Crystal structure of the in-cell Cry1Aa purified from Bacillus thuringiensis

苏云金杆菌 蛋白质结晶 结晶学 半胱氨酸 化学 再结晶(地质) Cry1Ac公司 晶体结构 二硫键 生物化学 结晶 生物 有机化学 古生物学 遗传学 细菌 转基因作物 转基因 基因
作者
Junko Tanaka,Satoshi Abe,Tohru Hayakawa,Mariko Kojima,Keitaro Yamashita,Kunio Hirata,Takafumi Ueno
出处
期刊:Biochemical and Biophysical Research Communications [Elsevier]
卷期号:685: 149144-149144 被引量:2
标识
DOI:10.1016/j.bbrc.2023.149144
摘要

In-cell protein crystals which spontaneously crystallize in living cells, have recently been analyzed in investigations of their structures and biological functions. The crystals have been challenging to analyze structurally because of their small size. Therefore, the number of in-cell protein crystals in which the native structure has been determined is limited because most of the structures of in-cell crystals have been determined by recrystallization after dissolution. Some proteins have been reported to form intermolecular disulfide bonds in natural protein crystals that stabilize the crystals. Here, we focus on Cry1Aa, a cysteine-rich protein that crystallizes in Bacillus thuringiensis (Bt) and forms disulfide bonds. Previously, the full-length structure of 135 kDa Cry1Ac, which is the same size as Cry1Aa, was determined by recrystallization of dissolved protein from crystals purified from Bt cells. However, the formation of disulfide bonds has not been investigated because it was necessary to replace cysteine residues to prevent aggregation of the soluble protein. In this work, we succeeded in direct X-ray crystallographic analysis using crystals purified from Bt cells and characterized the cross-linked network of disulfide bonds within Cry1Aa crystals.
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