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整合素α4β1(VLA-4,CD49d/CD29)假定配体结合位点的鉴定

Identification of putative ligand-binding sites of the integrin alpha 4 beta 1 (VLA-4, CD49d/CD29).

作者信息

Kamata T, Puzon W, Takada Y

机构信息

Department of Vascular Biology, Scripps Research Intitute, La Jolla, CA 92037, USA.

出版信息

Biochem J. 1995 Feb 1;305 ( Pt 3)(Pt 3):945-51. doi: 10.1042/bj3050945.

Abstract

Integrin alpha 4 beta 1 recognizes both fibronectin (CS-1 sequence) and vascular cell adhesion molecule-1 (VCAM-1). To localize the ligand-binding sites of alpha 4, we located the epitopes for function-blocking anti-alpha 4 monoclonal antibodies (mAbs), including those that recognize previously described (but not yet physically localized) functional epitopes (A, B1, B2 and C) using interspecies alpha 4 chimeras expressed in mammalian cells. Epitopes B1 and B2 were associated with ligand binding, and epitopes A and B2 with homotypic cellular aggregation. mAbs P4C2 (epitope B2), 20E4 and PS/2 were mapped within residues 108-182; mAbs HP2/1 (epitope B1), SG/73 and R1-2 within residues 195-268; mAbs HP1/3 (epitope A) and P4G9 within residues 1-52; and B5G10 (epitope C) within residues 269-548. The data suggest that residues 108-268, which do not include bivalent-cation-binding motifs, are related to VCAM-1 and CS-1 binding, and more N-terminal portions of alpha 4 (residues 1 and 52 and 108-182) to homotypic aggregation. Since mAbs PS/2 and HP2/1 block alpha 4 beta 7 binding to mucosal addressin cell adhesion molecule-1 (MAdCAM-1), the MAdCAM-1-binding site is close to, or overlapping with, VCAM-1- and CS-1-binding sites. The role of Asp-130 of beta 1 in the binding to VCAM-1 and CS-1 peptide was examined. Chinese hamster ovary (CHO) cells expressing beta 1 (D130A) (Asp-130 to Ala mutant of beta 1) and alpha 4 showed much less binding to both ligands than CHO cells expressing wild-type beta 1 and alpha 4 [a dominant negative effects of beta 1 (D130A)], suggesting that Asp-130 of beta 1 is critical for binding to both ligands and that the two ligand share common binding mechanisms [corrected].

摘要

整合素α4β1可识别纤连蛋白(CS-1序列)和血管细胞黏附分子-1(VCAM-1)。为了定位α4的配体结合位点,我们确定了功能阻断性抗α4单克隆抗体(mAb)的表位,包括那些识别先前描述的(但尚未进行物理定位)功能性表位(A、B1、B2和C)的抗体,通过在哺乳动物细胞中表达的种间α4嵌合体来实现。表位B1和B2与配体结合相关,表位A和B2与同型细胞聚集相关。单克隆抗体P4C2(表位B2)、20E4和PS/2定位在108 - 182位残基内;单克隆抗体HP2/1(表位B1)、SG/73和R1-2定位在195 - 268位残基内;单克隆抗体HP1/3(表位A)和P4G9定位在1 - 52位残基内;B5G10(表位C)定位在269 - 548位残基内。数据表明,不包括二价阳离子结合基序的108 - 268位残基与VCAM-1和CS-1结合相关,而α4的更N端部分(1、52以及108 - 182位残基)与同型聚集相关。由于单克隆抗体PS/2和HP2/1可阻断α4β7与黏膜地址素细胞黏附分子-1(MAdCAM-1)的结合,所以MAdCAM-1结合位点与VCAM-1和CS-1结合位点接近或重叠。研究了β1的天冬氨酸130在与VCAM-1和CS-1肽结合中的作用。表达β1(D130A)(β1的天冬氨酸130突变为丙氨酸)和α4的中国仓鼠卵巢(CHO)细胞与两种配体的结合比表达野生型β1和α4的CHO细胞少得多[β1(D130A)的显性负效应],这表明β1的天冬氨酸130对于与两种配体的结合至关重要,并且这两种配体具有共同的结合机制[已修正]。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/60b4/1136349/b1e3b9720438/biochemj00070-0253-a.jpg

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