Fourie Anne M, Coles Fawn, Moreno Veronica, Karlsson Lars
Johnson & Johnson Pharmaceutical Research and Development, San Diego, California 92121, USA.
J Biol Chem. 2003 Aug 15;278(33):30469-77. doi: 10.1074/jbc.M213157200. Epub 2003 May 30.
The ADAM family of disintegrin metalloproteases plays important roles in "ectodomain shedding," the process by which biologically active, soluble forms of cytokines, growth factors, and their receptors are released from membrane-bound precursors. Whereas ADAM8, ADAM15, and MDC-L (ADAM28) are expressed in specific cell types and tissues, their in vivo functions and substrates are not known. By screening a library of synthetic peptides as potential substrates, we show that soluble recombinant forms of these enzymes have similar proteolytic substrate specificity, clearly distinct from that of ADAM17 (TNFalpha-converting enzyme). A number of tumor necrosis factor (TNF) family proteins and CD23 were screened as potential substrates for ectodomain cleavage. We found that ADAM8, ADAM15, and MDC-L, but not ADAM17, catalyzed ectodomain shedding of CD23, the low affinity IgE receptor. ADAM8-dependent, soluble CD23 release required proteolytically active ADAM8, and a physical association of ADAM8 was observed with the membrane-bound form of CD23. The ADAM8-dependent release of sCD23 and the endogenous release from B cell lines could be similarly inhibited by a hydroxamic acid, metalloprotease inhibitor compound. We conclude that ADAM8 could contribute to ectodomain shedding of CD23 and may thus be a potential target for therapeutic intervention in allergy and inflammation.
解整合素金属蛋白酶ADAM家族在“胞外域脱落”过程中发挥重要作用,即细胞因子、生长因子及其受体的生物活性可溶性形式从膜结合前体中释放出来的过程。虽然ADAM8、ADAM15和MDC-L(ADAM28)在特定细胞类型和组织中表达,但其体内功能和底物尚不清楚。通过筛选作为潜在底物的合成肽文库,我们发现这些酶的可溶性重组形式具有相似的蛋白水解底物特异性,明显不同于ADAM17(肿瘤坏死因子α转换酶)。我们筛选了多种肿瘤坏死因子(TNF)家族蛋白和CD23作为胞外域裂解的潜在底物。我们发现,ADAM8、ADAM15和MDC-L而非ADAM17催化了低亲和力IgE受体CD23的胞外域脱落。ADAM8依赖的可溶性CD23释放需要具有蛋白水解活性的ADAM8,并且观察到ADAM8与膜结合形式的CD23存在物理关联。一种异羟肟酸金属蛋白酶抑制剂化合物可类似地抑制sCD23的ADAM8依赖释放和B细胞系的内源性释放。我们得出结论,ADAM8可能有助于CD23的胞外域脱落,因此可能是过敏和炎症治疗干预的潜在靶点。