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发情生殖周期中卵巢c-kit和Steel表达的动态变化。

Dynamic changes in ovarian c-kit and Steel expression during the estrous reproductive cycle.

作者信息

Motro B, Bernstein A

机构信息

Division of Molecular and Developmental Biology, Samuel Lunenfeld Research Institute, Mount Sinai Hospital, Toronto, Ontario, Canada.

出版信息

Dev Dyn. 1993 May;197(1):69-79. doi: 10.1002/aja.1001970107.

Abstract

W and Steel mutant mice exhibit similar developmental defects in melanogenesis, haematopoiesis, and gametogenesis. Consistent with the cell autonomous and microenvironmental nature of W and Sl mutations, respectively, W encodes the c-kit receptor tyrosine kinase while Steel encodes the Kit ligand. Both c-kit and Steel are expressed in various cells in which no corresponding mutant phenotype has yet been demonstrated. In the adult ovary, certain stromal-derived cells (theca and interstitial), as well as oocytes, express c-kit, while granulosa cells express Steel. We show here that the cessation of oocyte growth, at the transition of the follicle to the antral stage, is associated with the cessation of Steel expression in the cumulus granulosa cells in the vicinity of the oocyte. These observations suggest a role for the Kit signaling pathway in oocyte growth or in meiotic arrest. In addition, the cyclic secretion of luteinizing hormone immediately and dramatically results in elevated Steel expression in mural granulosa cells and decreased levels of c-kit transcripts in stromal-derived cells. This influence of the estrous reproductive cycle on c-kit/Steel expression suggests that the Kit signaling pathway, in addition to its previously described role in primordial germ cell development, is involved in follicular development in the adult female.

摘要

W和Steel突变小鼠在黑色素生成、造血和配子发生过程中表现出相似的发育缺陷。分别与W和Sl突变的细胞自主和微环境性质一致,W编码c-kit受体酪氨酸激酶,而Steel编码Kit配体。c-kit和Steel在各种细胞中均有表达,目前尚未在这些细胞中证实相应的突变表型。在成年卵巢中,某些基质来源的细胞(卵泡膜细胞和间质细胞)以及卵母细胞表达c-kit,而颗粒细胞表达Steel。我们在此表明,在卵泡向窦状卵泡阶段转变时,卵母细胞生长的停止与卵母细胞附近卵丘颗粒细胞中Steel表达的停止相关。这些观察结果提示Kit信号通路在卵母细胞生长或减数分裂停滞中发挥作用。此外,促黄体生成素的周期性分泌立即并显著导致壁颗粒细胞中Steel表达升高,而基质来源细胞中c-kit转录本水平降低。发情生殖周期对c-kit/Steel表达的这种影响表明,Kit信号通路除了在原始生殖细胞发育中发挥其先前描述的作用外,还参与成年雌性的卵泡发育。

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