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Mutational Analysis of the Class IIa Bacteriocin Curvacin A and Its Orientation in Target Cell Membranes

机译:IIa类细菌姜黄素A的突变分析及其在靶细胞膜中的定位

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To analyze the orientation in target cell membranes of the pediocin-like bacteriocin (antimicrobial peptide) curvacin A, 55 variants were generated by site-directed mutagenesis and their potencies against four different target cells determined. The result suggest that the somewhat hydrophilic short central helix (residues 19 to 24), along with the N-terminal β-sheet-like structure (residues 1 to 16), inserts in the interface region of the target cell membrane, with Ala22 close to the hydrophobic core of the membrane. The following hinge region, with Gly28 as an important residue, may then form a turn wherein Gly28 becomes positioned near the border between the interface and the hydrophobic regions, thus permitting the longer and more-hydrophobic C-terminal helix (residues 29 to 41) to insert into the hydrophobic core of the membrane. This helix contains three glycine residues (G33, G37, and G40) that form a putative helix-helix-interacting GxxxGxxG motif. The replacement of any of these glycines with a larger residue was very detrimental, suggesting their possible involvement in helix-helix interactions with a membrane-embedded receptor protein.
机译:为了分析pediocin样细菌素(抗菌肽)curvacin A在靶细胞膜中的定向,通过定点诱变产生了55个变体,并确定了它们对四种不同靶细胞的效力。结果表明,略带亲水性的短中心螺旋(残基19至24)以及N端β-折叠样结构(残基1至16)插入目标细胞膜的界面区域,而Ala22紧密膜的疏水核心。随后,以Gly28为重要残基的铰链区可能形成一个转角,其中Gly28变得位于界面和疏水区之间的边界附近,因此允许更长且更疏水的C末端螺旋(残基29至41)插入膜的疏水核心。该螺旋包含三个甘氨酸残基(G33,G37和G40),形成一个假定的螺旋-螺旋相互作用GxxxGxxG基序。用较大的残基替换这些甘氨酸中的任何一个都是非常有害的,表明它们可能参与与膜嵌入受体蛋白的螺旋-螺旋相互作用。

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