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人类和马中妊娠特异性糖蛋白的趋同进化。

Convergent evolution of pregnancy-specific glycoproteins in human and horse.

作者信息

Aleksic Denis, Blaschke Lisa, Mißbach Sophie, Hänske Jana, Weiß Wiebke, Handler Johannes, Zimmermann Wolfgang, Cabrera-Sharp Victoria, Read Jordan E, de Mestre Amanda M, O'Riordan Ronan, Moore Tom, Kammerer Robert

机构信息

Institute of ImmunologyFriedrich-Loeffler-Institut, Greifswald-Insel Riems, Germany.

Equine Center Bad SaarowFreie Universität Berlin, Bad Saarow, Germany.

出版信息

Reproduction. 2016 Sep;152(3):171-84. doi: 10.1530/REP-16-0236. Epub 2016 Jun 8.

Abstract

Pregnancy-specific glycoproteins (PSGs) are members of the carcinoembryonic antigen cell adhesion molecule (CEACAM) family that are secreted by trophoblast cells. PSGs may modulate immune, angiogenic and platelet responses during pregnancy. Until now, PSGs are only found in species that have a highly invasive (hemochorial) placentation including humans, mice and rats. Surprisingly, analyzing the CEACAM gene family of the horse, which has a non-invasive epitheliochorial placenta, with the exception of the transient endometrial cups, we identified equine CEACAM family members that seem to be related to PSGs of rodents and primates. We identified seven genes that encode secreted PSG-like CEACAMs Phylogenetic analyses indicate that they evolved independently from an equine CEACAM1-like ancestor rather than from a common PSG-like ancestor with rodents and primates. Significantly, expression of PSG-like genes (CEACAM44, CEACAM48, CEACAM49 and CEACAM55) was found in non-invasive as well as invasive trophoblast cells such as purified chorionic girdle cells and endometrial cup cells. Chorionic girdle cells are highly invasive trophoblast cells that invade the endometrium of the mare where they form endometrial cups and are in close contact with maternal immune cells. Therefore, the microenvironment of invasive equine trophoblast cells has striking similarities to the microenvironment of trophoblast cells in hemochorial placentas, suggesting that equine PSG-like CEACAMs and rodent and primate PSGs have undergone convergent evolution. This is supported by our finding that equine PSG-like CEACAM49 exhibits similar activity to certain rodent and human PSGs in a functional assay of platelet-fibrinogen binding. Our results have implications for understanding the evolution of PSGs and their functions in maternal-fetal interactions.

摘要

妊娠特异性糖蛋白(PSG)是由滋养层细胞分泌的癌胚抗原细胞粘附分子(CEACAM)家族成员。PSG可能在妊娠期间调节免疫、血管生成和血小板反应。到目前为止,PSG仅在具有高度侵入性(血绒毛膜型)胎盘的物种中发现,包括人类、小鼠和大鼠。令人惊讶的是,分析马的CEACAM基因家族(马具有非侵入性上皮绒毛膜胎盘,除了短暂的子宫内膜杯),我们鉴定出了似乎与啮齿动物和灵长类动物的PSG相关的马CEACAM家族成员。我们鉴定出了七个编码分泌型PSG样CEACAM的基因。系统发育分析表明,它们是从马CEACAM1样祖先独立进化而来,而不是从与啮齿动物和灵长类动物的共同PSG样祖先进化而来。值得注意的是,在非侵入性和侵入性滋养层细胞中都发现了PSG样基因(CEACAM44、CEACAM48、CEACAM49和CEACAM55)的表达,如纯化的绒毛膜带细胞和子宫内膜杯细胞。绒毛膜带细胞是高度侵入性的滋养层细胞,它们侵入母马的子宫内膜,在那里形成子宫内膜杯,并与母体免疫细胞密切接触。因此,侵入性马滋养层细胞的微环境与血绒毛膜胎盘滋养层细胞的微环境有显著相似之处,这表明马PSG样CEACAM与啮齿动物和灵长类动物的PSG经历了趋同进化。我们的发现支持了这一点,即在血小板-纤维蛋白原结合功能测定中,马PSG样CEACAM49表现出与某些啮齿动物和人类PSG相似的活性。我们的结果对于理解PSG的进化及其在母胎相互作用中的功能具有重要意义。

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