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酵母磷脂翻转酶 Drs2p 羧基末端尾巴的自动抑制。

Auto-inhibition of Drs2p, a yeast phospholipid flippase, by its carboxyl-terminal tail.

机构信息

From the Department of Biological Sciences, Vanderbilt University, Nashville, Tennessee 37235.

出版信息

J Biol Chem. 2013 Nov 1;288(44):31807-15. doi: 10.1074/jbc.M113.481986. Epub 2013 Sep 17.

Abstract

Drs2p, a yeast type IV P-type ATPase (P4-ATPase), or flippase, couples ATP hydrolysis to phosphatidylserine translocation and the establishment of membrane asymmetry. A previous study has shown that affinity-purified Drs2p, possessing an N-terminal tandem affinity purification tag (TAPN-Drs2), retains ATPase and translocase activity, but Drs2p purified using a C-terminal tag (Drs2-TAPC) was inactive. In this study, we show that the ATPase activity of N-terminally purified Drs2p associates primarily with a proteolyzed form of Drs2p lacking the C-terminal cytosolic tail. Truncation of most of the Drs2p C-terminal tail sequence activates its ATPase activity by ∼4-fold. These observations are consistent with the hypothesis that the C-terminal tail of Drs2p is auto-inhibitory to Drs2p activity. Phosphatidylinositol 4-phosphate (PI(4)P) has been shown to positively regulate Drs2p activity in isolated Golgi membranes through interaction with the C-terminal tail. In proteoliposomes reconstituted with purified, N-terminally TAP-tagged Drs2p, both ATPase and flippase activity were significantly higher in the presence of PI(4)P. In contrast, PI(4)P had no significant effect on the activity of a truncated form of Drs2p, which lacked the C-terminal tail. This work provides the first direct evidence, in a purified system, that a phospholipid flippase is subject to auto-inhibition by its C-terminal tail, which can be relieved by a phosphoinositide to stimulate flippase activity.

摘要

Drs2p 是一种酵母 IV 型 P 型 ATP 酶(P4-ATPase),又称翻转酶,它通过 ATP 水解将磷脂酰丝氨酸转移并建立膜不对称性。先前的研究表明,亲和纯化的 Drs2p(具有 N 端串联亲和纯化标签(TAPN-Drs2))保留 ATP 酶和转位酶活性,但使用 C 端标签(Drs2-TAPC)纯化的 Drs2p 则没有活性。在这项研究中,我们表明 N 端纯化的 Drs2p 的 ATP 酶活性主要与缺乏 C 端胞质尾的蛋白水解形式的 Drs2p 相关联。截断 Drs2p 的大部分 C 端尾序列可使 ATP 酶活性激活约 4 倍。这些观察结果与 Drs2p 的 C 端尾自动抑制 Drs2p 活性的假设一致。已经表明,磷脂酰肌醇 4-磷酸(PI(4)P)通过与 C 端尾相互作用,在分离的高尔基体膜中正向调节 Drs2p 的活性。在与纯化的 N 端 TAP 标签化 Drs2p 重建的脂质体中,在存在 PI(4)P 的情况下,ATP 酶和翻转酶活性均显著提高。相比之下,PI(4)P 对缺乏 C 端尾的 Drs2p 截断形式的活性没有明显影响。这项工作首次在纯化系统中提供了直接证据,证明一种磷脂翻转酶受到其 C 端尾的自动抑制,可通过磷酸肌醇来缓解这种抑制以刺激翻转酶活性。

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