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首页> 外文期刊>Journal of Molecular Biology >Solution Structures of the Core Light-harvesting alpha and beta Polypeptides from Rhodospirillum rubrum: Implications for the Pigment-Protein and Protein-Protein Interactions.
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Solution Structures of the Core Light-harvesting alpha and beta Polypeptides from Rhodospirillum rubrum: Implications for the Pigment-Protein and Protein-Protein Interactions.

机译:紫螺螺旋藻的核心光捕获α和β多肽的溶液结构:对色素-蛋白质和蛋白质-蛋白质相互作用的影响。

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We have determined the solution structures of the core light-harvesting (LH1) alpha and beta-polypeptides from wild-type purple photosynthetic bacterium Rhodospirillum rubrum using multidimensional NMR spectroscopy. The two polypeptides form stable alpha helices in organic solution. The structure of alpha-polypeptide consists of a long helix of 32 amino acid residues over the central transmembrane domain and a short helical segment at the N terminus that is followed by a three-residue loop. Pigment-coordinating histidine residue (His29) in the alpha-polypeptide is located near the middle of the central helix. The structure of beta-polypeptide shows a single helix of 32 amino acid residues in the membrane-spanning region with the pigment-coordinating histidine residue (His38) at a position close to the C-terminal end of the helix. Strong hydrogen bonds have been identified for the backbone amide protons over the central helical regions, indicating a rigid property of the two polypeptides. The overall structures of the R.rubrum LH1 alpha and beta-polypeptides are different from those previously reported for the LH1 beta-polypeptide of Rhodobacter sphaeroides, but are very similar to the structures of the corresponding LH2 alpha and beta-polypeptides determined by X-ray crystallography. A model constructed for the structural subunit (B820) of LH1 complex using the solution structures reveals several important features on the interactions between the LH1 alpha and beta-polypeptides. The significance of the N-terminal regions of the two polypeptides for stabilizing both B820 and LH1 complexes, as clarified by many experiments, may be attributed to the interactions between the short N-terminal helix (Trp2-Gln6) of alpha-polypeptide and a GxxxG motif in the beta-polypeptide.
机译:我们已使用多维NMR光谱法确定了野生型紫色光合细菌风红螺旋藻的核心光捕获(LH1)α和β多肽的溶液结构。两种多肽在有机溶液中形成稳定的α螺旋。 α-多肽的结构由位于中央跨膜结构域上的32个氨基酸残基的长螺旋和位于N末端的短螺旋段组成,其后是三个残基的环。 α-多肽中的颜料配位组氨酸残基(His29)位于中央螺旋的中间附近。 β-多肽的结构在跨膜区域中显示了一个32个氨基酸残基的单螺旋,其颜料配位组氨酸残基(His38)位于螺旋的C末端附近。已为中央螺旋区上方的骨架酰胺质子确定了强氢键,表明这两个多肽具有刚性。鲁氏红球菌LH1α和β多肽的整体结构与以前报道的球形红球菌LH1β多肽的整体结构不同,但与通过X-分子测定的相应LH2α和β多肽的结构非常相似射线晶体学。使用溶液结构为LH1复杂结构亚基(B820)构建的模型揭示了LH1α和β多肽之间相互作用的几个重要特征。正如许多实验所阐明的,两种多肽的N末端区域对稳定B820和LH1复合物具有重要意义,这可能归因于α多肽的短N末端螺旋(Trp2-Gln6)与a多肽之间的相互作用。 β多肽中的GxxxG基序。

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