Xu Y, Gilbert B A, Rando R R, Chen L, Tashjian A H
Department of Molecular and Cellular Toxicology, Harvard School of Public Health, Boston, Massachusetts 02115, USA.
Mol Pharmacol. 1996 Dec;50(6):1495-501.
Capacitative Ca2+ influx, which occurs in response to mobilization of intracellular Ca2+ stores, is a general feature of many cell types. Although the mechanism of capacitative Ca2+ entry is not known, evidence suggests the involvement of small G proteins that are prenylated on a cysteine residue near their carboxyl termini. We have investigated the actions of farnesyl-cysteine analogs on capacitative Ca2+ influx. Using human embryonic kidney 293 cells, we found that S-farnesylthioacetic acid, N-acetyl-S-farnesyl-L-cysteine, N-pivaloyl-S-farnesyl-L-cysteine, and N-acetyl-S-gernylgernyl-L-cysteine blocked the activation of capacitative Ca2+ influx, whereas N-benzoyl-S-farnesyl-S-cysteine had no effect on capacitative Ca2+ entry. Inhibition by S-farnesylthioacetic acid was concentration dependent (5-20 microM) and specific for Ca2+ influx through non-voltage-gated Ca2+ channels. A single protein band of 26-28 kDa was labeled specifically with a photoaffinity analog of farnesylcysteine. GTP binding to the photoaffinity-labeled band was demonstrated. These findings suggest, but do not prove, that a prenylated substrate, possibly a small G protein, is linked functionally to capacitative Ca2+ entry in human embryonic kidney 293 cells.
容量性Ca2+内流是许多细胞类型的一个普遍特征,它是对细胞内Ca2+储存库动员的响应而发生的。尽管容量性Ca2+内流的机制尚不清楚,但有证据表明小G蛋白参与其中,这些小G蛋白在其羧基末端附近的半胱氨酸残基上发生了异戊二烯化修饰。我们研究了法尼基半胱氨酸类似物对容量性Ca2+内流的作用。使用人胚肾293细胞,我们发现S-法尼基硫代乙酸、N-乙酰-S-法尼基-L-半胱氨酸、N-新戊酰-S-法尼基-L-半胱氨酸和N-乙酰-S-香叶基香叶基-L-半胱氨酸可阻断容量性Ca2+内流的激活,而N-苯甲酰-S-法尼基-S-半胱氨酸对容量性Ca2+内流没有影响。S-法尼基硫代乙酸的抑制作用呈浓度依赖性(5-20 microM),且对通过非电压门控Ca2+通道的Ca2+内流具有特异性。一条26-28 kDa的单一蛋白带被法尼基半胱氨酸的光亲和类似物特异性标记。证明了GTP与光亲和标记带的结合。这些发现表明,但并未证明,一种异戊二烯化修饰的底物,可能是一种小G蛋白,在功能上与人胚肾293细胞中的容量性Ca2+内流相关。