Yokosaki Y, Matsuura N, Higashiyama S, Murakami I, Obara M, Yamakido M, Shigeto N, Chen J, Sheppard D
Department of Internal Medicine, National Hiroshima Hospital, 513 Jike, Saijoh Higashi-Hiroshima 739-0041, Japan.
J Biol Chem. 1998 May 8;273(19):11423-8. doi: 10.1074/jbc.273.19.11423.
The integrin alpha9 subunit forms a single heterodimer, alpha9 beta1 that mediates cell adhesion to a site within the third fibronectin type III repeat of tenascin-C (TNfn3). In contrast to at least 3 other integrins that bind to this region of tenascin-C, alpha9 beta1 does not recognize the common integrin recognition motif, Arg-Gly-Asp (RGD). In this report, we have used substitution mutagenesis to identify a unique ligand recognition sequence in TNfn3. We introduced mutations substituting alanine for each of the acidic residues in or adjacent to each of the exposed loops predicted from the solved crystal structure. Most of these mutations had little or no effect on adhesion of alpha9-transfected SW480 colon carcinoma cells, but mutations of either of two acidic residues in the B-C loop region markedly reduced attachment of these cells. In contrast, cells expressing the integrin alphav beta3, previously reported to bind to the RGD sequence in the adjacent F-G loop, attached to all mutant fragments except one in which the RGD site was mutated to RAA. The peptide, AEIDGIEL, based on the sequence of human tenascin-C in this region blocked the binding of alpha9-transfected cells, but not beta3-transfected cells to wild type TNfn3. This sequence contains a tripeptide, IDG, homologous to the sequences LDV, IDA, and LDA in fibronectin and IDS in VCAM-1 recognized by the closely related integrin alpha4 beta1. These findings support the idea that this tripeptide motif serves as a ligand binding site for the alpha4/alpha9 subfamily of integrins.
整合素α9亚基形成单一的异二聚体α9β1,它介导细胞与腱生蛋白-C(TN-C)第三个III型纤连蛋白重复序列(TNfn3)内的一个位点黏附。与至少其他3种结合腱生蛋白-C该区域的整合素不同,α9β1不识别常见的整合素识别基序精氨酸-甘氨酸-天冬氨酸(RGD)。在本报告中,我们利用替代诱变来鉴定TNfn3中一个独特的配体识别序列。我们引入突变,将从已解析的晶体结构预测的每个暴露环内或其附近的酸性残基逐个替换为丙氨酸。这些突变大多数对α9转染的SW480结肠癌细胞的黏附影响很小或没有影响,但B-C环区域两个酸性残基中任一个的突变都显著降低了这些细胞的附着。相比之下,表达整合素αvβ3(先前报道其结合相邻F-G环中的RGD序列)的细胞,除了一个RGD位点突变为RAA的突变片段外,能附着于所有突变片段。基于该区域人腱生蛋白-C序列的肽AEIDGIEL可阻断α9转染细胞与野生型TNfn3的结合,但不影响β3转染细胞与野生型TNfn3的结合。该序列包含一个三肽IDG,与纤连蛋白中的序列LDV、IDA和LDA以及血管细胞黏附分子-1(VCAM-1)中被密切相关的整合素α4β1识别的IDS序列同源。这些发现支持这样一种观点,即这个三肽基序作为整合素α4/α9亚家族的配体结合位点。