Nakashima Yukiko, Kariya Yoshinobu, Yasuda Chie, Miyazaki Kaoru
Division of Cell Biology, Kihara Institute for Biological Research, Yokohama City University, 641-12 Maioka-cho, Totsuka-ku, Yokohama 244-0813.
J Biochem. 2005 Nov;138(5):539-52. doi: 10.1093/jb/mvi153.
The basement membrane protein laminin-5 (Lm5), a heterotrimer of alpha3 (or alpha3A), beta3, and gamma2 chains, regulates cellular adhesion and motility. Here we examined the proteolysis and biological function of the laminin beta3 chain. First, we found that the beta3 chain of Lm5 is cleaved at its N-terminal, short arm by an endogenous proteinase(s) in normal human keratinocytes and some other cell lines. To examine the effect of beta3 chain cleavage, we expressed a wild-type Lm5 and two Lm5 mutants with partially deleted beta3 chains in HEK293 cells. Experiments with the purified Lm5 forms demonstrated that the deletion of the beta3 short arm or its N-terminal domain LN decreases the cell adhesion activity of Lm5, but does not significantly affect the motility activity. A recombinant beta3 short arm protein enhanced integrin-mediated cell adhesion to Lm5 by binding to an unidentified cell receptor. It was also found that the laminin EGF-like domain of the beta3 short arm is a binding site for type VII collagen. These results suggest that the beta3 short arm is involved not only in the matrix assembly of Lm5, but also in its cell adhesion activity. The proteolytic cleavage of the beta3 chain may modulate these functions of Lm5 in vivo.
基底膜蛋白层粘连蛋白-5(Lm5)是由α3(或α3A)、β3和γ2链组成的异源三聚体,可调节细胞黏附和运动。在此,我们研究了层粘连蛋白β3链的蛋白水解作用及其生物学功能。首先,我们发现Lm5的β3链在正常人角质形成细胞和其他一些细胞系中被一种内源性蛋白酶在其N端短臂处切割。为了研究β3链切割的影响,我们在HEK293细胞中表达了野生型Lm5和两个β3链部分缺失的Lm5突变体。对纯化的Lm5形式进行的实验表明,β3短臂或其N端结构域LN的缺失会降低Lm5的细胞黏附活性,但对运动活性没有显著影响。一种重组β3短臂蛋白通过与一种未鉴定的细胞受体结合,增强了整合素介导的细胞对Lm5的黏附。还发现β3短臂的层粘连蛋白表皮生长因子样结构域是VII型胶原的结合位点。这些结果表明,β3短臂不仅参与Lm5的基质组装,还参与其细胞黏附活性。β3链的蛋白水解切割可能在体内调节Lm5的这些功能。