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首页> 外文期刊>Nucleic acids research >The domain structure of Helicobacter pylori DnaB helicase: the N-terminal domain can be dispensable for helicase activity whereas the extreme C-terminal region is essential for its function
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The domain structure of Helicobacter pylori DnaB helicase: the N-terminal domain can be dispensable for helicase activity whereas the extreme C-terminal region is essential for its function

机译:幽门螺杆菌DnaB解旋酶的结构域结构:N端结构域可用于解旋酶活性,而极端的C端区域对其功能至关重要

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Hexameric DnaB type replicative helicases are essential for DNA strand unwinding along with the direction of replication fork movement. These helicases in general contain an amino terminal domain and a carboxy terminal domain separated by a linker region. Due to the lack of crystal structure of a full-length DnaB like helicase, the domain structure and function of these types of helicases are not clear. We have reported recently that Helicobacter pylori DnaB helicase is a replicative helicase in vitro and it can bypass Escherichia coli DnaC activity in vivo. Using biochemical, biophysical and genetic complementation assays, here we show that though the N-terminal region of HpDnaB is required for conformational changes between C6 and C3 rotational symmetry, it is not essential for in vitro helicase activity and in vivo function of the protein. Instead, an extreme carboxy terminal region and an adjacent unique 34 amino acid insertion region were found to be essential for HpDnaB activity suggesting that these regions are important for proper folding and oligomerization of this protein. These results confer great potential in understanding the domain structures of DnaB type helicases and their related function.
机译:六聚DnaB型复制解旋酶对于DNA链的展开以及复制叉运动的方向至关重要。这些解旋酶通常含有被接头区域隔开的氨基末端结构域和羧基末端结构域。由于缺乏全长DnaB像解旋酶的晶体结构,这些类型解旋酶的域结构和功能尚不清楚。最近,我们报道了幽门螺杆菌DnaB解旋酶在体外是一种复制性解旋酶,它可以绕过体内的大肠杆菌DnaC活性。使用生化,生物物理和遗传互补分析,此处我们显示,尽管HpDnaB的N端区域对于C6和C3旋转对称性之间的构象变化是必需的,但对于蛋白质的体外解旋酶活性和体内功能并不是必需的。取而代之的是,发现一个极端的羧基末端区域和一个相邻的独特的34个氨基酸插入区域对于HpDnaB活性至关重要,这表明这些区域对于该蛋白的正确折叠和寡聚化很重要。这些结果赋予理解DnaB型解旋酶的域结构及其相关功能的巨大潜力。

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