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首页> 外文期刊>The Journal of biological chemistry >Energy Transducing Roles of Antiporter-like Subunits in Escherichia coli NDH-1 with Main Focus on Subunit NuoN (ND2)
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Energy Transducing Roles of Antiporter-like Subunits in Escherichia coli NDH-1 with Main Focus on Subunit NuoN (ND2)

机译:能量转换抗紫中亚基亚尔NDH-1在大肠杆菌的作用,主要关注亚单位核武器(ND2)

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The proton-translocating NADH-quinone oxidoreductase (complex I/NDH-1) contains a peripheral and a membrane domain. Three antiporter-like subunits in the membrane domain, NuoL, NuoM, and NuoN (ND5, ND4 and ND2, respectively), are structurally similar. We analyzed the role of NuoN in Escherichia coli NDH-1. The lysine residue at position 395 in NuoN (NLys395) is conserved in NuoL (LLys399) but is replaced by glutamic acid (MGlu407) in NuoM. Our mutation study on NLys395 suggests that this residue participates in the proton translocation. Furthermore, we found that MGlu407 is also essential and most likely interacts with conserved LArg175. Glutamic acids, NGlu133, MGlu144, and LGlu144, are corresponding residues. Unlike mutants of MGlu144 and LGlu144, mutation of NGlu133 scarcely affected the energy-transducing activities. However, a double mutant of NGlu133 and nearby KGlu72 showed significant inhibition of these activities. This suggests that NGlu133 bears a functional role similar to LGlu144 and MGlu144 but its mutation can be partially compensated by the nearby carboxyl residue. Conserved prolines located at loops of discontinuous transmembrane helices of NuoL, NuoM, and NuoN were shown to play a similar role in the energy-transducing activity. It seems likely that NuoL, NuoM, and NuoN pump protons by a similar mechanism. Our data also revealed that NLys158 is one of the key interaction points with helix HL in NuoL. A truncation study indicated that the C-terminal amphipathic segments of NTM14 interacts with the Mβ sheet located on the opposite side of helix HL. Taken together, the mechanism of H+ translocation in NDH-1 is discussed.
机译:质子转移的NADH-醌氧化还原酶(复合I / NDH-1)含有外周和膜结构域。在结构上,膜结构域,Nuol,Nuom和Nuon(ND5,ND4和ND2)中的三个抗浆烷状亚基在结构上。我们分析了NUON在大肠杆菌NDH-1中的作用。 Nuon(Nlys395)的395位的赖氨酸残留物在Nuol(Llys399)中保守,但谷氨酸(MgLu407)含量替换为Nuom。我们对NLYS395的突变研究表明,该残余物参与质子易位。此外,我们发现MGLU407也是必不可少的,并且最有可能与保守的巨大175相互作用。谷氨酸,NgLu133,Mglu144和LglU144是相应的残基。与MGLU144和LGLU144的突变体不同,NGLU133的突变几乎影响了能量转换活动。然而,NGLU133和附近的KGLU72的双突变体显示出对这些活性的显着抑制。这表明NGLU133具有类似于LGLU144和MGLU144的功能作用,但其突变可以通过附近的羧基残基部分部分地补偿。在能量 - 转换活动中显示出位于肾上腺肿,Nuom和Nuon的不连续跨膜螺旋环循环的保守脯氨酸在能量 - 转换活动中起着类似的作用。尤其可能是通过类似机制的肾,Nuom和Nuon泵质子。我们的数据还显示NLYS158是NUOL螺旋HL的关键交互点之一。截断研究表明,NTM14的C末端两亲分离区段与位于螺旋H1的相对侧的Mβ片相互作用。讨论了NDH-1中H +易位的机制。

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