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细胞间黏附在细胞外氯化钙对催乳素基因表达调控中的作用

Role of cell-cell adhesion in the regulation of prolactin gene expression by extracellular CaCl(2).

作者信息

Lail-Trecker M R, Hanrahan C J, White B A

机构信息

Graduate Program in Developmental Biology, Department of Anatomy, University of Connecticut Health Center, 06030, Farmington, CT.

出版信息

Endocrine. 1996 Dec;5(3):341-9. doi: 10.1007/BF02739069.

Abstract

We have investigated a role for calcium-dependent cell-cell adhesion in the regulation of prolactin gene expression in rat pituitary GH(3) cells. Cells cultured in a calcium-free, serum-free medium (SFM) express low levels of prolactin and growth hormone mRNA. As expected, addition of 0.5 mM CaCl(2) to GH(3) cells in SFM produced a specific, severalfold increase in prolactin mRNA levels. CaCl(2) also promoted intercellular adhesion, during which cells assembled end-to-end in to cords. Prolactin mRNA increased after a delay of several hours. This latency period ranged from 4-12 h among different experiments, but always occurred after the onset of cell-cell adhesion. The voltage-sensitive calcium channel (VSCC) blocker, nitrendipine, inhibited the CaCl(2)-induced increase in prolactin mRNA without affecting cord formation. However, the VSCC agonist, BAY K-8644, was unable to induce prolactin gene expression prior to the onset of intercellular adhesion at 8 h, even though it produced a cellular response (tyrosine phosphorylation of a ca. 130-kDa protein) within 30 min. Blocking cell-cell adhesion inhibited the calcium-dependent induction of prolactin gene expression. Low levels (0.0025-0.02%) of trypsin blocked cell-cell adhesion and the prolactin mRNA induction by CaCl(2) without affecting the levels of other mRNAs or cell-matrix adhesion. Heparin also specifically blocked the induction of both cell-cell adhesion and prolactin gene expression. Based on these data, we propose a role for both VSCCs and calcium-dependent cell-cell adhesion in the induction of prolactin gene expression by extracellular CaCl(2).

摘要

我们研究了钙依赖性细胞间黏附在大鼠垂体GH(3)细胞催乳素基因表达调控中的作用。在无钙、无血清培养基(SFM)中培养的细胞表达低水平的催乳素和生长激素mRNA。正如预期的那样,向SFM中的GH(3)细胞添加0.5 mM CaCl₂会使催乳素mRNA水平特异性地增加几倍。CaCl₂还促进细胞间黏附,在此过程中细胞端对端聚集形成索状。催乳素mRNA在数小时的延迟后增加。在不同实验中,这个潜伏期为4 - 12小时,但总是在细胞间黏附开始后出现。电压敏感性钙通道(VSCC)阻滞剂尼群地平抑制了CaCl₂诱导的催乳素mRNA增加,而不影响索状结构的形成。然而,VSCC激动剂BAY K - 8644在8小时细胞间黏附开始之前无法诱导催乳素基因表达,尽管它在30分钟内产生了细胞反应(一种约130 kDa蛋白质的酪氨酸磷酸化)。阻断细胞间黏附会抑制钙依赖性的催乳素基因表达诱导。低水平(0.0025 - 0.02%)的胰蛋白酶阻断了细胞间黏附以及CaCl₂诱导的催乳素mRNA增加,而不影响其他mRNA水平或细胞与基质的黏附。肝素也特异性地阻断了细胞间黏附及催乳素基因表达的诱导。基于这些数据,我们提出VSCC和钙依赖性细胞间黏附在细胞外CaCl₂诱导催乳素基因表达中均发挥作用。

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