University Hospital Erlangen, University of Erlangen-Nürnberg, 91054 Erlangen, Germany.
J Cell Sci. 2011 Sep 15;124(Pt 18):3137-48. doi: 10.1242/jcs.085936. Epub 2011 Aug 18.
SPOC1 (PHF13) is a recently identified protein that has been shown to dynamically associate with somatic chromatin, to modulate chromatin compaction and to be important for proper cell division. Here, we report on the expression of SPOC1 in promyelocytic leukaemia zinc finger (PLZF)-positive undifferentiated spermatogonial stem cells (SSCs) of the mouse testis. To investigate further the biological function of SPOC1 in germ cells we generated Spoc1 mutant mice from a gene-trap embryonic stem cell clone. Postpubertal homozygous Spoc1(-/-) animals displayed a pronounced progressive loss of germ cells from an initially normal germ epithelium of the testis tubules leading to testis hypoplasia. This loss first affected non-SSC stages of germ cells and then, at a later time point, the undifferentiated spermatogonia. Remarkably, successive loss of all germ cells (at >20 weeks of age) was preceded by a transient increase in the number of undifferentiated A(aligned) (A(al)) spermatogonia in younger mice (at >10 weeks of age). The number of primary Spoc1(-/-) gonocytes, the proliferation of germ cells, and the initiation and progression of meiosis was normal, but we noted a significantly elevated level of apoptosis in the Spoc1(-/-) testis. Taken together, the data argue that SPOC1 is indispensable for stem cell differentiation in the testis and for sustained spermatogenesis.
SPOC1(PHF13)是一种新发现的蛋白,它能够动态地与体细胞染色质结合,调节染色质的紧缩,对于正常的细胞分裂很重要。在这里,我们报告了 SPOC1 在鼠睾丸中具有 PLZF 阳性的未分化精原干细胞(SSC)中的表达。为了进一步研究 SPOC1 在生殖细胞中的生物学功能,我们从一个基因捕获胚胎干细胞克隆中生成了 Spoc1 突变小鼠。青春期后的纯合 Spoc1(-/-)动物显示出明显的进行性丧失生殖细胞,最初是睾丸小管的正常生殖上皮,导致睾丸发育不良。这种丧失首先影响非 SSC 阶段的生殖细胞,然后在稍后的时间点,影响未分化的精原细胞。值得注意的是,所有生殖细胞(在>20 周龄时)的连续丧失之前,年轻小鼠(在>10 周龄时)的未分化 A(对齐)(A(al))精原细胞数量会短暂增加。初级 Spoc1(-/-)性母细胞的数量、生殖细胞的增殖以及减数分裂的起始和进展都是正常的,但我们注意到 Spoc1(-/-)睾丸中的细胞凋亡水平显著升高。总之,这些数据表明 SPOC1 对于睾丸中的干细胞分化和持续的精子发生是不可或缺的。