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首页> 外文期刊>The Journal of Biochemistry >Purification and molecular cloning of aspartic proteinases from the stomach of adult Japanese fire belly newts, Cynops pyrrhogaster
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Purification and molecular cloning of aspartic proteinases from the stomach of adult Japanese fire belly newts, Cynops pyrrhogaster

机译:成年日本火肚new,Cynops pyrrhogaster胃中天冬氨酸蛋白酶的纯化和分子克隆

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摘要

Six aspartic proteinase precursors, a pro-cathepsin E (ProCatE) and five pepsinogens (Pgs), were purified from the stomach of adult newts (Cynops pyrrhogaster). On sodium dodecylsulfate-polyacrylamide gel electrophoresis, the molecular weights of the Pgs and active enzymes were 37-38 kDa and 31-34 kDa, respectively. The purified ProCatE was a dimer whose subunits were connected by a disulphide bond. cDNA cloning by polymerase chain reaction and subsequent phylogenetic analysis revealed that three of the purified Pgs were classified as PgA and the remaining two were classified as PgBC belonging to C-type Pg. Our results suggest that PgBC is one of the major constituents of acid protease in the urodele stomach. We hypothesize that PgBC is an amphibian-specific Pg that diverged during its evolutional lineage. PgBC was purified and characterized for the first time. The purified urodele pepsin A was completely inhibited by equal molar units of pepstatin A. Conversely, the urodele pepsin BC had low sensitivity to pepstatin A. In acidic condition, the activation rates of newt pepsin A and BC were similar to those of mammalian pepsin A and C1, respectively. Our results suggest that the enzymo-logical characters that distinguish A-and C-type pepsins appear to be conserved in mammals and amphibians.
机译:从成年new(Cynops pyrrhogaster)的胃中纯化了六种天冬氨酸蛋白酶前体,即前蛋白酶E(ProCatE)和五种胃蛋白酶原(Pgs)。在十二烷基硫酸钠-聚丙烯酰胺凝胶电泳上,Pgs和活性酶的分子量分别为37-38 kDa和31-34 kDa。纯化的ProCatE是二聚体,其亚基通过二硫键连接。通过聚合酶链反应的cDNA克隆和随后的系统发育分析表明,纯化的Pg中的三个被分类为PgA,其余两个被分类为属于C型Pg的PgBC。我们的结果表明,PgBC是urodele胃中酸性蛋白酶的主要成分之一。我们假设PgBC是两栖动物特定的Pg,在其进化世系中发散。 PgBC首次纯化和鉴定。纯化的尿素胃蛋白酶A被等摩尔单位的胃蛋白酶抑制素A完全抑制。相反,尿素胃蛋白酶BC对胃蛋白酶抑制素A的敏感性较低。在酸性条件下,new pepsin A和BC的活化率与哺乳动物胃蛋白酶A相似。和C1分别。我们的结果表明,区分A型和C型胃蛋白酶的酶学特征在哺乳动物和两栖动物中似乎是保守的。

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