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来自豌豆种子的主要生物素化蛋白在一个新位点共价结合生物素。

The major biotinyl protein from Pisum sativum seeds covalently binds biotin at a novel site.

作者信息

Duval M, DeRose R T, Job C, Faucher D, Douce R, Job D

机构信息

Laboratoire Mixte CNRS/Rhône-Poulenc (UM41 associée au Centre National de la Recherche Scientifique), Lyon, France.

出版信息

Plant Mol Biol. 1994 Oct;26(1):265-73. doi: 10.1007/BF00039537.

Abstract

Seeds of Pisum sativum contain a biotinyl polypeptide called SBP65 that behaves as a putative sink for the free vitamin, representing more than 90% of the total protein-bound biotin in mature seeds. A cDNA encoding SBP65 was cloned and sequenced. The deduced primary structure of the protein was confirmed by protein sequencing. Peptide sequencing also indicated binding of the biotin to lysine 103. The biotinylation domain of SBP65 differs markedly from that of presently known biotin enzymes. Molecular analysis of the protein sequence reveals an extremely hydrophilic protein containing several repeated motifs. These properties, as well as the temporal and spatial patterns of expression of this protein, suggest that SBP65 belongs to the LEA (late embryogenesis-abundant) group of proteins.

摘要

豌豆种子含有一种名为SBP65的生物素化多肽,它作为游离维生素的假定储存库,占成熟种子中与蛋白质结合的生物素总量的90%以上。克隆并测序了编码SBP65的cDNA。蛋白质测序证实了该蛋白质推导的一级结构。肽测序还表明生物素与赖氨酸103结合。SBP65的生物素化结构域与目前已知的生物素酶的结构域明显不同。对该蛋白质序列的分子分析揭示了一种含有几个重复基序的极具亲水性的蛋白质。这些特性以及该蛋白质表达的时空模式表明,SBP65属于胚胎发育晚期丰富(LEA)蛋白家族。

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