Zhang X P, Kamata T, Yokoyama K, Puzon-McLaughlin W, Takada Y
Department of Vascular Biology, The Scripps Research Institute, La Jolla, California 92037, USA.
J Biol Chem. 1998 Mar 27;273(13):7345-50. doi: 10.1074/jbc.273.13.7345.
MDC-15 (ADAM-15, metargidin), a membrane-anchored metalloprotease/disintegrin/cysteine-rich protein, is expressed on the surface of a wide range of cells and has an RGD tripeptide in its disintegrin-like domain. MDC-15 is potentially involved in cell-cell interactions through its interaction with integrins. We expressed a recombinant MDC-15 disintegrin-like domain as a fusion protein with glutathione S-transferase (designated D-15) in bacteria and examined its binding function to integrins using mammalian cells expressing different recombinant integrins. We found that D-15 specifically interacts with alphavbeta3 but not with the other integrins tested (alpha2beta1, alpha3beta1, alpha4beta1, alpha5beta1, alpha6beta1, alpha6beta4, alphavbeta1, alphaIIbbeta3, and alphaLbeta2). Mutation of the tripeptide RGD to SGA totally blocked binding of D-15 to alphavbeta3, suggesting that D-15-alphavbeta3 interaction is RGD-dependent. When the sequence RPTRGD is mutated to NWKRGD, D-15 is recognized by both alphaIIbbeta3 and alphavbeta3, suggesting that the receptor binding specificity is mediated by the sequence flanking the RGD tripeptide, as in snake venom disintegrins. These results indicate that the disintegrin-like domain of MDC-15 functions as an adhesion molecule and may be involved n alphavbeta3-mediated cell-cell interactions.
MDC - 15(ADAM - 15,间凝配素)是一种膜锚定金属蛋白酶/解整合素/富含半胱氨酸蛋白,在多种细胞表面表达,其解整合素样结构域含有一个RGD三肽。MDC - 15可能通过与整合素相互作用参与细胞间相互作用。我们在细菌中表达了一种重组MDC - 15解整合素样结构域,它与谷胱甘肽S - 转移酶融合(命名为D - 15),并使用表达不同重组整合素的哺乳动物细胞检测其与整合素的结合功能。我们发现D - 15特异性地与αvβ3相互作用,而不与其他测试的整合素(α2β1、α3β1、α4β1、α5β1、α6β1、α6β4、αvβ1、αIIbβ3和αLβ2)相互作用。三肽RGD突变为SGA完全阻断了D - 15与αvβ3的结合,表明D - 15与αvβ3的相互作用是RGD依赖性的。当序列RPTRGD突变为NWKRGD时,D - 15同时被αIIbβ3和αvβ3识别,这表明受体结合特异性是由RGD三肽侧翼的序列介导的,就像蛇毒解整合素一样。这些结果表明,MDC - 15的解整合素样结构域作为一种黏附分子发挥作用,可能参与αvβ3介导的细胞间相互作用。