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Glycodelin-A protein interacts with Siglec-6 protein to suppress trophoblast invasiveness by down-regulating extracellular signal-regulated kinase (ERK)/c-jun signaling pathway

机译:Glycodelin-a蛋白与siglec-6蛋白相互作用,通过下调细胞外信号调节激酶(ERK)/ c-jun信号通路抑制滋养细胞侵袭。

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摘要

During placentation, the cytotrophoblast differentiates into the villous cytotrophoblast and the extravillous cytotrophoblast. The latter invades the decidualized endometrium. Glycodelin-A (GdA) is abundantly synthesized by the decidua but not the trophoblast. Previous data indicate that GdA suppresses the invasion of trophoblast cell lines by down-regulating proteinase expression and activities. This study addresses the signaling pathway involved in the above phenomenon. GdA was found to suppress phosphorylation of ERKs and expression of their downstream effector c-Jun, a component of the transcription factor activator protein-1 (AP-1). The involvement of ERKs and c-Jun in suppressing trophoblast invasion and biosynthesis of proteinases was confirmed by using siRNA knockdown and pharmacological inhibitors. Desialylation reduced binding affinity of Gd A toward and invasion suppressive activities on the trophoblast. Co-immunoprecipitation showed that Siglec-6 on the trophoblast was the binding protein of GdA. The binding of GdA to Siglec-6 was sialic acid-dependent. Treatment with anti-Siglec-6 antibody abolished the invasion suppressive activities of GdA. These results show that GdA interacts with Siglec-6 to suppress trophoblast invasiveness by down-regulating the ERK/c-Jun signaling pathway. © 2011 by The American Society for Biochemistry and Molecular Biology, Inc.
机译:在胎盘形成过程中,滋养细胞分化为绒毛滋养细胞和绒毛滋养细胞。后者侵入蜕膜化的子宫内膜。糖皮质激素-A(GdA)由蜕膜大量合成,而不由滋养细胞合成。先前的数据表明,GdA通过下调蛋白酶的表达和活性来抑制滋养细胞的侵袭。这项研究解决了上述现象中涉及的信号通路。发现GdA抑制ERK的磷酸化及其下游效应子c-Jun的表达,c-Jun是转录因子激活蛋白1(AP-1)的组成部分。通过使用siRNA敲低和药理抑制剂,证实了ERK和c-Jun参与抑制滋养层细胞入侵和蛋白酶的生物合成。脱唾液酸化降低了Gd A对滋养细胞的结合亲和力和对滋养细胞的侵袭抑制活性。免疫共沉淀表明滋养细胞上的Siglec-6是GdA的结合蛋白。 GdA与Siglec-6的结合是唾液酸依赖性的。用抗Siglec-6抗体治疗消除了GdA的侵袭抑制活性。这些结果表明,GdA与Siglec-6相互作用,通过下调ERK / c-Jun信号通路抑制滋养细胞的侵袭性。 ©2011,美国生物化学与分子生物学学会。

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