Büchler M, Tisljar U, Wolf D H
Institut für Biochemie, Universität Stuttgart, Germany.
Eur J Biochem. 1994 Jan 15;219(1-2):627-39. doi: 10.1111/j.1432-1033.1994.tb19978.x.
The yeast PRD1 gene, encoding proteinase yscD, was cloned by complementation of the prd1-6 point mutation. Sequencing of the gene revealed an open reading frame of 2.136 kb, encoding a protein of 712 amino acids with a calculated molecular mass of 81.8 kDa. The sequence HEGLG beginning at residue 501 represents the HEXXH motif, unique for the zinc metallo-peptidases. Sequence comparison revealed complete identity of the proteinase yscD gene with a recently published open reading frame of yeast chromosome III. We found 34.8% identity between proteinase yscD and rat metalloendopeptidase (thimet oligopeptidase, EP 24.15). Proteinase yscD hydrolyzes several chromogenic and fluorogenic peptides that are substrates of thimet oligopeptidase. N-[1-(RS)-carboxy-3-phenylpropyl]-Ala-Ala-Phe-p-aminobenzoic acid, a compound designed as specific inhibitor of EP 24.15, is also a strong inhibitor of the yeast enzyme. Proteinase yscD is a nonvacuolar enzyme. 3-5% of the total enzyme activity can be detected in the intermembrane space of mitochondria. In a mutant carrying a deletion of the PRD1 gene no proteinase yscD activity is detectable in the cytoplasm and in mitochondria of these cells. They do not show any grossly altered phenotype but exhibit a decrease in the intracellular degradation of peptides. This suggests a function of proteinase yscD in the late stages of protein degradation.
通过对prd1 - 6点突变进行互补,克隆了编码蛋白酶yscD的酵母PRD1基因。该基因测序显示有一个2.136 kb的开放阅读框,编码一个712个氨基酸的蛋白质,计算分子量为81.8 kDa。从第501位残基开始的序列HEGLG代表锌金属肽酶特有的HEXXH基序。序列比较显示蛋白酶yscD基因与最近发表的酵母染色体III的开放阅读框完全相同。我们发现蛋白酶yscD与大鼠金属内肽酶(硫醇寡肽酶,EP 24.15)之间有34.8%的同源性。蛋白酶yscD能水解几种作为硫醇寡肽酶底物的生色和荧光肽。N - [1 - (RS) - 羧基 - 3 - 苯丙基] - 丙氨酸 - 丙氨酸 - 苯丙氨酸 - 对氨基苯甲酸,一种被设计为EP 24.15特异性抑制剂的化合物,也是酵母酶的强抑制剂。蛋白酶yscD是一种非液泡酶。在3 - 5%的总酶活性可以在线粒体的膜间隙中检测到。在携带PRD1基因缺失的突变体中,在这些细胞的细胞质和线粒体中检测不到蛋白酶yscD活性。它们没有表现出任何明显改变的表型,但在细胞内肽的降解方面有所下降。这表明蛋白酶yscD在蛋白质降解的后期发挥作用。