Inamori Kei-Ichiro, Beedle Aaron M, de Bernabé Daniel Beltrán-Valero, Wright Michael E, Campbell Kevin P
Department of Molecular Physiology and Biophysics, Howard Hughes Medical Institute, and.
Department of Neurology, Howard Hughes Medical Institute, University of Iowa Roy J. and Lucille A. Carver College of Medicine, Iowa City, IA 52242-1101, USA.
Glycobiology. 2016 Dec;26(12):1284-1296. doi: 10.1093/glycob/cww075. Epub 2016 Jul 22.
Both LARGE1 (formerly LARGE) and its paralog LARGE2 are bifunctional glycosyltransferases with xylosy- and glucuronyltransferase activities, and are capable of synthesizing polymers composed of a repeating disaccharide [-3Xylα1,3GlcAβ1-]. Post-translational modification of the O-mannosyl glycan of α-dystroglycan (α-DG) with the polysaccharide is essential for it to act as a receptor for ligands in the extracellular matrix (ECM), and both LARGE paralogs contribute to the modification in vivo. LARGE1 and LARGE2 have different tissue distribution profiles and enzymatic properties; however, the functional difference of the homologs remains to be determined, and α-DG is the only known substrate for the modification by LARGE1 or LARGE2. Here we show that LARGE2 can modify proteoglycans (PGs) with the laminin-binding glycan. We found that overexpression of LARGE2, but not LARGE1, mediates the functional modification on the surface of DG, Pomt1 and Fktn embryonic stem cells. We identified a heparan sulfate-PG glypican-4 as a substrate for the LARGE2-dependent modification by affinity purification and subsequent mass spectrometric analysis. Furthermore, we showed that LARGE2 could modify several additional PGs with the laminin-binding glycan, most likely within the glycosaminoglycan (GAG)-protein linkage region. Our results indicate that LARGE2 can modify PGs with the GAG-like polysaccharide composed of xylose and glucuronic acid to confer laminin binding. Thus, LARGE2 may play a differential role in stabilizing the basement membrane and modifying its functions by augmenting the interactions between laminin globular domain-containing ECM proteins and PGs.
LARGE1(以前称为LARGE)及其旁系同源物LARGE2都是具有木糖基转移酶和葡萄糖醛酸基转移酶活性的双功能糖基转移酶,能够合成由重复二糖[-3Xylα1,3GlcAβ1-]组成的聚合物。用这种多糖对α- dystroglycan(α-DG)的O-甘露糖聚糖进行翻译后修饰,对于其作为细胞外基质(ECM)中配体的受体发挥作用至关重要,并且这两种LARGE旁系同源物都在体内参与这种修饰。LARGE1和LARGE2具有不同的组织分布谱和酶学性质;然而,这两种同源物的功能差异仍有待确定,并且α-DG是已知的唯一可被LARGE1或LARGE2修饰的底物。在此,我们表明LARGE2可以用层粘连蛋白结合聚糖修饰蛋白聚糖(PGs)。我们发现,LARGE2而非LARGE1的过表达介导了对DG、Pomt1和Fktn胚胎干细胞表面的功能修饰。通过亲和纯化及随后的质谱分析,我们鉴定出硫酸乙酰肝素蛋白聚糖glypican-4是LARGE2依赖性修饰的一种底物。此外,我们表明LARGE2可以用层粘连蛋白结合聚糖修饰几种其他的PGs,最有可能是在糖胺聚糖(GAG)-蛋白连接区域内。我们的结果表明,LARGE2可以用由木糖和葡萄糖醛酸组成的类GAG多糖修饰PGs,以赋予其层粘连蛋白结合能力。因此,LARGE2可能在稳定基底膜以及通过增强含层粘连蛋白球状结构域的ECM蛋白与PGs之间的相互作用来改变其功能方面发挥不同的作用。