Cuervo A M, Terlecky S R, Dice J F, Knecht E
Instituto de Investigaciones Citológicas, Fundación Valenciana de Investigaciones Biomédicas, Valencia, Spain.
J Biol Chem. 1994 Oct 21;269(42):26374-80.
Ribonuclease A (RNase A) and glyceraldehyde-3-phosphate dehydrogenase (GAPDH) are selectively taken up and degraded by isolated rat liver lysosomes by very similar processes. The uptake and degradation of both of these proteins are stimulated by the heat shock cognate protein of 73 kDa and ATP/Mg2+. Both binding and uptake of RNase A and GAPDH by lysosomes are saturable, and uptake of RNase A and GAPDH requires a protease-sensitive component within the lysosomal membrane. GAPDH competes for binding and uptake of RNase A by lysosomes and vice versa while another protein, ovalbumin, does not compete. RNase S-peptide (amino acids 1-20 of RNase A) also competes for RNase A binding and uptake by lysosomes, while RNase S-protein (amino acids 21-124 of RNase A) does not compete. The uptake of RNase A by lysosomes appears to involve an intermediate step in which approximately 2 kDa of the polypeptide's COOH terminus remains outside lysosomes while the remainder is inside the lysosomal lumen.
核糖核酸酶A(RNase A)和甘油醛-3-磷酸脱氢酶(GAPDH)可通过非常相似的过程被分离的大鼠肝脏溶酶体选择性摄取并降解。这两种蛋白质的摄取和降解均受到73 kDa热休克同源蛋白以及ATP/Mg2+的刺激。溶酶体对RNase A和GAPDH的结合与摄取均具有饱和性,且RNase A和GAPDH的摄取需要溶酶体膜内一种蛋白酶敏感成分。GAPDH可竞争溶酶体对RNase A的结合与摄取,反之亦然,而另一种蛋白质卵清蛋白则不参与竞争。RNase S肽(RNase A的1-20位氨基酸)也可竞争溶酶体对RNase A的结合与摄取,而RNase S蛋白(RNase A的21-124位氨基酸)则不参与竞争。溶酶体对RNase A的摄取似乎涉及一个中间步骤,即多肽COOH末端约2 kDa的部分仍留在溶酶体外,而其余部分则位于溶酶体腔内。