首页> 外文期刊>Journal of experimental zoology, Part A. Comparative experimental biology >Identification and characterization of proteases involved in specific proteolysis of vitellogenin and yolk proteins in salmonids
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Identification and characterization of proteases involved in specific proteolysis of vitellogenin and yolk proteins in salmonids

机译:鉴定和表征鲑鱼卵黄蛋白原和卵黄蛋白特异蛋白水解的蛋白酶

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摘要

A pepstatin A-sensitive enzyme involved in yolk formation was purified from the masu salmon (Oncorhynchus masou) ovary using in vitro generation of yolk proteins from purified vitellogenin to assay enzymatic activity. Purification of the enzyme involved precipitation of ovarian extracts by water and ammonium sulfate followed by five steps of column chromatography. After SDS-PAGE and Western blotting, the purified enzyme appeared as a single similar to 42 kDa band that was immunoreactive to anti-human cathepsin D. The course of proteolytic cleavage of the three major yolk proteins (lipovitellin, beta'-component, and phosvitin) in Fertilized masu salmon and Sakhalin taimen (Hucho perryi) eggs and embryos was visualized by SDS-PAGE and Western blotting using specific antisera. Major yolk protein bands appeared in positions corresponding to 92 kDa, 68 kDa, and 22 kDa (lipovitellin-derived peptides), as well as 17 kDa (beta'-component). During embryo development, the 92 kDa and 22 kDa bands gradually decreased in intensity, becoming undetectable in alevins. The 68 kDa band and a minor 24 kDa band became more intense after the eyed stage. Two additional peptides, corresponding to 40 and 28 kDa, newly appeared in alevins. During embryonic growth, the beta'-component band (17 kDa) persisted and phosvitin appeared to be progressively dephosphorylated. In vitro analysis of lipovitellin proteolysis indicated that the enzyme involved is a Pefabloc SC-sensitive serine protease. These results demonstrate, for the first time, that a cathepsin D-like protease and serine proteases play key roles in yolk formation and degradation, respectively, in salmonid fishes.
机译:使用体外从纯化的卵黄蛋白原产生卵黄蛋白来分析酶活性,从马苏鲑(Oncorhynchus masou)卵巢中纯化涉及卵黄形成的胃蛋白酶抑制素A敏感酶。酶的纯化涉及用水和硫酸铵沉淀卵巢提取物,然后进行五步柱层析。经过SDS-PAGE和Western印迹后,纯化的酶以类似于42 kDa的条带的形式出现,对抗人组织蛋白酶D具有免疫反应性。三种主要蛋黄蛋白(脂蛋白,β'成分和通过特定的抗血清,通过SDS-PAGE和Western blotting观察受精的马苏鲑鱼和Sakhalin taimen(Hucho perryi)卵和胚胎中的phosvitin)。主要的卵黄蛋白带出现在对应于92 kDa,68 kDa和22 kDa(脂蛋白素衍生的肽)以及17 kDa(β'-组分)的位置。在胚胎发育过程中,92 kDa和22 kDa的条带强度逐渐降低,在alevins中变得不可检测。 68 kDa的条带和次要的24 kDa的条带在经过眼睛阶段后变得更加强烈。两个另外的对应于40和28 kDa的肽新出现在alevins中。在胚胎生长过程中,β'组分带(17 kDa)持续存在,并且磷脂酶似乎逐渐被去磷酸化。脂质体蛋白水解的体外分析表明,涉及的酶是Pefabloc SC敏感的丝氨酸蛋白酶。这些结果首次证明,组织蛋白酶D样蛋白酶和丝氨酸蛋白酶分别在鲑鱼的卵黄形成和降解中起关键作用。

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