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L-选择素的细胞质结构域参与调节L-选择素的内蛋白水解作用。

The cytoplasmic domain of L-selectin participates in regulating L-selectin endoproteolysis.

作者信息

Matala E, Alexander S R, Kishimoto T K, Walcheck B

机构信息

Center for Immunology, University of Minnesota, St. Paul, MN 55108, USA.

出版信息

J Immunol. 2001 Aug 1;167(3):1617-23. doi: 10.4049/jimmunol.167.3.1617.

Abstract

Neutrophil recruitment at sites of inflammation is regulated by a series of adhesion and activation events. L-selectin (CD62L) is a leukocyte expressed adhesion protein that is important for neutrophil accumulation and rolling along the vascular endothelium. L-selectin is unique from other adhesion molecules involved in leukocyte transmigration in that its adhesiveness appears to be regulated partly by rapid endoproteolysis. Cleavage of L-selectin occurs within a membrane-proximal region that results in ectodomain shedding and retention of a 6-kDa transmembrane fragment. The cleavage domain of L-selectin has been well characterized through mutational analysis. Whether the cytoplasmic domain of L-selectin also plays a role in regulating shedding is controversial. We have previously shown that the Ca(2+)-sensing protein calmodulin (CaM) constitutively associates with the cytoplasmic domain of L-selectin in transfected cell lines. However, in the absence of mapping and mutational analysis of the CaM-binding region of L-selectin, there remains no direct evidence that this interaction affects shedding. Using synthesized peptides and expressed L-selectin constructs, we demonstrate that CaM binding activity occurs in the membrane-proximal region of the cytoplasmic domain. Mutations engineered in this region that prevent CaM binding increase the proteolytic turnover of L-selectin. Moreover, we demonstrate that CaM binding to the 6-kDa transmembrane fragment is greatly reduced compared with intact L-selectin in neutrophils, suggesting that CaM binding is regulated. These data imply that the cytoplasmic domain of L-selectin can regulate shedding by a mechanism in which bound CaM may operate as a negative effector.

摘要

炎症部位的中性粒细胞募集受一系列黏附与激活事件调控。L-选择素(CD62L)是一种白细胞表达的黏附蛋白,对中性粒细胞在血管内皮上的积聚和滚动很重要。L-选择素与参与白细胞迁移的其他黏附分子不同,其黏附性似乎部分受快速内切蛋白水解作用调控。L-选择素的裂解发生在膜近端区域,导致胞外域脱落并保留一个6 kDa的跨膜片段。通过突变分析,L-选择素的裂解结构域已得到充分表征。L-选择素的胞质结构域是否也在调控脱落中发挥作用存在争议。我们之前已表明,钙传感蛋白钙调蛋白(CaM)在转染细胞系中与L-选择素的胞质结构域组成性结合。然而,在缺乏对L-选择素的CaM结合区域进行定位和突变分析的情况下,仍然没有直接证据表明这种相互作用会影响脱落。使用合成肽和表达的L-选择素构建体,我们证明CaM结合活性发生在胞质结构域的膜近端区域。在该区域设计的阻止CaM结合的突变会增加L-选择素的蛋白水解周转率。此外,我们证明与中性粒细胞中的完整L-选择素相比,CaM与6 kDa跨膜片段的结合大大减少,这表明CaM结合受到调控。这些数据表明,L-选择素的胞质结构域可以通过一种机制来调控脱落,其中结合的CaM可能作为负效应器起作用。

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