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促卵泡激素受体介导的蛋白脂质体和培养的大鼠支持细胞对45Ca2+的摄取:电压激活型和电压非依赖型钙通道参与的证据

Follicle-stimulating hormone receptor-mediated uptake of 45Ca2+ by proteoliposomes and cultured rat sertoli cells: evidence for involvement of voltage-activated and voltage-independent calcium channels.

作者信息

Grasso P, Reichert L E

机构信息

Department of Biochemistry, Albany Medical College, New York 12208.

出版信息

Endocrinology. 1989 Dec;125(6):3029-36. doi: 10.1210/endo-125-6-3029.

Abstract

We have previously reported incorporation into liposomes of Triton X-100-solubilized FSH receptor-G-protein complexes derived from purified bovine calf testis membranes. In the present study we have used this model system to show that FSH induces flux of 45Ca2+ into such proteoliposomes in a hormone-specific concentration-dependent manner. FSH, inactivated by boiling, had no stimulatory effect on 45Ca2+ flux, nor did isolated alpha- or beta-subunits of FSH. Addition of GTP (or its analogs 5'-guanylylimidodiphosphate and guanosine-5'-O-[3-thiotriphosphate]) or sodium fluoride (in the presence or absence of GTP or its analogs) failed to induce 45Ca2+ flux into proteoliposomes, suggesting that the uptake of 45Ca2+ was receptor, and not G-protein, related. Voltage-independent (ruthenium red and gadolinium chloride) and voltage-activated (methyoxyverapamil and nifedipine) calcium channel-blocking agents reduced FSH-stimulated 45Ca2+ flux into proteoliposomes to control levels. FSH also induced uptake of 45Ca2+ by cultured rat Sertoli cells. Ruthenium red and gadolinium chloride had no effect on basal levels of 45Ca2+ uptake or estradiol secretion by cultured rat Sertoli cells, nor did methoxyverapamil or nifedipine. All four calcium channel blockers, however, were able to reduce FSH-induced 45Ca2+ uptake to basal levels and FSH-stimulated conversion of androstenedione to estradiol by up to 50%, indicating an involvement of Ca2+ in FSH-stimulated steroidogenesis. Our results suggest that the well documented changes in intracellular calcium levels consequent to FSH binding may be due, at least in part, to an influx of calcium through FSH receptor-regulated calcium channels.

摘要

我们之前曾报道过,从纯化的牛犊睾丸膜中提取的经 Triton X - 100 增溶的促卵泡激素(FSH)受体 - G 蛋白复合物被整合到脂质体中。在本研究中,我们使用这个模型系统来表明,FSH 以激素特异性浓度依赖性方式诱导 45Ca2+流入此类蛋白脂质体。经煮沸失活的 FSH 对 45Ca2+通量没有刺激作用,FSH 的分离的α或β亚基也没有。添加鸟苷三磷酸(GTP)(或其类似物 5'-鸟苷酰亚胺二磷酸和鸟苷 - 5'-O-[3 - 硫代三磷酸])或氟化钠(无论是否存在 GTP 或其类似物)均未能诱导 45Ca2+流入蛋白脂质体,这表明 45Ca2+的摄取与受体相关,而非 G 蛋白相关。电压非依赖性(钌红和氯化钆)和电压激活型(甲氧基维拉帕米和硝苯地平)钙通道阻滞剂将 FSH 刺激的 45Ca2+流入蛋白脂质体的量降低至对照水平。FSH 还诱导培养的大鼠支持细胞摄取 45Ca2+。钌红和氯化钆对培养的大鼠支持细胞摄取 45Ca2+的基础水平或雌二醇分泌没有影响,甲氧基维拉帕米或硝苯地平也没有。然而,所有四种钙通道阻滞剂都能够将 FSH 诱导的 45Ca2+摄取降低至基础水平,并将 FSH 刺激的雄烯二酮向雌二醇的转化降低多达 50%,这表明 Ca2+参与了 FSH 刺激的类固醇生成。我们的结果表明,FSH 结合后细胞内钙水平的显著变化可能至少部分是由于钙通过 FSH 受体调节的钙通道流入所致。

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