Graduate School of Biological Sciences, Nara Institute of Science and Technology, Nara, Japan Department of Cell and Molecular Biology, Karolinska Institutet, Stockholm, Sweden
Department of Cell and Molecular Biology, Karolinska Institutet, Stockholm, Sweden.
EMBO J. 2014 Jun 2;33(11):1243-55. doi: 10.1002/embj.201387329. Epub 2014 May 5.
Cohesion between sister chromatids in mitotic and meiotic cells is promoted by a ring-shaped protein structure, the cohesin complex. The cohesin core complex is composed of four subunits, including two structural maintenance of chromosome (SMC) proteins, one α-kleisin protein, and one SA protein. Meiotic cells express both mitotic and meiosis-specific cohesin core subunits, generating cohesin complexes with different subunit composition and possibly separate meiotic functions. Here, we have analyzed the in vivo function of STAG3, a vertebrate meiosis-specific SA protein. Mice with a hypomorphic allele of Stag3, which display a severely reduced level of STAG3, are viable but infertile. We show that meiocytes in homozygous mutant Stag3 mice display chromosome axis compaction, aberrant synapsis, impaired recombination and developmental arrest. We find that the three different α-kleisins present in meiotic cells show different dosage-dependent requirements for STAG3 and that STAG3-REC8 cohesin complexes have a critical role in supporting meiotic chromosome structure and functions.
在有丝分裂和减数分裂细胞中,姐妹染色单体之间的黏合是由一个环形蛋白质结构——黏合复合物促进的。黏合复合物的核心由四个亚基组成,包括两个结构维持染色体(SMC)蛋白、一个α-黏连蛋白和一个 SA 蛋白。减数分裂细胞表达有丝分裂和减数分裂特异性的黏合核心亚基,产生具有不同亚基组成和可能具有不同减数分裂功能的黏合复合物。在这里,我们分析了 STAG3 的体内功能,STAG3 是一种脊椎动物减数分裂特异性的 SA 蛋白。Stag3 杂合子突变小鼠的表型为严重降低的 STAG3 水平,但具有活力且可育。我们发现,纯合突变 Stag3 小鼠的减数分裂细胞显示出染色体轴的紧缩、异常联会、重组受损和发育停滞。我们发现,在减数分裂细胞中存在的三种不同的α-黏连蛋白对 STAG3 有不同的剂量依赖性需求,并且 STAG3-REC8 黏合复合物在支持减数分裂染色体结构和功能方面具有关键作用。