首页> 外文OA文献 >High-resolution topography of the S-layer sheath of the archaebacterium Methanospirillum hungatei provided by scanning tunneling microscopy.
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High-resolution topography of the S-layer sheath of the archaebacterium Methanospirillum hungatei provided by scanning tunneling microscopy.

机译:扫描隧道显微镜提供的考古细菌Methanospirillum Hangatei的S层鞘的高分辨率形貌。

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摘要

The inner and outer surfaces of the sheath of Methanospirillum hungatei GP1 have been imaged for the first time by using a bimorph scanning tunneling microscope (STM) on platinum-coated or uncoated specimens to a nominal resolution in height of ca. 0.4. nm. Unlike more usual types of microscopy (e.g., transmission electron microscopy), STM provided high-resolution topography of the surfaces, giving good depth detail which confirmed the sheath to be a paracrystalline structure possessing minute pores and therefore impervious to solutes possessing a hydrated radius of greater than 0.3 nm. STM also confirmed that the sheath consisted of a series of stacked hoops approximately 2.5 nm wide which were the remnants of the sheath after treatment with 2% (wt/vol) sodium dodecyl sulfate-2% (vol/vol) beta-mercaptoethanol (pH 9.0). No topographical infrastructure could be seen on the sides of the hoops. This research required the development of a new long-range STM capable of detecting small particles such as bacteria on graphite surfaces as well as a new "hopping" STM mode which did not deform the poorly conducting bacterial surface during high-resolution topographical analysis.
机译:首次使用双晶扫描隧道显微镜(STM)在镀铂或未镀膜的标本上以标称分辨率(约高度)对悬空的甲烷螺旋藻GP1鞘的内表面和外表面进行了成像。 0.4。纳米与更常用的显微镜​​(例如透射电子显微镜)不同,STM提供了高分辨率的表面形貌,并提供了良好的深度细节,这证实了鞘层是具有微小孔洞的顺晶结构,因此不能渗透具有水合半径为2的溶质。大于0.3 nm STM还证实了鞘管由一系列约2.5 nm宽的堆叠箍组成,它们是用2%(wt / vol)十二烷基硫酸钠-2%(vol / vol)β-巯基乙醇(pH)处理后的残余鞘9.0)。在铁环的侧面看不到地形基础设施。这项研究需要开发一种新型的长距离STM,它能够检测石墨表面上的细小颗粒,例如细菌,以及一种新的“跳跃” STM模式,该模式在高分辨率的地形分析过程中不会使导电不良的细菌表面变形。

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