Terlecky S R, Dice J F
Department of Physiology, Tufts University School of Medicine, Boston, Massachusetts 02111.
J Biol Chem. 1993 Nov 5;268(31):23490-5.
We reported previously that lysosomes derived from human diploid fibroblasts import and degrade polypeptides and that these processes are stimulated by ATP and by the heat shock cognate protein of 73 kDa (hsc73). We now report several new aspects of this in vitro proteolytic pathway. (a) Among four polypeptides tested, this pathway appears to be selective for those containing KFERQ-like peptide motifs. (b) Substrate proteins specifically bind to a protein-containing site on lysosomal membranes. (c) Lysosomes derived from serum-deprived cells are twice as active as those from serum-supplemented cells. (d) A portion of intracellular hsc73 is associated with lysosomes, and the amount of lysosomal hsc73 increases in response to serum withdrawal. Additional characterization of this proteolytic pathway not reported previously shows that intact lysosomes are required, the import process is saturable with an apparent Km of 5 microM for RNase S-peptide, and reducing agents activate this lysosomal import and degradation pathway.
我们之前报道过,源自人二倍体成纤维细胞的溶酶体能够摄取并降解多肽,并且这些过程受到ATP以及73 kDa热休克同源蛋白(hsc73)的刺激。我们现在报道这一体外蛋白水解途径的几个新方面。(a)在测试的四种多肽中,该途径似乎对含有KFERQ样肽基序的多肽具有选择性。(b)底物蛋白特异性结合到溶酶体膜上的一个含蛋白位点。(c)源自血清饥饿细胞的溶酶体活性是源自血清补充细胞的溶酶体活性的两倍。(d)细胞内一部分hsc73与溶酶体相关,并且溶酶体hsc73的量会随着血清去除而增加。此前未报道的对该蛋白水解途径的进一步表征表明,完整的溶酶体是必需的,摄取过程是可饱和的,对核糖核酸酶S肽的表观Km为5 microM,并且还原剂可激活该溶酶体摄取和降解途径。