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革兰氏染色无法穿过细菌的细胞质膜。

Gram's Stain Does Not Cross the Bacterial Cytoplasmic Membrane.

作者信息

Wilhelm Michael J, Sheffield Joel B, Sharifian Gh Mohammad, Wu Yajing, Spahr Christian, Gonella Grazia, Xu Bolei, Dai Hai-Lung

机构信息

†Department of Chemistry, Temple University, 1901 N. 13th Street, Philadelphia, Pennsylvania 19122, United States.

‡Department of Biology, Temple University, 1900 N. 12th Street, Philadelphia, Pennsylvania 19122, United States.

出版信息

ACS Chem Biol. 2015 Jul 17;10(7):1711-7. doi: 10.1021/acschembio.5b00042. Epub 2015 Apr 27.

Abstract

For well over a century, Hans Christian Gram's famous staining protocol has been the standard go-to diagnostic for characterizing unknown bacteria. Despite continuous and ubiquitous use, we now demonstrate that the current understanding of the molecular mechanism for this differential stain is largely incorrect. Using the fully complementary time-resolved methods: second-harmonic light-scattering and bright-field transmission microscopy, we present a real-time and membrane specific quantitative characterization of the bacterial uptake of crystal-violet (CV), the dye used in Gram's protocol. Our observations contradict the currently accepted mechanism which depicts that, for both Gram-negative and Gram-positive bacteria, CV readily traverses the peptidoglycan mesh (PM) and cytoplasmic membrane (CM) before equilibrating within the cytosol. We find that not only is CV unable to traverse the CM but, on the time-scale of the Gram-stain procedure, CV is kinetically trapped within the PM. Our results indicate that CV, rather than dyes which rapidly traverse the PM, is uniquely suited as the Gram stain.

摘要

一个多世纪以来,汉斯·克里斯蒂安·革兰著名的染色方法一直是鉴定未知细菌的标准诊断方法。尽管一直在持续广泛使用,但我们现在证明,目前对这种鉴别染色分子机制的理解在很大程度上是错误的。我们使用完全互补的时间分辨方法:二次谐波光散射和明场透射显微镜,对革兰氏染色法中使用的染料结晶紫(CV)被细菌摄取的过程进行了实时且针对膜的定量表征。我们的观察结果与目前公认的机制相矛盾,该机制描述为,对于革兰氏阴性菌和革兰氏阳性菌,CV在细胞质溶胶中达到平衡之前,很容易穿过肽聚糖网(PM)和细胞质膜(CM)。我们发现,CV不仅无法穿过CM,而且在革兰氏染色过程的时间尺度上,CV在动力学上被困在PM中。我们的结果表明,CV而非能快速穿过PM的染料,是革兰氏染色的独特选择。

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