首页> 美国卫生研究院文献>PLoS Genetics >Super Resolution Fluorescence Microscopy and Tracking of Bacterial Flotillin (Reggie) Paralogs Provide Evidence for Defined-Sized Protein Microdomains within the Bacterial Membrane but Absence of Clusters Containing Detergent-Resistant Proteins
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Super Resolution Fluorescence Microscopy and Tracking of Bacterial Flotillin (Reggie) Paralogs Provide Evidence for Defined-Sized Protein Microdomains within the Bacterial Membrane but Absence of Clusters Containing Detergent-Resistant Proteins

机译:超分辨荧光显微镜术和细菌Flotillin(Reggie)旁系同源物的跟踪提供了细菌膜内确定大小的蛋白质微结构域的证据但缺乏含有抗洗涤剂蛋白的簇

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摘要

Biological membranes have been proposed to contain microdomains of a specific lipid composition, in which distinct groups of proteins are clustered. Flotillin-like proteins are conserved between pro—and eukaryotes, play an important function in several eukaryotic and bacterial cells, and define in vertebrates a type of so-called detergent-resistant microdomains. Using STED microscopy, we show that two bacterial flotillins, FloA and FloT, form defined assemblies with an average diameter of 85 to 110 nm in the model bacterium Bacillus subtilis. Interestingly, flotillin microdomains are of similar size in eukaryotic cells. The soluble domains of FloA form higher order oligomers of up to several hundred kDa in vitro, showing that like eukaryotic flotillins, bacterial assemblies are based in part on their ability to self-oligomerize. However, B. subtilis paralogs show significantly different diffusion rates, and consequently do not colocalize into a common microdomain. Dual colour time lapse experiments of flotillins together with other detergent-resistant proteins in bacteria show that proteins colocalize for no longer than a few hundred milliseconds, and do not move together. Our data reveal that the bacterial membrane contains defined-sized protein domains rather than functional microdomains dependent on flotillins. Based on their distinct dynamics, FloA and FloT confer spatially distinguishable activities, but do not serve as molecular scaffolds.
机译:已经提出生物膜包含特定脂质组成的微区,其中不同的蛋白质簇聚集在其中。类Flotillin蛋白在原核和真核生物之间保守,在几个真核和细菌细胞中起重要作用,并在脊椎动物中定义了一种所谓的耐洗涤剂的微结构域。使用STED显微镜,我们显示了两种细菌絮凝蛋白FloA和FloT在枯草芽孢杆菌模型细菌中形成了平均直径为85到110 nm的定义组件。有趣的是,在真核细胞中,弗洛替林微结构域的大小相似。 FloA的可溶性域在体外形成高达数百kDa的高级寡聚体,表明与真核生物絮凝素一样,细菌装配部分基于它们的自身寡聚能力。但是,枯草芽孢杆菌旁系同源物显示出明显不同的扩散速率,因此不会共定位到一个共同的微区中。弗洛特林蛋白与细菌中其他耐去污剂的蛋白质的双色延时实验表明,蛋白质共定位的时间不超过几百毫秒,并且不会一起移动。我们的数据表明细菌膜包含确定大小的蛋白质结构域,而不是依赖于花青素的功能性微结构域。基于它们独特的动力学,FloA和FloT赋予了空间上可区分的活动,但不充当分子支架。

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