关节动物特有的Tramtrack组BTB蛋白域使用以前未知的接口形成六合体
Artem N Bonchuk1,2, Konstantin I Balagurov1, Rozbeh Baradaran3
1Department of the Control of Genetic Processes, Institute of Gene Biology Russian Academy of Sciences, Moscow, Russian Federation.
eLife
|September 2, 2024
概括
在关节动物中发现的Tramtrack (TTK) 类型的BTB域,形成六合体. 在昆虫中,这些TTK型BTB域显示了广泛的异构结合,使它们与其他BTB域区分开来.
科学领域:
- 分子生物学分子生物学
- 结构生物学 结构生物学
- 基因组学就是基因组学.
背景情况:
- BTB (bric-a-brack,Tramtrack和广泛复杂) 域是元动物中的蛋白质-蛋白质相互作用模块.
- 已知一种特定的亚型,即Tramtrack组 (TTK) BTB域,具有多元化,并且在转录因子中发现.
研究的目的:
- 阐明TTK型BTB域的结构和组装.
- 研究TTK型BTB域的进化分布和功能关联.
主要方法:
- 单粒子冷电子显微镜 (cryo-EM) 用于确定六边形结构.
- 进行比较基因组学,以评估跨物种的进化分布.
- 酵母二杂交分析以研究蛋白质-蛋白质相互作用.
主要成果:
- TTK 类型的 BTB 域通过一个新的接口组装成一个六边形结构.
- 这些域只在关节动物中发现,在昆虫中显著扩展.
- 酵母两杂交试验揭示了广泛的异构体关联潜力,表明二聚体-二聚体相互作用.
结论:
- TTK类型的BTB域代表了一个结构独特的,六合体形成的蛋白质模块.
- 它们在昆虫中的谱系特异性扩张凸显了它们在关节动物转录因子中的重要性.
- 广泛的异构体关联能力表明,它在关节动物基因调节中起着独特的功能作用.
关键词:
化电磁波是一种冷电磁波.D. melanogaster. D. melanogaster. D. melanogaster. D. melanogaster. D. melanogaster. D. melanogaster. D. melanogaster. D. melanogaster. D. melanogaster. D. melanogaster. D. melanogaster. D. melanogaster. D. melanogaster. D. melanogaster. D. melanogaster. D. melanogaster. melanogaster. D. melanogaster. melanogaster. D. melanogaster. D. melanogaster. melanogaster. D.萨克斯 (SAXS) 的时间.分子生物物理学分子生物物理学结构生物学结构生物学转录因子是一种转录因子.相关概念视频
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