Department of Applied Genetics and Cell Biology, University of Natural Resources and Life Sciences, Muthgasse 18, A-1190 Vienna, Austria.
Biochem J. 2013 Apr 1;451(1):91-9. doi: 10.1042/BJ20121422.
The M6P (mannose 6-phosphate)/IGF2R (insulin-like growth factor II receptor) interacts with a variety of factors that impinge on tumour invasion and metastasis. It has been shown that expression of wild-type M6P/IGF2R reduces the tumorigenic and invasive properties of receptor-deficient SCC-VII squamous cell carcinoma cells. We have now used mutant forms of M6P/IGF2R to assess the relevance of the different ligand-binding sites of the receptor for its biological activities in this cellular system. The results of the present study demonstrate that M6P/IGF2R does not require a functional binding site for insulin-like growth factor II for inhibition of anchorage-independent growth and matrix invasion by SCC-VII cells. In contrast, the simultaneous mutation of both M6P-binding sites is sufficient to impair all cellular functions of the receptor tested. These findings highlight that the interaction between M6P/IGF2R and M6P-modified ligands is not only important for intracellular accumulation of lysosomal enzymes and formation of dense lysosomes, but is also crucial for the ability of the receptor to suppress SCC-VII growth and invasion. The present study also shows that some of the biological activities of M6P/IGF2R in SCC-VII cells strongly depend on a functional M6P-binding site within domain 3, thus providing further evidence for the non-redundant cellular functions of the individual carbohydrate-binding domains of the receptor.
M6P(甘露糖 6-磷酸)/IGF2R(胰岛素样生长因子 II 受体)与多种因素相互作用,这些因素影响肿瘤的侵袭和转移。已经表明,野生型 M6P/IGF2R 的表达降低了受体缺陷型 SCC-VII 鳞状细胞癌细胞的致瘤性和侵袭性。我们现在使用 M6P/IGF2R 的突变形式来评估受体不同配体结合位点对其在这种细胞系统中的生物学活性的相关性。本研究的结果表明,M6P/IGF2R 不需要胰岛素样生长因子 II 的功能性结合位点来抑制 SCC-VII 细胞的无锚定生长和基质侵袭。相比之下,同时突变两个 M6P 结合位点足以损害受体测试的所有细胞功能。这些发现强调了 M6P/IGF2R 与 M6P 修饰配体之间的相互作用不仅对于溶酶体酶的细胞内积累和致密溶酶体的形成很重要,而且对于受体抑制 SCC-VII 生长和侵袭的能力也至关重要。本研究还表明,M6P/IGF2R 在 SCC-VII 细胞中的一些生物学活性强烈依赖于结构域 3 内的功能性 M6P 结合位点,从而为受体的各个碳水化合物结合结构域的非冗余细胞功能提供了进一步的证据。