首页> 美国卫生研究院文献>Biochemical Journal >Developmental patterns of free and protein-bound biotin during maturation and germination of seeds of Pisum sativum: characterization of a novel seed-specific biotinylated protein.
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Developmental patterns of free and protein-bound biotin during maturation and germination of seeds of Pisum sativum: characterization of a novel seed-specific biotinylated protein.

机译:豌豆(Pisum sativum)种子成熟和萌发过程中游离和结合蛋白质的生物素的发育模式:一种新型种子特异性生物素化蛋白质的表征。

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摘要

Mature dry pea seeds contain three major biotinylated proteins. Two of these of subunit molecular mass about 75 kDa and 200 kDa are associated with 3-methylcrotonyl-CoA carboxylase (EC 6.4.1.4) and acetyl-CoA carboxylase activities (EC 6.4.1.2) respectively. The third does not exhibit any of the biotin-dependent carboxylase activities found in higher organisms and represents the major part of the total protein-bound biotin in the seeds. This novel protein has been purified from a whole pea seed extract. Because in SDS/polyacrylamide gels the protein migrates with an apparent molecular mass of about 65 kDa, it is referred to as SBP65, for 65 kDa seed biotinylated protein. The molecular mass of native SBP65 is greater than 400 kDa, suggesting that the native protein assumes a polymeric structure, resulting from the association of six to eight identical subunits. The results of CNBr cleavage experiments suggest that biotin is covalently bound to the protein. The stoichiometry is 1 mol of biotin per 1 mol of 65 kDa polypeptide. The temporal and spatial pattern of expression of SBP65 is described. SBP65 is specifically expressed in the seeds, being absent from leaf, root, stem, pod and flower tissues of pea plants. The level of SBP65 increases dramatically during seed development. The protein is not detectable in very young seeds. Its accumulation pattern parallels that for storage proteins, being maximally expressed in the mature dry seeds. SBP65 disappears at a very high rate during seed germination. The level of free biotin has also been evaluated for various organs of pea plants. In all proliferating tissues examined (young developing seeds, leaf, root, stem, pod and flower tissues), free biotin is in excess of protein-bound biotin. Only in the mature dry seeds is protein-bound biotin (i.e. that bound to SBP65) in excess of free biotin. These temporal expression patterns, and the strict organ specificity for expression of SBP65, are discussed with regard to the possibility that in plants, as in mammals, biotin plays a specialized role in cell growth and differentiation.
机译:成熟的豌豆种子含有三种主要的生物素化蛋白质。这些亚基分子量中的约75 kDa和200 kDa中的两个分别与3-甲基巴豆酰基-CoA羧化酶活性(EC 6.4.1.4)和乙酰基-CoA羧化酶活性(EC 6.4.1.2)相关。第三种没有表现出在高等生物中发现的任何生物素依赖性羧化酶活性,并且代表了种子中总蛋白质结合生物素的主要部分。这种新型蛋白质已从整个豌豆种子提取物中纯化出来。因为在SDS /聚丙烯酰胺凝胶中,蛋白质以约65 kDa的表观分子量迁移,所以对于65 kDa种子生物素化的蛋白质,它被称为SBP65。天然SBP65的分子量大于400 kDa,这表明天然蛋白质具有聚合结构,这是由六个至八个相同的亚基缔合而成的。 CNBr切割实验的结果表明生物素与蛋白质共价结合。化学计量为每1摩尔65 kDa多肽1摩尔生物素。描述了SBP65表达的时间和空间模式。 SBP65在种子中特异性表达,豌豆植物的叶子,根,茎,荚和花组织中不存在。在种子发育过程中,SBP65的水平急剧增加。在非常年轻的种子中无法检测到该蛋白质。它的积累方式与存储蛋白质的方式相似,可以在成熟的干燥种子中最大程度地表达。 SBP65在种子发芽过程中以很高的速度消失。还对豌豆植物的各个器官的游离生物素水平进行了评估。在所有接受检查的增生组织中(年轻的种子,叶,根,茎,豆荚和花组织),游离生物素均超过结合蛋白质的生物素。仅在成熟的干燥种子中,结合蛋白的生物素(即与SBP65结合的蛋白)才超过游离生物素。讨论了这些时间表达模式以及对SBP65表达的严格器官特异性,并探讨了在植物中(如在哺乳动物中)生物素在细胞生长和分化中起特殊作用的可能性。

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