Popova Svetlana N, Rodriguez-Sánchez Belén, Lidén Asa, Betsholtz Christer, Van Den Bos Theo, Gullberg Donald
Department of Medical Biochemistry and Microbiology, Biomedical Center, Uppsala, Sweden.
Dev Biol. 2004 Jun 15;270(2):427-42. doi: 10.1016/j.ydbio.2004.03.006.
alpha11beta1 constitutes the most recent addition to the integrin family and has been shown to display a binding preference for interstitial collagens found in mesenchymal tissues. We have previously observed that when alpha11beta1 integrin is expressed in cells lacking endogenous collagen receptors, it can mediate PDGF-BB-dependent chemotaxis on collagen I in vitro. To determine in which cells PDGF and alpha11beta1 might cooperate in regulating cell migration in vivo, we studied in detail the expression and distribution of alpha11 integrin chain in mouse embryos and tested the ability of PDGF isoforms to stimulate the alpha11beta1-mediated cell migration of embryonic fibroblasts. Full-length mouse alpha11 cDNA was sequenced and antibodies were raised to deduced alpha11 integrin amino acid sequence. In the embryonic mouse head, alpha11 protein and RNA were localized to ectomesenchymally derived cells. In the periodontal ligament, alpha11beta1 was expressed as the only detectable collagen-binding integrin, and alpha11beta1 is thus a major receptor for cell migration and matrix organization in this cell population. In the remainder of the embryo, the alpha11 chain was expressed in a subset of mesenchymal cells including tendon/ligament fibroblasts, perichondrial cells, and intestinal villi fibroblasts. Most of the alpha11-expressing cells also expressed the alpha2 integrin chain, but no detectable overlap was found with the alpha1 integrin chain. In cells expressing multiple collagen receptors, these might function to promote a more stable cell adhesion and render the cells more resistant to chemotactic stimuli. Wild-type embryonic fibroblasts activated mainly the PDGF beta receptor in response to PDGF-BB and migrated on collagens I, II, III, IV, V, and XI in response to PDGF-BB in vitro, whereas mutant fibroblasts that lacked alpha11beta1 in their collagen receptor repertoire showed a stronger chemotactic response on collagens when stimulated with PDGF-BB. In the cellular context of embryonic fibroblasts, alpha11beta1 is thus anti-migratory. We speculate that the PDGF BB-dependent cell migration of mesenchymal cells is tightly regulated by the collagen receptor repertoire, and disturbances of this repertoire might lead to unregulated cell migration that could affect normal embryonic development and tissue structure.
α11β1是整合素家族中最新发现的成员,已被证明对间充质组织中的间质胶原具有结合偏好。我们之前观察到,当α11β1整合素在缺乏内源性胶原受体的细胞中表达时,它可以在体外介导血小板衍生生长因子-BB(PDGF-BB)依赖的I型胶原趋化作用。为了确定在体内PDGF和α11β1可能在哪些细胞中协同调节细胞迁移,我们详细研究了α11整合素链在小鼠胚胎中的表达和分布,并测试了PDGF亚型刺激胚胎成纤维细胞α11β1介导的细胞迁移的能力。对全长小鼠α11 cDNA进行了测序,并针对推导的α11整合素氨基酸序列制备了抗体。在胚胎小鼠头部,α11蛋白和RNA定位于外胚间充质来源的细胞。在牙周韧带中,α11β1是唯一可检测到的胶原结合整合素,因此α11β1是该细胞群体中细胞迁移和基质组织的主要受体。在胚胎的其余部分,α11链在包括肌腱/韧带成纤维细胞、软骨膜细胞和肠绒毛成纤维细胞在内的间充质细胞亚群中表达。大多数表达α11的细胞也表达α2整合素链,但未发现与α1整合素链有可检测到的重叠。在表达多种胶原受体的细胞中,这些受体可能起到促进更稳定的细胞黏附并使细胞对趋化刺激更具抗性的作用。野生型胚胎成纤维细胞在体外对PDGF-BB主要激活PDGFβ受体,并在I、II、III、IV、V和XI型胶原上对PDGF-BB产生迁移反应,而在其胶原受体库中缺乏α11β1的突变成纤维细胞在用PDGF-BB刺激时,在胶原上表现出更强的趋化反应。因此,在胚胎成纤维细胞这种细胞环境中,α11β1具有抗迁移作用。我们推测,间充质细胞中PDGF BB依赖的细胞迁移受到胶原受体库的严格调控,该受体库的紊乱可能导致细胞迁移失控,进而影响正常的胚胎发育和组织结构。