Probing energy coupling in the yeast plasma membrane H+-ATPase with acetyl phosphate

被引:6
作者
Wang, GF [1 ]
Perlin, DS [1 ]
机构
[1] PUBL HLTH RES INST CITY NEW YORK INC, NEW YORK, NY 10016 USA
关键词
H+-ATPase; proton transport; coupling; acetyl phosphate;
D O I
10.1006/abbi.1997.0213
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The energy-rich compound acetyl phosphate (ACP) was examined as a substrate for energy-linked reactions by the yeast plasma membrane H+-ATPase. The hydrolysis of ACP was sensitive to inhibition by vanadate with an IC50 similar to 1 mu M, which is comparable to the level obtained in the presence of ATP. A K-m of 8.29 +/- 0.65 mM for the hydrolysis of ACP was approximately 10-fold higher than that obtained for ATP, while V-max values of 8.66 +/- 0.29 and 7.23 +/- 0.34 pmol P-i mg(-1) min(-1) were obtained with ATP and ACP, respectively. ACP formed a phosphorylated intermediate that was efficiently chased with hydroxylamine. Both ACP and ATP effectively protected the enzyme from trypsin-induced inactivation and formed identical tryptic digestion patterns, suggesting that ACP mimics the formation of conformational intermediates induced by ATP. However, unlike ATP, ACP was unable to drive proton transport by H+-ATPase. In addition, a pma1-S368F mutant enzyme that is highly insensitive to inhibition by vanadate in the presence of ATP was largely sensitive to vanadate in the presence of ACP. These results are interpreted in terms of a reverse, short-circuit pathway of the normal P-type ATPase kinetic pathway, in which the formation of E2P by-passes the E1P high-energy intermediate. In this pathway, ACP favors the formation of an E2P conformational state, which can interact with classical inhibitors like vanadate, but possesses insufficient free energy to drive proton transport by the H+-ATPase. (C) 1997 Academic Press.
引用
收藏
页码:309 / 315
页数:7
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