首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Spectroscopic analysis of the intrinsic chromophores within small multidrug resistance protein SugE.
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Spectroscopic analysis of the intrinsic chromophores within small multidrug resistance protein SugE.

机译:小型多药耐药蛋白SugE中固有发色团的光谱分析。

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摘要

Small multidrug resistance (SMR) protein family member, SugE, is an integral inner membrane protein that confers host resistance to antiseptic quaternary cation compounds (QCC). SugE studies generally focus on its resistance to limited substrates in comparison to SMR protein EmrE. This study examines the conformational characteristics of SugE protein in two detergents, sodium dodecyl sulphate (SDS) and dodecyl maltoside (DDM), commonly used to study SMR proteins. The influence of cetylpyridinium (CTP) and cetrimide (CET) using SugE aromatic residues (4W, 2Y, 1F) as intrinsic spectroscopic probes was also determined. Organically extracted detergent solubilized Escherichia coli SugE protein was examined by SDS-Tricine PAGE and various spectroscopic techniques. SDS-Tricine PAGE analysis of SugE in either detergent demonstrates the protein predominates as a monomer but also dimerizes in SDS. Far-UV region circular dichroism (CD) analysis determined that the overall alpha-helix content SugE in SDS and DDM was almost identical and unaltered by QCC. Near-UV region CD, fluorescence, and second-derivative ultraviolet absorption (SDUV) indicated that only DDM-SugE promoted hydrophobic environments for its Trp and Tyr residues that were perturbed by QCC addition. This study identified that only the tertiary structure of SugE protein in DDM is altered by QCC.
机译:小型多药抗性(SMR)蛋白家族成员SugE是必不可少的内膜蛋白,可赋予宿主对抗菌四价阳离子化合物(QCC)的抗性。与SMR蛋白EmrE相比,SugE研究通常集中在其对有限底物的抗性上。这项研究检查了通常用于研究SMR蛋白的两种去污剂十二烷基硫酸钠(SDS)和十二烷基麦芽糖苷(DDM)中SugE蛋白的构象特征。还确定了使用SugE芳香族残基(4W,2Y,1F)作为内在光谱探针的十六烷基吡啶(CTP)和西曲肽(CET)的影响。通过SDS-Tricine PAGE和各种光谱技术检查了有机提取的去污剂溶解的大肠杆菌SugE蛋白。在两种洗涤剂中对SugE进行SDS-Tricine PAGE分析均表明,该蛋白以单体为主,但在SDS中二聚。远紫外区圆二色性(CD)分析确定,SDS和DDM中的总α-螺旋含量SugE几乎相同,并且不受QCC的影响。接近UV区的CD,荧光和二阶导数紫外线吸收(SDUV)表明,只有DDM-SugE的Trp和Tyr残基会被QCC添加扰动,从而促进疏水环境。这项研究发现,QCC仅改变了DDM中SugE蛋白的三级结构。

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