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神经元细胞黏附分子Contactin/F11通过其免疫球蛋白样结构域与腱生蛋白结合。

Neuronal cell adhesion molecule contactin/F11 binds to tenascin via its immunoglobulin-like domains.

作者信息

Zisch A H, D'Alessandri L, Ranscht B, Falchetto R, Winterhalter K H, Vaughan L

机构信息

Laboratorium für Biochemie I, ETH-Zentrum, Zürich, Switzerland.

出版信息

J Cell Biol. 1992 Oct;119(1):203-13. doi: 10.1083/jcb.119.1.203.

Abstract

Adhesive interactions between neurons and extracellular matrix (ECM) play a key role in neuronal pattern formation. The prominent role played by the extracellular matrix protein tenascin/cytotactin in the development of the nervous system, tied to its abundance, led us to speculate that brain may contain yet unidentified tenascin receptors. Here we show that the neuronal cell adhesion molecule contactin/F11, a member of the immunoglobulin(Ig)-superfamily, is a cell surface ligand for tenascin in the nervous system. Through affinity chromatography of membrane glycoproteins from chick brain on tenascin-Sepharose, we isolated a major cell surface ligand of 135 kD which we identified as contactin/F11 by NH2-terminal sequencing. The binding specificity between contactin/F11 and tenascin was demonstrated in solid-phase assays. Binding of immunopurified 125I-labeled contactin/F11 to immobilized tenascin is completely inhibited by the addition of soluble tenascin or contactin/F11, but not by fibronectin. When the fractionated isoforms of tenascin were used as substrates, contactin/F11 bound preferentially to the 190-kD isoform. This isoform differs in having no alternatively spliced fibronectin type III domains. Our results imply that the introduction of these additional domains in some way disrupts the contactin/F11 binding site on tenascin. To localize the binding site on contactin/F11, proteolytic fragments were generated and characterized by NH2-terminal sequencing. The smallest contactin/F11 fragment which binds tenascin is 45 kD and also begins with the contactin/F11 NH2-terminal sequence. This implies that contactin/F11 binds to tenascin through a site within the first three Ig-domains.

摘要

神经元与细胞外基质(ECM)之间的黏附相互作用在神经元模式形成中起关键作用。细胞外基质蛋白腱生蛋白/细胞趋化蛋白在神经系统发育中发挥的重要作用,与其丰富的含量相关,这使我们推测大脑中可能存在尚未被鉴定的腱生蛋白受体。在此我们表明,神经元细胞黏附分子接触蛋白/F11,一种免疫球蛋白(Ig)超家族成员,是神经系统中腱生蛋白的细胞表面配体。通过用腱生蛋白 - 琼脂糖对鸡脑的膜糖蛋白进行亲和层析,我们分离出一种135 kD的主要细胞表面配体,通过氨基末端测序我们将其鉴定为接触蛋白/F11。接触蛋白/F11与腱生蛋白之间的结合特异性在固相分析中得到证实。免疫纯化的125I标记的接触蛋白/F11与固定化腱生蛋白的结合可被可溶性腱生蛋白或接触蛋白/F11完全抑制,但不能被纤连蛋白抑制。当使用腱生蛋白的分级分离同工型作为底物时,接触蛋白/F11优先结合190 - kD同工型。这种同工型的不同之处在于没有可变剪接的纤连蛋白III型结构域。我们的结果表明,这些额外结构域的引入以某种方式破坏了腱生蛋白上的接触蛋白/F11结合位点。为了定位接触蛋白/F11上的结合位点,生成了蛋白水解片段并通过氨基末端测序进行表征。与腱生蛋白结合的最小接触蛋白/F11片段为45 kD,也从接触蛋白/F11的氨基末端序列开始。这意味着接触蛋白/F11通过前三个Ig结构域内的一个位点与腱生蛋白结合。

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