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人重组层粘连蛋白-5高效表达系统

Efficient expression system of human recombinant laminin-5.

作者信息

Kariya Yoshinobu, Ishida Kumiko, Tsubota Yoshiaki, Nakashima Yukiko, Hirosaki Tomomi, Ogawa Takashi, Miyazaki Kaoru

机构信息

Division of Cell Biology, Kihara Institute for Biological Research and Graduate School of Integrated Sciences, Yokohama City University, Maioka-cho, Totsuka-ku, Yokohama 244-0813, Japan.

出版信息

J Biochem. 2002 Oct;132(4):607-12. doi: 10.1093/oxfordjournals.jbchem.a003263.

Abstract

Laminin-5, a heterotrimer of laminin alpha3, beta3, and gamma2 chains, is an essential component of various epithelial basement membranes, and it strongly promotes cellular adhesion and motility in vitro. In this study, we established an efficient expression system of human recombinant laminin-5 (rLN5), in which full-length cDNAs encoding the human laminin alpha3, beta3, and gamma2 chains were introduced into the human embryonic kidney cell line HEK293. rLN5 was purified from the conditioned medium of the HEK293 transfectant (LN5-HEK) by immuno-affinity chromatography in a yield of 1 mg protein/liter, about 10 times higher than that of a natural LN5 from human gastric cancer cells. rLN5 was indistinguishable from the natural LN5 in its protein composition and biological activity. In addition, analysis of HEK293 transfectants expressing two exogenous LN5 subunits showed that the alpha3/gamma2 chains and the beta3/gamma2 chains, but not the alpha3/beta3 chains, were secreted as heterodimers, suggesting an important role of the gamma2 chain in the association of the three LN5 subunits. The expression system of rLN5 can be used as an important tool to understand the biological functions of this laminin and may be applicable to future regenerative medicine.

摘要

层粘连蛋白-5是由层粘连蛋白α3、β3和γ2链组成的异源三聚体,是各种上皮基底膜的重要组成部分,并且在体外能强烈促进细胞黏附和运动。在本研究中,我们建立了一种高效表达人重组层粘连蛋白-5(rLN5)的系统,其中编码人层粘连蛋白α3、β3和γ2链的全长cDNA被导入人胚肾细胞系HEK293。通过免疫亲和层析从HEK293转染细胞(LN5-HEK)的条件培养基中纯化rLN5,产量为1毫克蛋白质/升,比从人胃癌细胞中提取的天然LN5高约10倍。rLN5在蛋白质组成和生物学活性方面与天然LN5没有区别。此外,对表达两种外源LN5亚基的HEK293转染细胞的分析表明,α3/γ2链和β3/γ2链,而非α3/β3链,以异源二聚体形式分泌,这表明γ2链在三种LN5亚基的缔合中起重要作用。rLN5的表达系统可作为了解这种层粘连蛋白生物学功能的重要工具,并且可能适用于未来的再生医学。

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