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环磷酸鸟苷磷酸二酯酶抑制亚基对视杆细胞外段GTP酶加速蛋白活性的增强作用。

Enhancement of rod outer segment GTPase accelerating protein activity by the inhibitory subunit of cGMP phosphodiesterase.

作者信息

Angleson J K, Wensel T G

机构信息

Verna and Marrs McLean Department of Biochemistry, Baylor College of Medicine, Houston, Texas 77030.

出版信息

J Biol Chem. 1994 Jun 10;269(23):16290-6.

PMID:8206935
Abstract

The cGMP phosphodiesterase (PDE) of retinal rod outer segments (ROS) is activated by the GTP-bound form of the G protein, transducin (Gt alpha). This activation can be reversed by the inhibitory gamma subunit of PDE through two distinct mechanisms: acceleration of GTP hydrolysis and direct inactivation independent of GTP hydrolysis. We have found that acceleration of Gt alpha GTPase by PDE gamma does not occur upon formation of a Gt alpha PDE gamma complex but rather reflects enhanced activity toward this complex of a membrane-bound GTPase accelerating protein. GTPase rate constants for Gt alpha in the presence of 3.3 microM PDE gamma were as high as 0.7 s-1 with hypotonically washed ROS membranes at 40 microM rhodopsin but were more than 10-fold lower when protein-free vesicles containing ROS lipids were substituted for ROS membranes. Acceleration of Gt alpha GTPase by PDE gamma was also barely detectable at low ROS concentrations (e.g. 4 microM rhodopsin) or if ROS treated with trypsin or urea were used. GTPase-independent inactivation by PDE gamma occurred efficiently at much lower membrane concentrations. Inhibition of Gt alpha-activated PDE was much slower than inhibition of PDE alpha beta by PDE gamma. Effects of PDE gamma upon successive additions of GTP suggested formation of a complex of PDE gamma and Gt alpha-GDP that is refractory to reactivation.

摘要

视网膜视杆细胞外段(ROS)的环磷酸鸟苷磷酸二酯酶(PDE)由G蛋白转导素(Gtα)的GTP结合形式激活。这种激活可被PDE的抑制性γ亚基通过两种不同机制逆转:加速GTP水解以及不依赖GTP水解的直接失活。我们发现,PDEγ对Gtα GTP酶的加速作用并非在Gtα - PDEγ复合物形成时发生,而是反映了膜结合的GTP酶加速蛋白对该复合物活性的增强。在含有3.3微摩尔PDEγ的情况下,当视紫红质浓度为40微摩尔时,用低渗洗涤的ROS膜处理,Gtα的GTP酶速率常数高达0.7秒⁻¹,但当用含有ROS脂质的无蛋白囊泡替代ROS膜时,该速率常数降低了10倍以上。在低ROS浓度(如4微摩尔视紫红质)下,或者使用经胰蛋白酶或尿素处理的ROS时,PDEγ对Gtα GTP酶的加速作用也几乎检测不到。PDEγ不依赖GTP的失活在低得多的膜浓度下有效发生。PDEγ对Gtα激活的PDE的抑制比对PDEαβ的抑制慢得多。PDEγ对连续添加GTP的影响表明形成了PDEγ与Gtα - GDP的复合物,该复合物难以再激活。

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