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RGS9在光转导中的可能作用。cGMP磷酸二酯酶系统与鸟苷酸环化酶系统之间的桥梁。

A possible role of RGS9 in phototransduction. A bridge between the cGMP-phosphodiesterase system and the guanylyl cyclase system.

作者信息

Seno K, Kishigami A, Ihara S, Maeda T, Bondarenko V A, Nishizawa Y, Usukura J, Yamazaki A, Hayashi F

机构信息

Graduate School of Science and Technology, Faculty of Science, Kobe University, Nada, Kobe 657, Japan.

出版信息

J Biol Chem. 1998 Aug 28;273(35):22169-72. doi: 10.1074/jbc.273.35.22169.

Abstract

In the current concept of phototransduction, the concentration of cGMP in retinal rod outer segments is controlled by the balance of two enzyme activities: cGMP phosphodiesterase (PDE) and guanylyl cyclase (GC). However, no protein directly mediates these two enzyme systems. Here we show that RGS9, which is suggested to control PDE activity through regulation of transducin GTPase activity (He, W., Cowan, C. W., and Wensel, T. G. (1998) Neuron 20, 95-102), directly interacts with GC. When proteins in the Triton X-100-insoluble fraction of bovine rod outer segments were isolated by two-dimensional gel electrophoresis and binding of GC to these proteins was examined using a GC-specific antibody, proteins (55 and 32 kDa) were found to interact with GC. However, the activity of GC bound to the 55-kDa protein was not detected. This observation was elucidated by the finding that the 55-kDa protein inhibited GC activity in a dose-dependent manner. Amino acid sequence showed that five peptides derived from the 55-kDa protein were identical to corresponding peptides of RGS9. Together with other biochemical characterization of the 55-kDa protein, these observations indicate that the 55-kDa protein is RGS9 and that RGS9 inhibits GC. RGS9 may serve as a mediator between the PDE and GC systems.

摘要

在当前的光转导概念中,视网膜视杆细胞外段中cGMP的浓度由两种酶活性的平衡控制:cGMP磷酸二酯酶(PDE)和鸟苷酸环化酶(GC)。然而,没有蛋白质直接介导这两个酶系统。在这里,我们表明RGS9被认为通过调节转导素GTP酶活性来控制PDE活性(He, W., Cowan, C. W., and Wensel, T. G. (1998) Neuron 20, 95 - 102),它直接与GC相互作用。当通过二维凝胶电泳分离牛视杆细胞外段Triton X - 100不溶性部分中的蛋白质,并使用GC特异性抗体检测GC与这些蛋白质的结合时,发现有蛋白质(55 kDa和32 kDa)与GC相互作用。然而,未检测到与55 kDa蛋白质结合的GC的活性。这一观察结果通过发现55 kDa蛋白质以剂量依赖性方式抑制GC活性得到了解释。氨基酸序列显示,源自55 kDa蛋白质的五个肽段与RGS9的相应肽段相同。结合55 kDa蛋白质的其他生化特性,这些观察结果表明55 kDa蛋白质就是RGS9,并且RGS9抑制GC。RGS9可能充当PDE和GC系统之间的介质。

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