Yating Sun | Yu Zhang | Mengfei Liu | Ruirui Zhang | Li Zhao | Qian Li | Xiaoqian Meng | Jun Zhou | Jinmin Gao
The Journal of cell biology | 2024

During meiosis, cohesin and meiosis-specific proteins organize chromatin into an axis-loop architecture, coordinating homologous synapsis, recombination, and ordered chromosome segregation. However, how the meiotic chromosome axis is assembled and differentiated with meiotic progression remains elusive. Here, we explore the dynamic recruitment of two long arms of the bivalent proteins, LAB-1 and LAB-2, in Caenorhabditis elegans. LAB proteins directly interact with the axis core HORMA complexes and weak interactions contribute to their recruitment. LAB proteins phase separate in vitro, and this capacity is promoted by HORMA complexes. During early prophase, synapsis oppositely regulates the axis enrichment of LAB proteins. After the pachytene exit, LAB proteins switch from a reciprocal localization pattern to a colocalization pattern, and the normal dynamic pattern of LAB proteins is altered in meiotic mutants. We propose that LAB recruitment senses axis differentiation, and phase separation of meiotic structures helps subdomain establishment and accurate segregation of the chromosomes.

Pubmed ID: 38010234

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Associated grants

  • Agency: NIH HHS, United States
    Id: P40 OD010440

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Diagenode Bioruptor (tool)

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Caenorhabditis Genetics Center (tool)

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Center that acquires, maintains, and distributes genetic stocks and information about stocks of the small free-living nematode Caenorhabditis elegans for use by investigators initiating or continuing research on this genetic model organism. A searchable strain database, general information about C. elegans, and links to key Web sites of use to scientists, including WormBase, WormAtlas, and WormBook are available.

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