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通过表位作图对整合素β1亚基进行结构/功能分析。

Structure/function analysis of the integrin beta 1 subunit by epitope mapping.

作者信息

Shih D T, Edelman J M, Horwitz A F, Grunwald G B, Buck C A

机构信息

Wistar Institute, Philadelphia, PA 19104.

出版信息

J Cell Biol. 1993 Sep;122(6):1361-71. doi: 10.1083/jcb.122.6.1361.

Abstract

Monoclonal antibodies (mAbs) have been produced against the chicken beta 1 subunit that affect integrin functions, including ligand binding, alpha subunit association, and regulation of ligand specificity. Epitope mapping of these antibodies was used to identify regions of the subunit involved in these functions. To accomplish this, we produced mouse/chicken chimeric beta 1 subunits and expressed them in mouse 3T3 cells. These chimeric subunits were fully functional with respect to heterodimer formation, cell surface expression, and cell adhesion. They differed in their ability to react with a panel anti-chicken beta 1 mAbs. Epitopes were identified by a loss of antibody binding upon substitution of regions of the chicken beta 1 subunit by homologous regions of the mouse beta 1 subunit. The identification of the epitope was confirmed by a reciprocal exchange of chicken and mouse beta 1 domains that resulted in the gain of the ability of the mouse subunit to interact with a particular anti-chicken beta 1 mAb. Using this approach, we found that the epitopes for one set of antibodies that block ligand binding mapped toward the amino terminal region of the beta 1 subunit. This region is homologous to a portion of the ligand-binding domain of the beta 3 subunit. In addition, a second set of antibodies that either block ligand binding, alter ligand specificity, or induce alpha/beta subunit dissociation mapped to the cysteine rich repeats near the transmembrane domain of the molecule. These data are consistent with a model in which a portion of beta 1 ligand binding domain rests within the amino terminal 200 amino acids and a regulatory domain, that affects ligand binding through secondary changes in the structure of the molecule resides in a region of the subunit, possibly including the cysteine-rich repeats, nearer the transmembrane domain. The data also suggest the possibility that the alpha subunit may exert an influence on ligand specificity by interacting with this regulatory domain of the beta 1 subunit.

摘要

已制备出针对鸡β1亚基的单克隆抗体(mAb),这些抗体可影响整合素功能,包括配体结合、α亚基缔合以及配体特异性调节。利用这些抗体的表位作图来确定该亚基中参与这些功能的区域。为实现这一目的,我们制备了小鼠/鸡嵌合β1亚基,并在小鼠3T3细胞中进行表达。这些嵌合亚基在异二聚体形成、细胞表面表达和细胞黏附方面具有完全功能。它们与一组抗鸡β1 mAb反应的能力有所不同。通过用小鼠β1亚基的同源区域替换鸡β1亚基的区域后抗体结合丧失来鉴定表位。通过鸡和小鼠β1结构域的相互交换导致小鼠亚基获得与特定抗鸡β1 mAb相互作用的能力,从而证实了表位的鉴定。使用这种方法,我们发现一组阻断配体结合的抗体的表位定位于β1亚基的氨基末端区域。该区域与β3亚基配体结合结构域的一部分同源。此外,另一组要么阻断配体结合、改变配体特异性,要么诱导α/β亚基解离的抗体定位于分子跨膜结构域附近富含半胱氨酸的重复序列。这些数据与一个模型一致,即β1配体结合结构域的一部分位于氨基末端的200个氨基酸内,而一个通过分子结构的二级变化影响配体结合的调节结构域位于亚基的一个区域,可能包括富含半胱氨酸的重复序列,更靠近跨膜结构域。数据还表明α亚基可能通过与β1亚基的这个调节结构域相互作用来影响配体特异性。

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