首页> 美国卫生研究院文献>The EMBO Journal >Identification of the catalytic domains and their functionally critical arginine residues of two yeast GTPase-activating proteins specific for Ypt/Rab transport GTPases.
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Identification of the catalytic domains and their functionally critical arginine residues of two yeast GTPase-activating proteins specific for Ypt/Rab transport GTPases.

机译:鉴定对Ypt / Rab转运GTP酶具有特异性的两个酵母GTPase激活蛋白的催化结构域及其功能关键的精氨酸残基。

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摘要

Ypt/Rab proteins constitute the largest subfamily of the Ras superfamily of monomeric GTPases and are regulators of vesicular protein transport. Their slow intrinsic GTPase activity (10(-4)-10(-3) min(-1) at 30 degrees C) has to be accelerated to switch the active to the inactive conformation. We have identified the catalytic domain within the C-terminal halves of two yeast GTPase-activating proteins (GAPs), Gyp1p and Gyp7p, with specificity for Ypt/Rab GTPases. The catalytically active fragments of Gyp1p and Gyp7p were more active than the full-length proteins and accelerated the intrinsic GTP hydrolysis rates of their preferred substrates by factors of 4.5 x 10(4) and 7.8 x 10(5), respectively. The K(m) values for the Gyp1p and Gyp7p active fragments (143 and 42 microM, respectively) indicate that the affinities of those GAPs for their substrates are very low. The catalytic domains of Gyp1p and Gyp7p contain five invariant arginine residues; substitutions of only one of them (R343 in Gyp1p and R458 in the analogous position of Gyp7p) rendered the GAPs almost completely inactive. We suggest that Ypt/Rab-GAPs, like Ras- and Rho-GAPs, follow the same mode of action and provide a catalytic arginine ('arginine finger') in trans to accelerate the GTP hydrolysis rate of the transport GTPases.
机译:Ypt / Rab蛋白构成了单体GTPases Ras超家族的最大亚家族,并且是囊泡蛋白运输的调节剂。他们缓慢的固有GTPase活性(在30摄氏度下10(-4)-10(-3)min(-1)必须加速以将活性构象切换为非活性构象。我们已经确定了两个酵母GTPase激活蛋白(GAP),Gyp1p和Gyp7p,对Ypt / Rab GTPases的特异性C末端一半的催化域。 Gyp1p和Gyp7p的催化活性片段比全长蛋白质更具活性,并以4.5 x 10(4)和7.8 x 10(5)的因子加速了其首选底物的内在GTP水解速率。 Gyp1p和Gyp7p活性片段(分别为143和42 microM)的K(m)值表明,这些GAP对它们的底物的亲和力非常低。 Gyp1p和Gyp7p的催化结构域包含5个不变的精氨酸残基。仅其中之一的取代(Gyp1p中的R343和Gyp7p的类似位置中的R458)使GAP几乎完全失活。我们建议Ypt / Rab-GAPs,如Ras-和Rho-GAPs,遵循相同的作用方式,并提供反式催化的精氨酸(“精氨酸指”),以加速转运GTP酶的GTP水解速率。

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