Higuchi T, Kanzaki H, Nakayama H, Fujimoto M, Hatayama H, Kojima K, Iwai M, Mori T, Fujita J
Department of Gynecology and Obstetrics, Faculty of Medicine, Kyoto University, Japan.
Endocrinology. 1995 Nov;136(11):4973-81. doi: 10.1210/endo.136.11.7588231.
Endometrial stromal differentiation (decidualization) is essential for implantation of the developing blastocyst. To investigate the process of progesterone (P)-induced decidualization of human endometrial stromal cells (ESC), a complementary DNA library enriched with P-induced genes was constructed from cultured human ESC by subtractive hybridization and the polymerase chain reaction. One of the isolated clones was the complementary DNA for the tissue inhibitor of metalloproteinase-3 (TIMP-3), a recently identified member of the human TIMP family. When human ESC were cultured in the presence of P for 6 days, the induction of TIMP-3 messenger RNA (mRNA) expression was observed by Northern blotting. In contrast, the marked induction of PRL mRNA expression and morphological changes were observed after 9 days of culture. P-induced TIMP-3 mRNA expression was dose dependent, and this induction was inhibited by the antiprogestin RU486. Estrogen did not induce TIMP-3 mRNA expression under similar conditions. In situ hybridization analysis of endometria from nonpregnant women revealed that the TIMP-3 mRNA expression was restricted to predecidualized stromal cells. At the feto-maternal interface, TIMP-3 expression was observed in fetal extravillous trophoblasts that had invaded the maternal decidual tissues as well as in the maternal decidual cells. These findings suggest that TIMP-3 is a sensitive indicator of ESC decidualization, and that the induction of TIMP-3 expression in decidual cells and trophoblasts may be important in the regulation of trophoblast invasion.
子宫内膜基质分化(蜕膜化)对于发育中的胚泡着床至关重要。为了研究孕酮(P)诱导的人子宫内膜基质细胞(ESC)蜕膜化过程,通过消减杂交和聚合酶链反应从培养的人ESC构建了一个富含P诱导基因的互补DNA文库。分离出的克隆之一是金属蛋白酶组织抑制剂-3(TIMP-3)的互补DNA,TIMP-3是人类TIMP家族最近鉴定出的成员。当人ESC在P存在下培养6天时,通过Northern印迹观察到TIMP-3信使核糖核酸(mRNA)表达的诱导。相比之下,培养9天后观察到PRL mRNA表达的显著诱导和形态变化。P诱导的TIMP-3 mRNA表达呈剂量依赖性,并且这种诱导被抗孕激素RU486抑制。在相似条件下雌激素未诱导TIMP-3 mRNA表达。对未孕妇女子宫内膜的原位杂交分析显示,TIMP-3 mRNA表达仅限于前蜕膜化基质细胞。在母胎界面,在侵入母体蜕膜组织的胎儿绒毛外滋养层细胞以及母体蜕膜细胞中观察到TIMP-3表达。这些发现表明TIMP-3是ESC蜕膜化的敏感指标,并且蜕膜细胞和滋养层细胞中TIMP-3表达的诱导在调节滋养层侵袭中可能很重要。