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寡聚化诱导的 Nel 样分子 1(NELL1)蛋白 C 端区域构象变化对于有效介导鼠 MC3T3-E1 细胞黏附和铺展是必要的。

Oligomerization-induced conformational change in the C-terminal region of Nel-like molecule 1 (NELL1) protein is necessary for the efficient mediation of murine MC3T3-E1 cell adhesion and spreading.

机构信息

From the Graduate School of Bioagricultural Sciences, Nagoya University, Nagoya, Japan and.

出版信息

J Biol Chem. 2014 Apr 4;289(14):9781-94. doi: 10.1074/jbc.M113.507020. Epub 2014 Feb 21.

Abstract

NELL1 is a large oligomeric secretory glycoprotein that functions as an osteoinductive factor. NELL1 contains several conserved domains, has structural similarities to thrombospondin 1, and supports osteoblastic cell adhesion through integrins. To define the structural requirements for NELL1-mediated cell adhesion, we prepared a series of recombinant NELL1 proteins (intact, deleted, and cysteine-mutant) from a mammalian expression system and tested their activities. A deletion analysis demonstrated that the C-terminal cysteine-rich region of NELL1 is critical for the cell adhesion activity of NELL1. Reducing agent treatment decreased the cell adhesion activity of full-length NELL1 but not of its C-terminal fragments, suggesting that the intramolecular disulfide bonds within this region are not functionally necessary but that other disulfide linkages in the N-terminal region of NELL1 may be involved in cell adhesion activity. By replacing cysteine residues with serines around the coiled-coil domain of NELL1, which is responsible for oligomerization, we created a mutant NELL1 protein that was unable to form homo-oligomers, and this monomeric mutant showed substantially lower cell adhesion activity than intact NELL1. These results suggest that an oligomerization-induced conformational change in the C-terminal region of NELL1 is important for the efficient mediation of cell adhesion and spreading by NELL1.

摘要

NELL1 是一种大型的寡聚分泌糖蛋白,作为一种成骨诱导因子发挥作用。NELL1 包含几个保守结构域,与血小板反应蛋白 1 具有结构相似性,并通过整合素支持成骨细胞的黏附。为了确定 NELL1 介导细胞黏附的结构要求,我们从哺乳动物表达系统中制备了一系列重组 NELL1 蛋白(完整、缺失和半胱氨酸突变),并测试了它们的活性。缺失分析表明,NELL1 的 C 末端富含半胱氨酸的区域对于 NELL1 的细胞黏附活性至关重要。还原剂处理降低了全长 NELL1 的细胞黏附活性,但不降低其 C 末端片段的活性,这表明该区域内的分子内二硫键在功能上不是必需的,但 NELL1 N 末端区域的其他二硫键可能参与细胞黏附活性。通过用丝氨酸替换 NELL1 卷曲螺旋结构域周围的半胱氨酸残基,该结构域负责寡聚化,我们创建了一种不能形成同源寡聚体的突变型 NELL1 蛋白,这种单体突变型蛋白的细胞黏附活性明显低于完整的 NELL1。这些结果表明,NELL1 C 末端区域的寡聚化诱导的构象变化对于 NELL1 有效介导细胞黏附和铺展是重要的。

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