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磷脂酰肌醇转移蛋白 RdgBβ 通过其无规则的 C 末端与 14-3-3 结合,而其脂质结合域与整合膜蛋白 ATRAP(血管紧张素 II 型 I 受体相关蛋白)相互作用。

The phosphatidylinositol transfer protein RdgBβ binds 14-3-3 via its unstructured C-terminus, whereas its lipid-binding domain interacts with the integral membrane protein ATRAP (angiotensin II type I receptor-associated protein).

机构信息

Department of Neuroscience, Physiology and Pharmacology, University College London, London WC1E 6JJ, UK.

出版信息

Biochem J. 2011 Oct 1;439(1):97-111. doi: 10.1042/BJ20110649.

DOI:10.1042/BJ20110649
PMID:21728994
Abstract

PITPs [PI (phosphatidylinositol) transfer proteins] bind and transfer PI between intracellular membranes and participate in many cellular processes including signalling, lipid metabolism and membrane traffic. The largely uncharacterized PITP RdgBβ (PITPNC1; retinal degeneration type B β), contains a long C-terminal disordered region following its defining N-terminal PITP domain. In the present study we report that the C-terminus contains two tandem phosphorylated binding sites (Ser(274) and Ser(299)) for 14-3-3. The C-terminus also contains PEST sequences which are shielded by 14-3-3 binding. Like many proteins containing PEST sequences, the levels of RdgBβ are regulated by proteolysis. RdgBβ is degraded with a half-life of 4 h following ubiquitination via the proteasome. A mutant RdgBβ which is unable to bind 14-3-3 is degraded even faster with a half-life of 2 h. In vitro, RdgBβ is 100-fold less active than PITPα for PI transfer, and RdgBβ proteins (wild-type and a mutant that cannot bind 14-3-3) expressed in COS-7 cells or endogenous proteins from heart cytosol do not exhibit transfer activity. When cells are treated with PMA, the PITP domain of RdgBβ interacts with the integral membrane protein ATRAP (angiotensin II type I receptor-associated protein; also known as AGTRAP) causing membrane recruitment. We suggest that RdgBβ executes its function following recruitment to membranes via its PITP domain and the C-terminal end of the protein could regulate entry to the hydrophobic cavity.

摘要

PITPs(PI(磷脂酰肌醇)转移蛋白)结合并在细胞内膜之间转移 PI,并参与许多细胞过程,包括信号转导、脂质代谢和膜运输。在很大程度上尚未被表征的 PITP RdgBβ(PITPNC1;视网膜变性 B 型β),在其定义的 N 端 PITP 结构域之后包含一个长的 C 端无序区域。在本研究中,我们报告该 C 端包含两个串联的磷酸化结合位点(Ser(274)和 Ser(299))用于 14-3-3。C 端还包含 PEST 序列,该序列被 14-3-3 结合所屏蔽。像许多含有 PEST 序列的蛋白质一样,RdgBβ 的水平受到蛋白水解的调节。RdgBβ 在通过蛋白酶体泛素化后,半衰期为 4 小时被降解。不能结合 14-3-3 的 RdgBβ 突变体降解更快,半衰期为 2 小时。在体外,RdgBβ 对于 PI 转移的活性比 PITPα 低 100 倍,并且在 COS-7 细胞中表达的 RdgBβ 蛋白(野生型和不能结合 14-3-3 的突变体)或来自心脏细胞质的内源性蛋白都没有表现出转移活性。当用 PMA 处理细胞时,RdgBβ 的 PITP 结构域与完整膜蛋白 ATRAP(血管紧张素 II 型 I 受体相关蛋白;也称为 AGTRAP)相互作用,导致膜募集。我们认为,RdgBβ 通过其 PITP 结构域和蛋白质的 C 末端募集到膜后执行其功能,并且蛋白质的 C 末端可能调节进入疏水区。

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