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卵母细胞分泌的生长分化因子9在小鼠卵丘扩展调节中的作用。

Role of oocyte-secreted growth differentiation factor 9 in the regulation of mouse cumulus expansion.

作者信息

Dragovic Rebecca A, Ritter Lesley J, Schulz Samantha J, Amato Fred, Armstrong David T, Gilchrist Robert B

机构信息

Research Centre for Reproductive Health, Department of Obstetrics and Gynaecology, University of Adelaide, The Queen Elizabeth Hospital, Woodville, South Australia 5011, Australia.

出版信息

Endocrinology. 2005 Jun;146(6):2798-806. doi: 10.1210/en.2005-0098. Epub 2005 Mar 10.

Abstract

Oocyte-secreted factors are required for expansion of the mouse cumulus-oocyte complex, which is necessary for ovulation. Oocyte-secreted growth differentiation factor 9 (GDF9) signals through the bone morphogenetic protein receptor II and is currently the primary candidate molecule for the cumulus-expansion enabling factor. This study was conducted to determine whether GDF9 is the mouse cumulus-expansion enabling factor. Cumulus-oocyte complexes were collected from mice, and the oocyte was microsurgically removed to generate an oocytectomized (OOX) complex. OOX complexes treated with FSH alone or recombinant mouse GDF9 alone failed to expand, whereas expansion was induced in the presence of FSH by GDF9, TGFbeta1, or coculture with oocytes. A specific GDF9-neutralizing antibody, mAb-GDF9-53, neutralized the expansion of OOX complexes in response to GDF9 but not the expansion of OOX complexes cocultured with oocytes. Using real-time RT-PCR, hyaluronan synthase 2 (HAS2) mRNA expression by OOXs was up-regulated 4- to 6-fold by oocytes and GDF9. Monoclonal neutralizing antibody-GDF9-53 attenuated GDF9-induced OOX HAS2 expression but not oocyte-induced HAS2 expression. A TGFbeta antagonist neutralized TGFbeta-induced, but not oocyte-induced, expansion of OOX complexes, and when combined with monoclonal neutralizing antibody-GDF9-53 also failed to neutralize oocyte-induced expansion. Furthermore, a soluble portion of the bone morphogenetic protein receptor II extracellular domain, which is a known GDF9 antagonist, completely antagonized GDF9-induced expansion but only partially neutralized oocyte-induced expansion. This study provides further evidence that like TGFbeta, GDF9 can enable FSH-induced cumulus expansion, but more importantly, demonstrates that neither GDF9 nor TGFbeta alone, nor the two in unison, account for the critical oocyte-secreted factors regulating mouse cumulus expansion.

摘要

卵母细胞分泌因子是小鼠卵丘-卵母细胞复合体扩张所必需的,而这种扩张是排卵所必需的。卵母细胞分泌的生长分化因子9(GDF9)通过骨形态发生蛋白受体II发出信号,目前是卵丘扩张促成因子的主要候选分子。本研究旨在确定GDF9是否为小鼠卵丘扩张促成因子。从小鼠收集卵丘-卵母细胞复合体,通过显微手术去除卵母细胞以产生去卵母细胞(OOX)复合体。单独用促卵泡激素(FSH)或重组小鼠GDF9处理的OOX复合体未能扩张,而在FSH存在的情况下,GDF9、转化生长因子β1(TGFβ1)或与卵母细胞共培养可诱导扩张。一种特异性GDF9中和抗体mAb-GDF9-53可中和OOX复合体对GDF9的反应性扩张,但不能中和与卵母细胞共培养的OOX复合体的扩张。使用实时逆转录-聚合酶链反应(RT-PCR),卵母细胞和GDF9可使OOX的透明质酸合酶2(HAS2)mRNA表达上调4至6倍。单克隆中和抗体-GDF9-53可减弱GDF9诱导的OOX的HAS2表达,但不能减弱卵母细胞诱导的HAS2表达。一种TGFβ拮抗剂可中和TGFβ诱导的OOX复合体扩张,但不能中和卵母细胞诱导的扩张,并且当与单克隆中和抗体-GDF9-53联合使用时也不能中和卵母细胞诱导的扩张。此外,骨形态发生蛋白受体II细胞外结构域的可溶性部分是一种已知的GDF9拮抗剂,它可完全拮抗GDF9诱导的扩张,但只能部分中和卵母细胞诱导的扩张。本研究进一步证明,与TGFβ一样,GDF9可促成FSH诱导的卵丘扩张,但更重要的是,表明单独的GDF9或TGFβ,或两者共同作用,都不能解释调节小鼠卵丘扩张的关键卵母细胞分泌因子。

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