Rosenberg H F, Ackerman S J, Tenen D G
Laboratory of Host Defenses, National Institutes of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, Maryland 20892.
J Biol Chem. 1993 Feb 25;268(6):4499-503.
Although ribonucleases fold into correct tertiary conformation in vitro guided solely by information contained in the primary amino acid sequence (Sela, M., White, F. H., and Anfinsen, C. B. (1957) Science 124, 691-693), it is not clear whether folding of these proteins proceeds unassisted in a complex intracellular environment. We describe here the specific and high affinity binding of groEL, the prokaryotic homolog of the heat shock protein 60 family of molecular chaperones, to recombinant eosinophil cationic protein and eosinophil-derived neurotoxin, two members of the human ribonuclease gene family. We have determined that groEL binds to a unique peptide sequence near the amino terminus of nascent eosinophil cationic protein that includes the first of eight cysteine residues. This binding site functions independently and can confer groEL binding activity on an unrelated carrier protein. GroEL dissociates from the binding site upon addition of ATP and Mg2+; no other cations or cofactors are necessary. These findings suggest the possibility that interaction with a groEL-like molecular chaperone may be a requirement for correct folding and/or translocation of eukaryotic ribonucleases in vivo.
尽管核糖核酸酶仅在一级氨基酸序列所含信息的引导下就能在体外折叠成正确的三级构象(塞拉,M.,怀特,F.H.,以及安芬森,C.B.(1957年)《科学》124卷,691 - 693页),但尚不清楚这些蛋白质在复杂的细胞内环境中是否能在无辅助的情况下进行折叠。我们在此描述了分子伴侣热休克蛋白60家族的原核同源物groEL与重组嗜酸性粒细胞阳离子蛋白和嗜酸性粒细胞衍生神经毒素(人类核糖核酸酶基因家族的两个成员)的特异性高亲和力结合。我们已确定groEL与新生嗜酸性粒细胞阳离子蛋白氨基末端附近的一个独特肽序列结合,该序列包含八个半胱氨酸残基中的第一个。这个结合位点独立发挥作用,并且能赋予无关载体蛋白groEL结合活性。加入ATP和Mg2 + 后,groEL从结合位点解离;不需要其他阳离子或辅助因子。这些发现提示,与groEL样分子伴侣相互作用可能是真核核糖核酸酶在体内正确折叠和/或转运的必要条件。