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首页> 外文期刊>MBio >Refined Mechanism of Mycoplasma mobile Gliding Based on Structure, ATPase Activity, and Sialic Acid Binding of Machinery
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Refined Mechanism of Mycoplasma mobile Gliding Based on Structure, ATPase Activity, and Sialic Acid Binding of Machinery

机译:基于机械结构,ATPase活性和唾液酸结合的支原体移动滑行的精细机制

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Mycoplasma mobile , a fish pathogen, glides on solid surfaces by repeated catch, pull, and release of sialylated oligosaccharides by a unique mechanism based on ATP energy. The gliding machinery is composed of huge surface proteins and an internal “jellyfish”-like structure. Here, we elucidated the detailed three-dimensional structures of the machinery by electron cryotomography. The internal “tentacle”-like structure hydrolyzed ATP, which was consistent with the fact that the paralogs of the α- and β-subunits of F_(1)-ATPase are at the tentacle structure. The electron microscopy suggested conformational changes of the tentacle structure depending on the presence of ATP analogs. The gliding machinery was isolated and showed that the binding activity to sialylated oligosaccharide was higher in the presence of ADP than in the presence of ATP. Based on these results, we proposed a model to explain the mechanism of M. mobile gliding.
机译:移动性支原体是鱼类的病原体,通过基于ATP能量的独特机制反复捕获,拉动和释放唾液酸化寡糖,从而在固体表面上滑动。滑翔机由巨大的表面蛋白和内部“水母”状结构组成。在这里,我们通过电子冷冻断层扫描阐明了机械的详细三维结构。内部“触手”状结构水解了ATP,这与F_(1)-ATPase的α-和β-亚基的旁系同源物处于触手结构这一事实是一致的。电子显微镜表明触手结构的构象变化取决于ATP类似物的存在。分离了滑翔机构,并显示在ADP存在下与唾液酸化寡糖的结合活性比在ATP存在下更高。基于这些结果,我们提出了一个模型来解释M. mobile滑行的机制。

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