Department of Clinical Biochemistry, Tokyo University of Pharmacy and Life Sciences, Tokyo, 192-0392, Japan.
Division of Molecular Brain Science, Kobe University Graduate School of Medicine, Kobe, Hyogo, 650-0017, Japan.
Sci Rep. 2019 Sep 10;9(1):13037. doi: 10.1038/s41598-019-49669-x.
Human induced pluripotent stem cells (hiPSCs) grow indefinitely in culture and have the potential to regenerate various tissues. In the development of cell culture systems, a fragment of laminin-511 (LM511-E8) was found to improve the proliferation of stem cells. The adhesion of undifferentiated cells to LM511-E8 is mainly mediated through integrin α6β1. However, the involvement of non-integrin receptors remains unknown in stem cell culture using LM511-E8. Here, we show that dystroglycan (DG) is strongly expressed in hiPSCs. The fully glycosylated DG is functionally active for laminin binding, and although it has been suggested that LM511-E8 lacks DG binding sites, the fragment does weakly bind to DG. We further identified the DG binding sequence in LM511-E8, using synthetic peptides, of which, hE8A5-20 (human laminin α5 2688-2699: KTLPQLLAKLSI) derived from the laminin coiled-coil domain, exhibited DG binding affinity and cell adhesion activity. Deletion and mutation studies show that LLAKLSI is the active core sequence of hE8A5-20, and that, K2696 is a critical amino acid for DG binding. We further demonstrated that hiPSCs adhere to hE8A5-20-conjugated chitosan matrices. The amino acid sequence of DG binding peptides would be useful to design substrata for culture system of undifferentiated and differentiated stem cells.
人诱导多能干细胞(hiPSCs)在培养中无限期生长,并且具有再生各种组织的潜力。在细胞培养系统的发展过程中,发现层粘连蛋白-511(LM511-E8)的一个片段可以提高干细胞的增殖。未分化细胞与 LM511-E8 的黏附主要通过整合素α6β1 介导。然而,在使用 LM511-E8 的干细胞培养中,非整合素受体的参与尚不清楚。在这里,我们表明,在 hiPSCs 中强烈表达了 dystroglycan(DG)。完全糖基化的 DG 对层粘连蛋白结合具有功能活性,尽管已经表明 LM511-E8 缺乏 DG 结合位点,但该片段确实与 DG 弱结合。我们使用合成肽进一步鉴定了 LM511-E8 中的 DG 结合序列,其中,源自层粘连蛋白卷曲螺旋结构域的 hE8A5-20(人层粘连蛋白α5 2688-2699:KTLPQLLAKLSI)表现出 DG 结合亲和力和细胞黏附活性。缺失和突变研究表明,LLAKLSI 是 hE8A5-20 的活性核心序列,并且 K2696 是 DG 结合的关键氨基酸。我们进一步证明,hiPSCs 黏附在 hE8A5-20 偶联壳聚糖基质上。DG 结合肽的氨基酸序列将有助于设计未分化和分化干细胞培养系统的基底。