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猪蛔虫肌肉微粒体的生化研究。I. 蛔虫微粒体的生化特性及电子传递

Biochemical studies on the muscle microsomes of Ascaris lumbricoides var. suum. I. Biochemical characterization and electron transport of Ascaris microsomes.

作者信息

Matuda S

出版信息

J Biochem. 1979 Feb;85(2):343-50. doi: 10.1093/oxfordjournals.jbchem.a132339.

DOI:10.1093/oxfordjournals.jbchem.a132339
PMID:422535
Abstract

Two subcellular fraction, P-1 and P-2, were isolated by differential centrifugation from 0.25 M sucrose muscle homogenates of the parasitic roundworm, Ascaris lumbricoides suum. Morphological studies indicated that P-1 fraction consisted of intact mitochondria, whereas P-2 fraction consisted almost exclusively of vesicular components. The difference spectrum of Ascaris microsomes showed a characteristic b-type cytochrome spectrum with three distinct absorption peaks at 560, 525, and 424 nm. However, the alpha-peak at 560 nm was asymmetric with a shoulder at 555 nm. This microsomal b-type cytochrome was reduced by NADH, which was inhibited by rotenone and HgCl2. The reduced b-type cytochrome was easily reoxidized by shaking. NADH-oxidase activity observed in Ascaris microsomes was inhibited by rotenone, but not by KCN, NaN3, and antimycin A. On the other hand, NADH-cytochrome c and NADH-neotetrazolium (NT) reductase activities in Ascaris microsomes were not inhibited by antimycin A and rotenone, but were inhibited by HgCl2. Further observations indicated that neither HgCl2 nor rotenone inhibited Ascaris microsomal NADH-ferricyanide (FC) reductase activity, but rabbit antibody prepared against the purified NADH-FC reductase inhibited the NADH-cytochrome c reductase activity, the reduction of b-type cytochrome and the NADH-oxidase activity, as well as microsomal NADH-FC reductase activity.

摘要

通过差速离心法,从寄生蛔虫猪蛔虫(Ascaris lumbricoides suum)的0.25M蔗糖肌肉匀浆中分离出两种亚细胞组分,即P-1和P-2。形态学研究表明,P-1组分由完整的线粒体组成,而P-2组分几乎完全由囊泡成分组成。蛔虫微粒体的差示光谱显示出特征性的b型细胞色素光谱,在560、525和424nm处有三个明显的吸收峰。然而,560nm处的α峰不对称,在555nm处有一个肩峰。这种微粒体b型细胞色素可被NADH还原,该还原反应受鱼藤酮和HgCl2抑制。还原后的b型细胞色素经振荡很容易再氧化。在蛔虫微粒体中观察到的NADH氧化酶活性受鱼藤酮抑制,但不受KCN、NaN3和抗霉素A抑制。另一方面,蛔虫微粒体中的NADH-细胞色素c和NADH-新四氮唑(NT)还原酶活性不受抗霉素A和鱼藤酮抑制,但受HgCl2抑制。进一步的观察表明,HgCl2和鱼藤酮均不抑制蛔虫微粒体NADH-铁氰化物(FC)还原酶活性,但针对纯化的NADH-FC还原酶制备的兔抗体会抑制NADH-细胞色素c还原酶活性、b型细胞色素的还原以及NADH氧化酶活性,以及微粒体NADH-FC还原酶活性。

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