Proteomics Research Center, Department of Basic Science, Faculty of Paramedical Sciences, Shahid Beheshti University of Medical Sciences , 19839-63113 Tehran, Iran.
Department of Developmental Biology, University of Science and Culture , 13145-871 Tehran, Iran.
J Proteome Res. 2017 Dec 1;16(12):4391-4402. doi: 10.1021/acs.jproteome.7b00391. Epub 2017 Sep 13.
Despite evidence for sex-specific cardiovascular physiology and pathophysiology, the biological basis for this dimorphism remains to be explored. Apart from hormonal factors, gender-related characteristics may reside in the function of sex chromosomes during cardiac development. In this study, we investigated the differential expression of the male-specific region of the Y chromosome (MSY) genes and their X counterparts during cardiac differentiation of human embryonic stem cells (hESC). We observed alterations in mRNA and protein levels of TBL1Y, PCDH11Y, ZFY, KDM5D, USP9Y, RPS4Y1, DDX3Y, PRY, XKRY, BCORP1, RBMY, HSFY, and UTY, which accompanied changes in intracellular localization. Of them, the abundance of a Y chromosome missing protein, TBL1Y, showed a significant increase during differentiation while the expression level of its X counterpart decreased. Consistently, reducing TBL1Y cellular level using siRNA approach influenced cardiac differentiation by reducing its efficacy as well as increasing the probability of impaired contractions. TBL1Y knockdown may have negatively impacted cardiogenesis by CtBP stabilization. Furthermore, we presented compelling experimental evidence to distinguish TBL1Y from TBL1X, its highly similar X chromosome homologue, and proposed reclassification of TBL1Y as "found missing protein" (PE1). Our results demonstrated that MSY proteins may play an important role in cardiac development.
尽管有证据表明心血管生理学和病理生理学存在性别特异性,但这种二态性的生物学基础仍有待探索。除了激素因素外,性别相关的特征可能存在于性染色体在心脏发育过程中的功能中。在这项研究中,我们研究了人类胚胎干细胞(hESC)心脏分化过程中男性特异性 Y 染色体(MSY)基因及其 X 对应物的差异表达。我们观察到 TBL1Y、PCDH11Y、ZFY、KDM5D、USP9Y、RPS4Y1、DDX3Y、PRY、XKRY、BCORP1、RBMY、HSFY 和 UTY 的 mRNA 和蛋白质水平发生改变,同时伴随着细胞内定位的变化。其中,Y 染色体缺失蛋白 TBL1Y 的丰度在分化过程中显著增加,而其 X 对应物的表达水平下降。同样,使用 siRNA 方法降低 TBL1Y 的细胞水平会通过降低其功效和增加收缩受损的可能性来影响心脏分化。TBL1Y 敲低可能通过 CtBP 稳定对心脏发生产生负面影响。此外,我们提出了令人信服的实验证据来区分 TBL1Y 与其高度相似的 X 染色体同源物 TBL1X,并提议将 TBL1Y 重新分类为“缺失蛋白”(PE1)。我们的研究结果表明,MSY 蛋白可能在心脏发育中发挥重要作用。