粘蛋白
姐妹染色单体结合力的建立
生物
染色体分离
细胞生物学
同源染色体
姐妹染色单体
波姆裂殖酵母
遗传学
减数分裂
突变体
染色单体
染色体
基因
作者
Ignacio Prusén Mota,Marta Gálová,Alexander Schleiffer,Tan-Trung Nguyen,Ines Kováčiková,Carolina Farias Saad,Gabriele Litos,Tomoko Nishiyama,Juraj Gregáň,Jan‐Michael Peters,Peter Schlögelhofer
标识
DOI:10.1038/s41467-024-49178-0
摘要
Abstract Cohesin mediates sister chromatid cohesion to enable chromosome segregation and DNA damage repair. To perform these functions, cohesin needs to be protected from WAPL, which otherwise releases cohesin from DNA. It has been proposed that cohesin is protected from WAPL by SORORIN. However, in vivo evidence for this antagonism is missing and SORORIN is only known to exist in vertebrates and insects. It is therefore unknown how important and widespread SORORIN’s functions are. Here we report the identification of SORORIN orthologs in Schizosaccharomyces pombe (Sor1) and Arabidopsis thaliana (AtSORORIN). sor1Δ mutants display cohesion defects, which are partially alleviated by wpl1Δ . Atsororin mutant plants display dwarfism, tissue specific cohesion defects and chromosome mis-segregation. Furthermore, Atsororin mutant plants are sterile and separate sister chromatids prematurely at anaphase I. The somatic, but not the meiotic deficiencies can be alleviated by loss of WAPL. These results provide in vivo evidence for SORORIN antagonizing WAPL, reveal that SORORIN is present in organisms beyond the animal kingdom and indicate that it has acquired tissue specific functions in plants.
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