大豆成熟糖蛋白 A1bB2 的纯化、结晶和初步晶体学分析。

Krisna Prak, Bunzo Mikami, Takafumi Itoh, Takako Fukuda, Nobuyuki Maruyama, Shigeru Utsumi
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摘要

甘氨肽是大豆种子中最丰富的贮藏蛋白分子之一,由五个亚基(A1aB1b、A1bB2、A2B1a、A3B4 和 A5A4B3)组成。A1bB2 是从一种突变的大豆栽培品种中纯化出来的,这种大豆栽培品种含有仅由 A5A4B3 和 A1bB2 组成的甘氨酸。在 281 K 的温度下,该蛋白在第一种结晶条件 [0.1 M咪唑 pH 8.0、0.2 M氯化镁、35%(v/v) MPD]、第二种结晶条件 [0.1 M柠檬酸钠 pH 5.6、0.2 M醋酸铵、30%(v/v) MPD] 和第三种结晶条件(0.1 M磷酸盐-柠檬酸钠 pH 4.2、2.0 M硫酸铵)下分别形成了六角形、矩形和棒形晶体。从三种不同形状的晶体中收集到了分辨率分别为 1.85、1.85 和 2.5 Å 的 X 射线衍射数据。晶体分别属于空间群 P6₃22、P2₁ 和 P1,单位晶胞参数分别为 a = b = 143.60、c = 84.54 Å、a = 114.54、b = 105.82、c = 116.67 Å、β = 94.99° 和 a = 94.45、b = 94.96、c = 100.66 Å、α = 107.02、β = 108.44、γ = 110.71°。据估计,A1bB2 的一个、六个和六个亚基分别存在于相应的不对称单元中。目前正在确定 A1bB2 六聚体的三维结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Purification, crystallization and preliminary crystallographic analysis of soybean mature glycinin A1bB2.

Glycinin is one of the most abundant storage-protein molecules in soybean seeds and is composed of five subunits (A1aB1b, A1bB2, A2B1a, A3B4 and A5A4B3). A1bB2 was purified from a mutant soybean cultivar containing glycinin composed of only A5A4B3 and A1bB2. At 281 K the protein formed hexagonal, rectangular and rod-shaped crystals in the first [0.1 M imidazole pH 8.0, 0.2 M MgCl₂, 35%(v/v) MPD], second [0.1 M sodium citrate pH 5.6, 0.2 M ammonium acetate, 30%(v/v) MPD] and third (0.1 M phosphate-citrate pH 4.2, 2.0 M ammonium sulfate) crystallization conditions, respectively. X-ray diffraction data were collected to resolutions of 1.85, 1.85 and 2.5 Å from crystals of the three different shapes. The crystals belonged to space groups P6₃22, P2₁ and P1, with unit-cell parameters a = b = 143.60, c = 84.54 Å, a = 114.54, b = 105.82, c = 116.67 Å, β = 94.99° and a = 94.45, b = 94.96, c = 100.66 Å, α = 107.02, β = 108.44, γ = 110.71°, respectively. One, six and six subunits of A1bB2 were estimated to be present in the respective asymmetric units. The three-dimensional structure of the A1bB2 hexamer is currently being determined.

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期刊介绍: Acta Crystallographica Section F is a rapid structural biology communications journal. Articles on any aspect of structural biology, including structures determined using high-throughput methods or from iterative studies such as those used in the pharmaceutical industry, are welcomed by the journal. The journal offers the option of open access, and all communications benefit from unlimited free use of colour illustrations and no page charges. Authors are encouraged to submit multimedia content for publication with their articles. Acta Cryst. F has a dedicated online tool called publBio that is designed to make the preparation and submission of articles easier for authors.
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