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Enabling technologies in discovery: The 2009 Nobel Prize and its implications in antibiotic design

机译:发现中的使能技术:2009年诺贝尔奖及其对抗生素设计的影响

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The 2009 Nobel Prize in Chemistry recognized researchers for the illustration of the structure and function of the ribosome, the protein production machinery that translates the DNA blueprint. Ada E. Yonath, Weizmann Institute of Science with the coworkers obtained crystals from the 50S subunit from H. marismortui with a diffraction resolution of 3 ?. The development of several analytical methods such as the employment of CCD area-detectors for precise and automated analysis of X-ray diffraction patterns ensures the advancement in the researches. Several antibiotics based on the differences of the structures of the prokaryotic and eukaryotic ribosomes to selectively or preferentially target the prokaryotic ribosome to attack microorganisms and disrupt their protein synthesis. The advanced analytical science is focused on the design and development of enabling techniques and instrumentation for targeted applications that are employed to study the structure of proteins.
机译:2009年诺贝尔化学奖因其核糖体的结构和功能的例证而获得了研究人员的认可,核糖体是翻译DNA蓝图的蛋白质生产设备。魏茨曼科学研究所的Ada E. Yonath及其同事从H. marismortui的50S亚基获得了晶体,其衍射分辨率为3。诸如使用CCD面积检测器对X射线衍射图进行精确和自动分析等多种分析方法的开发确保了研究的进展。基于原核和真核核糖体结构差异的几种抗生素,可选择性或优先靶向原核核糖体以攻击微生物并破坏其蛋白质合成。先进的分析科学专注于针对研究蛋白质结构的目标应用的使能技术和仪器的设计和开发。

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