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鉴定小的PDZK1相关蛋白DD96/MAP17作为PDZK1和血浆高密度脂蛋白水平的调节因子。

Identification of small PDZK1-associated protein, DD96/MAP17, as a regulator of PDZK1 and plasma high density lipoprotein levels.

作者信息

Silver David L, Wang Nan, Vogel Silke

机构信息

Department of Medicine, Division of Molecular Medicine, Columbia University College of Physicians and Surgeons, New York, New York 10032, USA.

出版信息

J Biol Chem. 2003 Aug 1;278(31):28528-32. doi: 10.1074/jbc.M304109200. Epub 2003 May 15.

Abstract

Scavenger receptor class B, type I (SR-BI) is the high density lipoprotein (HDL) receptor essential for hepatic uptake of HDL cholesterol. SR-BI was shown to impact plasma HDL levels and be anti-atherogenic. Thus, the ability to regulate hepatic SR-BI may allow for the modulation of plasma HDL cholesterol and progression of atherosclerosis. However, regulation of SR-BI in liver is not well understood. Recently, the PDZ domain containing protein PDZK1 was shown to interact with SR-BI and may serve an essential role in SR-BI cell surface expression. Here we identify an in vivo PDZK1-interacting protein that we named small PDZK1-associated protein (SPAP; also known as DD96/MAP17). Unexpectedly, we found that hepatic overexpression of SPAP in mice resulted in liver deficiency of PDZK1. The absence of PDZK1 in SPAP transgenic mice resulted in a deficiency of SR-BI in liver and markedly increased plasma HDL. Metabolic labeling experiments showed that the proteasome plays a role in the turnover of newly synthesized PDZK1, but that SPAP overexpression in liver increased PDZK1 turnover in an alternate, proteasome-independent pathway. Thus, SPAP may be an endogenous regulator of cellular PDZK1 levels by regulating PDZK1 turnover.

摘要

I型清道夫受体B类(SR-BI)是肝脏摄取高密度脂蛋白(HDL)胆固醇所必需的HDL受体。已证明SR-BI会影响血浆HDL水平并具有抗动脉粥样硬化作用。因此,调节肝脏SR-BI的能力可能有助于调节血浆HDL胆固醇和动脉粥样硬化的进展。然而,肝脏中SR-BI的调节机制尚不清楚。最近,含PDZ结构域的蛋白PDZK1被证明与SR-BI相互作用,并且可能在SR-BI细胞表面表达中起重要作用。在此,我们鉴定出一种体内与PDZK1相互作用的蛋白,我们将其命名为小PDZK1相关蛋白(SPAP;也称为DD96/MAP17)。出乎意料的是,我们发现小鼠肝脏中SPAP的过表达导致肝脏中PDZK1缺乏。SPAP转基因小鼠中PDZK1的缺失导致肝脏中SR-BI缺乏,并使血浆HDL显著增加。代谢标记实验表明,蛋白酶体在新合成的PDZK1的周转中起作用,但肝脏中SPAP的过表达通过另一种不依赖蛋白酶体的途径增加了PDZK1的周转。因此,SPAP可能通过调节PDZK1的周转成为细胞内PDZK1水平的内源性调节因子。

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