Department of Biochemistry, Case Western Reserve University, Cleveland, OH 44106, USA.
Proc Natl Acad Sci U S A. 2013 Aug 13;110(33):E3061-70. doi: 10.1073/pnas.1300860110. Epub 2013 Jul 30.
The male program of therian mammals is determined by Sry, a transcription factor encoded by the Y chromosome. Specific DNA binding is mediated by a high mobility group (HMG) box. Expression of Sry in the gonadal ridge activates a Sox9-dependent gene regulatory network leading to testis formation. A subset of Sry alleles in superfamily Muroidea (order Rodentia) is remarkable for insertion of an unstable DNA microsatellite, most commonly encoding (as in mice) a CAG repeat-associated glutamine-rich domain. We provide evidence, based on an embryonic pre-Sertoli cell line, that this domain functions at a threshold length as a genetic capacitor to facilitate accumulation of variation elsewhere in the protein, including the HMG box. The glutamine-rich domain compensates for otherwise deleterious substitutions in the box and absence of nonbox phosphorylation sites to ensure occupancy of DNA target sites. Such compensation enables activation of a male transcriptional program despite perturbations to the box. Whereas human SRY requires nucleocytoplasmic shuttling and coupled phosphorylation, mouse Sry contains a defective nuclear export signal analogous to a variant human SRY associated with inherited sex reversal. We propose that the rodent glutamine-rich domain has (i) fostered accumulation of cryptic intragenic variation and (ii) enabled unmasking of such variation due to DNA replicative slippage. This model highlights genomic contingency as a source of protein novelty at the edge of developmental ambiguity and may underlie emergence of non-Sry-dependent sex determination in the radiation of Muroidea.
雄性动物的性别由 Sry 决定,Sry 是由 Y 染色体编码的转录因子。特定的 DNA 结合由高迁移率族(HMG)盒介导。Sry 在性腺嵴中的表达激活了 Sox9 依赖性基因调控网络,导致睾丸形成。超级家族鼠科(啮齿目)中的一小部分 Sry 等位基因插入了不稳定的 DNA 微卫星,最常见的是编码(如在小鼠中)CAG 重复相关的富含谷氨酰胺结构域。我们提供的证据基于一个胚胎前支持细胞系,表明该结构域在一个阈值长度下作为遗传电容器发挥作用,以促进蛋白质其他部位的变异积累,包括 HMG 盒。富含谷氨酰胺的结构域补偿了盒中的其他有害取代和非盒磷酸化位点的缺失,以确保 DNA 靶位点的占据。这种补偿使得男性转录程序的激活成为可能,尽管对盒进行了干扰。虽然人类 SRY 需要核质穿梭和偶联磷酸化,但小鼠 Sry 包含一个有缺陷的核输出信号,类似于与遗传性性别反转相关的人类 SRY 变体。我们提出,啮齿动物的富含谷氨酰胺结构域(i)促进了隐性内含子变异的积累,(ii)由于 DNA 复制滑动而使这种变异得以揭示。该模型强调了基因组的偶然性作为发育模糊性边缘处蛋白质新颖性的来源,并且可能是鼠科辐射中非 Sry 依赖性性别决定的出现的基础。