Clamping Down on Mammalian Meiosis
Overview
Affiliations
The RAD9A-RAD1-HUS1 (9-1-1) complex is a PCNA-like heterotrimeric clamp that binds damaged DNA to promote cell cycle checkpoint signaling and DNA repair. While various 9-1-1 functions in mammalian somatic cells have been established, mounting evidence from lower eukaryotes predicts critical roles in meiotic germ cells as well. This was investigated in 2 recent studies in which the 9-1-1 complex was disrupted specifically in the mouse male germline through conditional deletion of Rad9a or Hus1. Loss of these clamp subunits led to severely impaired fertility and meiotic defects, including faulty DNA double-strand break repair. While 9-1-1 is critical for ATR kinase activation in somatic cells, these studies did not reveal major defects in ATR checkpoint pathway signaling in meiotic cells. Intriguingly, this new work identified separable roles for 9-1-1 subunits, namely RAD9A- and HUS1-independent roles for RAD1. Based on these studies and the high-level expression of the paralogous proteins RAD9B and HUS1B in testis, we propose a model in which multiple alternative 9-1-1 clamps function during mammalian meiosis to ensure genome maintenance in the germline.
Dynamic Expression Profile of Follicles at Different Stages in High- and Low-Production Laying Hens.
Yang L, Fan X, Tian K, Yan S, Xu C, Tian Y Genes (Basel). 2024; 15(1).
PMID: 38254930 PMC: 10815237. DOI: 10.3390/genes15010040.
Identification PMS1 and PMS2 as potential meiotic substrates of CDK2 activity.
Palmer N, Talib S, Goh C, Biswas K, Sharan S, Kaldis P PLoS One. 2023; 18(3):e0283590.
PMID: 36952545 PMC: 10035876. DOI: 10.1371/journal.pone.0283590.
DNA binding by the Rad9A subunit of the Rad9-Rad1-Hus1 complex.
Hwang B, Gonzales R, Corzine S, Stenson E, Pidugu L, Lu A PLoS One. 2022; 17(8):e0272645.
PMID: 35939452 PMC: 9359528. DOI: 10.1371/journal.pone.0272645.
Pereira C, Arroyo-Martinez G, Guo M, Downey M, Kelly E, Grive K Elife. 2022; 11.
PMID: 35133274 PMC: 8824475. DOI: 10.7554/eLife.68677.
Meiotic sex chromosome inactivation and the XY body: a phase separation hypothesis.
Alavattam K, Maezawa S, Andreassen P, Namekawa S Cell Mol Life Sci. 2021; 79(1):18.
PMID: 34971404 PMC: 9188433. DOI: 10.1007/s00018-021-04075-3.