Gong Rui, Peng Xiaoxue, Kang Shuli, Feng Huixing, Huang Jianying, Zhang Wentao, Lin Donghai, Tien Po, Xiao Gengfu
State Key Laboratory of Virology, College of Life Sciences, Wuhan University, Wuhan, Hubei 430072, China.
Biochem Biophys Res Commun. 2005 Jun 17;331(4):1193-200. doi: 10.1016/j.bbrc.2005.04.032.
Syncytin is a captive retroviral envelope protein, possibly involved in the formation of the placental syncytiotrophoblast layer generated by trophoblast cell fusion at the maternal-fetal interface. We found that syncytin and type I viral envelope proteins shared similar structural profiling, especially in the regions of N- and C-terminal heptad repeats (NHR and CHR). We expressed the predicted regions of NHR (41aa) and CHR (34aa) in syncytin as a native single chain (named 2-helix protein) to characterize it. 2-Helix protein exists as a trimer and is highly alpha-helix, thermo-stable, and denatured by low pH. NHR and CHR could form a protease-resistant complex. The complex structure built by the molecular docking demonstrated that NHR and CHR associated in an antiparallel manner. Overall, the 2-helix protein could form a thermo-stable coiled coil trimer. The fusion core structure of syncytin was first demonstrated in endogenous retrovirus. These results support the explanation how syncytin mediates cytotrophoblast cell fusion involved in placental morphogenesis.
合胞素是一种被捕获的逆转录病毒包膜蛋白,可能参与了在母胎界面由滋养层细胞融合产生的胎盘合体滋养层的形成。我们发现合胞素与I型病毒包膜蛋白具有相似的结构特征,特别是在N端和C端七肽重复序列(NHR和CHR)区域。我们将合胞素中预测的NHR(41个氨基酸)和CHR(34个氨基酸)区域表达为天然单链(命名为2-螺旋蛋白)以对其进行表征。2-螺旋蛋白以三聚体形式存在,高度α-螺旋,热稳定,且在低pH下变性。NHR和CHR可形成蛋白酶抗性复合物。通过分子对接构建的复合物结构表明,NHR和CHR以反平行方式结合。总体而言,2-螺旋蛋白可形成热稳定的卷曲螺旋三聚体。合胞素的融合核心结构首次在内源逆转录病毒中得到证实。这些结果支持了关于合胞素如何介导参与胎盘形态发生的细胞滋养层细胞融合的解释。