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利用免疫电子显微镜和能量过滤透射电子显微镜对淡紫链霉菌菌丝中的钾通道KcsA进行体内监测。

In vivo monitoring of the potassium channel KcsA in Streptomyces lividans hyphae using immuno-electron microscopy and energy-filtering transmission electron microscopy.

作者信息

Hegermann Jan, Overbeck Jens, Schrempf Hildgund

机构信息

FB Biologie/Chemie, Universität Osnabrück, Barbarastr. 11, D-49069 Osnabrück, Germany.

出版信息

Microbiology (Reading). 2006 Sep;152(Pt 9):2831-2841. doi: 10.1099/mic.0.29002-0.

Abstract

The previous discovery of the Streptomyces lividans kcsA gene and its overexpression followed by the functional reconstitution of the purified gene product has resulted in new strategies to explore this channel protein in vitro. KcsA has evolved as a general model to investigate the structure/function relationship of ion channel proteins. Using specific antibodies raised against a domain of KcsA lacking membrane-spanning regions, KcsA has now been localized within numerous separated clusters between the outer face of the cytoplasm and the cell envelope in substrate hyphae of the S. lividans wild-type strain but not in a designed chromosomal disruption mutant DeltaK, lacking a functional kcsA gene. Previous findings had revealed that caesium ions led to a block of KcsA channel activity within S. lividans protoplasts fused to giant vesicles. As caesium can be scored by electron energy loss spectroscopy better than potassium, this technique was applied to hyphae that had been briefly exposed to caesium instead of potassium ions. Caesium was found preferentially at the cell envelope. Compared to the DeltaK mutant, the relative level of caesium was approximately 30 % enhanced in the wild-type. This is attributed to the presence of KcsA channels. Additional visualization by electron spectroscopic imaging supported this conclusion. The data presented are believed to represent the first demonstration of in vivo monitoring of KcsA in its original host.

摘要

先前对天蓝色链霉菌kcsA基因的发现及其过表达,随后对纯化的基因产物进行功能重建,从而产生了在体外探索该通道蛋白的新策略。KcsA已发展成为研究离子通道蛋白结构/功能关系的通用模型。利用针对KcsA缺乏跨膜区域的结构域产生的特异性抗体,现已将KcsA定位在天蓝色链霉菌野生型菌株的底物菌丝中细胞质外表面和细胞包膜之间的众多分离簇内,但在缺乏功能性kcsA基因的设计染色体破坏突变体DeltaK中未发现。先前的研究结果表明,铯离子会导致与巨型囊泡融合的天蓝色链霉菌原生质体内KcsA通道活性受阻。由于电子能量损失光谱法对铯的检测比对钾更好,因此该技术应用于短暂暴露于铯而非钾离子的菌丝。发现铯优先存在于细胞包膜处。与DeltaK突变体相比,野生型中铯的相对水平提高了约30%。这归因于KcsA通道的存在。通过电子光谱成像的额外可视化支持了这一结论。所呈现的数据被认为代表了在其原始宿主中对KcsA进行体内监测的首次证明。

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