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牛视网膜视杆细胞外段转导蛋白的特性研究。I. 亚基的分离与重组。

Characterization of transducin from bovine retinal rod outer segments. I. Separation and reconstitution of the subunits.

作者信息

Fung B K

出版信息

J Biol Chem. 1983 Sep 10;258(17):10495-502.

PMID:6136509
Abstract

Transducin, a guanine nucleotide regulatory protein found in the bovine retinal rod outer segment, mediates the signal coupling between rhodopsin and a cyclic GMP phosphodiesterase. Previous studies have demonstrated that photolyzed rhodopsin catalyzed the exchange of GTP for GDP bound to transducin. The transducin-GTP complex, in turn, activates the phosphodiesterase. Purified transducin (T) has been resolved by omega-amino octylagarose chromatography into two functional subunits: T alpha (Mr approximately 39,000) and T beta gamma (Mr approximately 36,000 and approximately 10,000). The guanine nucleotide binding site is on the T alpha subunit. Neither the T alpha nor the T beta gamma subunit showed significant GTPase activity, Gpp(NH)p-GDP exchange, and ability to bind to rhodopsin when assayed in the presence of reconstituted membranes containing photolyzed rhodopsin. However, all the above activities were restored if the two subunits were recombined. Analysis of the reconstituted GTPase activity as a function of the T alpha subunit concentration revealed a linear relationship. On the other hand, GTPase activity rapidly saturated at T beta gamma concentration much lower than the T alpha concentration, indicating that the two subunits were dissociated during GTP hydrolysis. These findings strongly suggest that the T beta gamma subunit is an activator of the GTPase activity. Its mode of action is to enable the T alpha subunit to interact with rhodopsin effectively.

摘要

转导素是一种存在于牛视网膜视杆细胞外段的鸟嘌呤核苷酸调节蛋白,介导视紫红质与环鸟苷酸磷酸二酯酶之间的信号偶联。先前的研究表明,光解的视紫红质催化与转导素结合的GDP与GTP的交换。转导素 - GTP复合物进而激活磷酸二酯酶。纯化的转导素(T)通过ω - 氨基辛基琼脂糖层析分离为两个功能亚基:Tα(分子量约39,000)和Tβγ(分子量约36,000和约10,000)。鸟嘌呤核苷酸结合位点位于Tα亚基上。在含有光解视紫红质的重组膜存在下进行测定时,Tα亚基和Tβγ亚基均未显示出显著的GTP酶活性、Gpp(NH)p - GDP交换以及与视紫红质结合的能力。然而,如果将这两个亚基重新组合,则上述所有活性均得以恢复。对重组后的GTP酶活性作为Tα亚基浓度的函数进行分析,结果显示呈线性关系。另一方面,在Tβγ浓度远低于Tα浓度时,GTP酶活性迅速饱和,这表明在GTP水解过程中两个亚基发生了解离。这些发现有力地表明,Tβγ亚基是GTP酶活性的激活剂。其作用方式是使Tα亚基能够有效地与视紫红质相互作用。

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