Sakurai T, Lustig M, Nativ M, Hemperly J J, Schlessinger J, Peles E, Grumet M
Department of Pharmacology, New York University Medical Center 10016, USA.
J Cell Biol. 1997 Feb 24;136(4):907-18. doi: 10.1083/jcb.136.4.907.
Receptor protein tyrosine phosphatase beta (RPTPbeta) is expressed as soluble and receptor forms with common extracellular regions consisting of a carbonic anhydrase domain (C), a fibronectin type III repeat (F), and a unique region called S. We showed previously that a recombinant Fc fusion protein with the C domain (beta C) binds to contactin and supports neuronal adhesion and neurite growth. As a substrate, betaCFS was less effective in supporting cell adhesion, but it was a more effective promoter of neurite outgrowth than betaCF. betaS had no effect by itself, but it potentiated neurite growth when mixed with betaCF. Neurite outgrowth induced by betaCFS was inhibited by antibodies against Nr-CAM and contactin, and these cell adhesion molecules formed a complex that bound betaCFS. NIH-3T3 cells transfected to express betaCFS on their surfaces induced neuronal differentiation in culture. These results suggest that binding of glial RPTPbeta to the contactin/Nr-CAM complex is important for neurite growth and neuronal differentiation.
受体蛋白酪氨酸磷酸酶β(RPTPβ)以可溶性和受体形式表达,其常见的细胞外区域由碳酸酐酶结构域(C)、纤连蛋白III型重复序列(F)和一个名为S的独特区域组成。我们之前表明,一种带有C结构域的重组Fc融合蛋白(βC)可与接触蛋白结合,并支持神经元黏附和神经突生长。作为一种底物,βCFS在支持细胞黏附方面效果较差,但它是比βCF更有效的神经突生长促进剂。βS本身没有作用,但与βCF混合时可增强神经突生长。βCFS诱导的神经突生长受到抗Nr-CAM和接触蛋白抗体的抑制,并且这些细胞黏附分子形成了一个与βCFS结合的复合物。转染后在其表面表达βCFS的NIH-3T3细胞在培养中诱导神经元分化。这些结果表明,胶质细胞RPTPβ与接触蛋白/Nr-CAM复合物的结合对神经突生长和神经元分化很重要。