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Multiple cell surface receptors for the short arms of laminin: alpha 1 beta 1 integrin and RGD-dependent proteins mediate cell attachment only to domains III in murine tumor laminin

机译:层粘连蛋白短臂的多个细胞表面受体:α1 beta 1整联蛋白和RGD依赖性蛋白仅介导细胞附着于鼠肿瘤层粘连蛋白中的结构域III

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摘要

Cell surface molecules that interact with the cross formed by the three short arms of murine tumor laminin were studied using thermal perturbation, antibody and peptide blocking, and affinity chromatography. Several potential receptors for the laminin short arms were revealed that differed from those mediating cell attachment to the E8 (long arm) fragment. Two cell lines, Rugli and L8 attached well to E1-X (short arm) fragments of laminin. This attachment was blocked by antibodies against alpha 1 integrin chains. Other cells were unable to attach strongly to E1-X, but attached to P1. This attachment was unaffected by anti-beta 1 integrin antibodies, but specifically blocked by the peptide GRGDS. By contrast, binding of Rugli cells was RGD independent and blocked by anti-beta 1 integrin antibodies. G7 and C2C12 myoblasts were very sensitive to GRGDS (ID50 approximately 2 micrograms.ml-1) for attachment to P1 which implied that a non-beta 1 series integrin, possibly alpha v beta 3, was involved. On heat denaturation of P1(3) attachment remained sensitive to RGDS and ID50 was unchanged. On heat denaturation of E1-X, attachment remained sensitive to RGDS but the ID50 increased to approximately 200 micrograms.ml-1. Cellular beta 1 integrins were retained on laminin affinity columns. A beta 1 integrin with an approximately 190 kD alpha- chain could be isolated from Rugli cells whose attachment could be blocked by anti-alpha 1 antibodies and not from cells blocked by RGDS peptides. Anti-alpha 1 antibodies blocked Rugli attachment to native laminin, but only when the E8 cell binding sites on laminin were also blocked. Thus, a receptor related to alpha 1 beta 1 integrin can function simultaneously with a receptor for E8. Anti-alpha 1 also blocked attachment to heated laminin, suggesting that the heat-stable attachment activity in laminin involved the E1-X binding site. Thus, at least two putative receptors mediate attachment to the short arms of laminin. One, related to alpha 1 beta 1 integrin, recognizes RGDS- independent sites in E1-X defined by P1 (within domains III, IIIa, IIIb), and one is an RGD-dependent molecule recognizing sites in P1, and is not a beta 1 integrin.
机译:使用热扰动,抗体和肽封闭以及亲和色谱法研究了与小鼠肿瘤层粘连蛋白的三个短臂形成的交叉相互作用的细胞表面分子。揭示了层粘连蛋白短臂的几种潜在受体,不同于介导细胞附着于E8(长臂)片段的那些受体。 Rugli和L8这两个细胞系与层粘连蛋白的E1-X(短臂)片段连接良好。这种附着被针对α1整联蛋白链的抗体所阻断。其他细胞无法牢固地附着到E1-X,但可以附着到P1。该附着不受抗β1整联蛋白抗体的影响,但被肽GRGDS特异性阻断。相反,Rugli细胞的结合是RGD独立的,并被抗β1整联蛋白抗体阻断。 G7和C2C12成肌细胞对GRGDS(ID50约为2微克.ml-1)对P1的附着非常敏感,这暗示了涉及非beta 1系列整联蛋白,可能是alpha v beta 3。在对P1(3)进行热变性时,附件仍然对RGDS敏感,ID50不变。在E1-X热变性时,附着仍然对RGDS敏感,但是ID50增加到大约200微克.ml-1。细胞β1整联蛋白保留在层粘连蛋白亲和柱上。可以从Rugli细胞中分离出具有大约190 kDα链的β1整联蛋白,而该细胞的附着可以被抗α1抗体阻断,而不是从RGDS肽阻断的细胞中分离。抗α1抗体可阻止Rugli与天然层粘连蛋白的附着,但是只有当层粘连蛋白上的E8细胞结合位点也被阻塞时,才能进行。因此,与α1β1整联蛋白有关的受体可以与E8的受体同时起作用。抗α1也阻断了对加热的层粘连蛋白的附着,表明层粘连蛋白中的热稳定的附着活性涉及E1-X结合位点。因此,至少两个推定的受体介导了层粘连蛋白短臂的附着。其中一个与alpha 1 beta 1整联蛋白有关,可识别P1定义的E1-X中RGDS独立的位点(在结构域III,IIIa,IIIb中),一个是RGD依赖的分子识别P1中的位点,而不是beta 1个整合素

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  • 年度 1991
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