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用单克隆抗体探究游离及与聚合物免疫球蛋白结合的人分泌成分的拓扑结构。

Probing the topography of free and polymeric Ig-bound human secretory component with monoclonal antibodies.

作者信息

Bakos M A, Kurosky A, Woodard C S, Denney R M, Goldblum R M

机构信息

Department of Pediatrics, University of Texas Medical Branch, Galveston 77550.

出版信息

J Immunol. 1991 Jan 1;146(1):162-8.

PMID:1701790
Abstract

Secretory component (SC), an integral membrane protein expressed on basolateral surfaces of secretory epithelial cells, mediates the transport of polymeric Ig (PIg) into external secretions. The ectoplasmic segment of SC is released into secretions either in a free form (FSC) or bound to PIg as secretory IgA or IgM. The topography of human SC in its free and PIgA-bound form was studied by using mAb directed against each form of SC. Competition experiments identified a minimum of nine SC epitopes, one of which was dependent on an N-glycosidic moiety. Three of the polypeptide-derived epitopes were displayed on denatured, reduced, and alkylated SC, whereas the others were fully or partially dependent on the native conformation of SC. Epitopes recognized by the latter class of antibodies were mapped to discrete domains of SC, based on amino acid sequence and antibody-binding analysis of limited proteolytic fragments. One of the mAb (6G11), which was directed against an epitope on domain I of SC, inhibited the binding of FSC to PIgA. Overall, our results provide evidence that a region within domain I, as well as protease-sensitive interdomain regions of FSC, become masked or altered when SC binds to PIgA. Furthermore, the binding of SC to PIgA results in conformational changes, or formation of combinatorial epitopes, involving regions within domains II and III of SC but not domain V.

摘要

分泌成分(SC)是一种表达于分泌上皮细胞基底外侧表面的整合膜蛋白,介导聚合免疫球蛋白(PIg)转运至外分泌液中。SC的胞外段以游离形式(FSC)或作为分泌型IgA或IgM与PIg结合的形式释放到分泌物中。通过使用针对每种形式SC的单克隆抗体(mAb)研究了游离形式和与PIgA结合形式的人SC的拓扑结构。竞争实验确定了至少9个SC表位,其中一个依赖于N-糖苷部分。三个多肽衍生表位在变性、还原和烷基化的SC上显示,而其他表位则完全或部分依赖于SC的天然构象。基于有限蛋白水解片段的氨基酸序列和抗体结合分析,后一类抗体识别的表位被定位到SC的离散结构域。其中一个针对SC结构域I上一个表位的mAb(6G11)抑制了FSC与PIgA的结合。总体而言,我们的结果提供了证据,表明当SC与PIgA结合时,结构域I内的一个区域以及FSC的蛋白酶敏感结构域间区域会被掩盖或改变。此外,SC与PIgA的结合导致构象变化,或形成涉及SC结构域II和III内区域但不涉及结构域V的组合表位。

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