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层粘连蛋白α链G结构域中同源环区域的生物学活性。

Biological activities of homologous loop regions in the laminin alpha chain G domains.

作者信息

Suzuki Nobuharu, Nakatsuka Hiroko, Mochizuki Mayumi, Nishi Norio, Kadoya Yuichi, Utani Atsushi, Oishi Shinya, Fujii Nobutaka, Kleinman Hynda K, Nomizu Motoyoshi

机构信息

Graduate School of Environmental Earth Science, Hokkaido University, Sapporo 060-0810, Japan.

出版信息

J Biol Chem. 2003 Nov 14;278(46):45697-705. doi: 10.1074/jbc.M304667200. Epub 2003 Aug 20.

Abstract

Laminin alpha chains (alpha1-alpha5 chains) have diverse chain-specific biological functions. The LG4 modules of laminin alpha chains consist of a 14-stranded beta-sheet (A-N) sandwich structure. Several biologically active sequences have been identified in the connecting loop regions. Here, we evaluated the biological activities of the loop regions of the E and F strands in the LG4 modules using five homologous peptides from each of the mouse alpha chains (EF-1: DYATLQLQEGRLHFMFDLG, alpha1 chain 2747-2765; EF-2: DFGTVQLRNGFPFFSYDLG, alpha2 chain 2808-2826; EF-3: RDSFVALYLSEGHVIFALG, alpha3 chain 2266-2284; EF-4: DFMTLFLAHGRLVFMFNVG, alpha4 chain 1511-1529; EF-5: SPSLVLFLNHGHFVAQTEGP, alpha5 chain 3304-3323). These homologous peptides showed chain-specific cell attachment and neurite outgrowth activities. Well organized actin stress fibers and focal contacts with vinculin accumulation were observed in fibroblasts attached on EF-1, whereas fibroblasts on EF-2 and EF-4 showed filopodia with ruffling. Fibroblast attachment to EF-2 and EF-4 was mediated by syndecan-2. In contrast, EF-1 promoted alpha2beta1 integrin-mediated fibroblast attachment and inhibited fibroblast attachment to a recombinant laminin alpha1 chain LG4-5. The receptors for EF-3 and EF-5 are unknown. Further, when the active core sequence of EF-1 was cyclized, utilizing two additional cysteine residues at both the N and C termini through a disulfide bridge, the cyclic peptide significantly enhanced integrin-mediated cell attachment. These results indicate that integrin-mediated cell attachment to the EF-1 sequence is conformation-dependent and that the loop structure is important for the activity. The homologous peptides, which promote either integrin- or syndecan-mediated cell attachment, may be useful for understanding the cell type- and chain-specific biological activities of the laminins.

摘要

层粘连蛋白α链(α1-α5链)具有多种链特异性生物学功能。层粘连蛋白α链的LG4模块由14股β折叠(A-N)三明治结构组成。在连接环区域已鉴定出几种生物活性序列。在此,我们使用来自小鼠各α链的五个同源肽评估了LG4模块中E链和F链环区域的生物学活性(EF-1:DYATLQLQEGRLHFMFDLG,α1链2747-2765;EF-2:DFGTVQLRNGFPFFSYDLG,α2链2808-2826;EF-3:RDSFVALYLSEGHVIFALG,α3链2266-2284;EF-4:DFMTLFLAHGRLVFMFNVG,α4链1511-1529;EF-5:SPSLVLFLNHGHFVAQTEGP,α5链3304-3323)。这些同源肽表现出链特异性的细胞黏附及神经突生长活性。在附着于EF-1的成纤维细胞中观察到组织良好的肌动蛋白应力纤维以及有桩蛋白积累的粘着斑,而EF-2和EF-4上的成纤维细胞则显示出带有褶皱的丝状伪足。成纤维细胞对EF-2和EF-4的黏附由多功能蛋白聚糖-2介导。相比之下,EF-1促进α2β1整合素介导的成纤维细胞黏附,并抑制成纤维细胞对重组层粘连蛋白α1链LG4-5的黏附。EF-3和EF-5的受体尚不清楚。此外,当通过二硫键利用N和C末端的另外两个半胱氨酸残基使EF-1的活性核心序列环化时,环肽显著增强了整合素介导的细胞黏附。这些结果表明,整合素介导的细胞对EF-1序列的黏附依赖于构象,并且环结构对活性很重要。促进整合素或多功能蛋白聚糖介导的细胞黏附的同源肽,可能有助于理解层粘连蛋白的细胞类型和链特异性生物学活性。

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