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首页> 外文期刊>American Journal of Biochemistry and Biotechnology >LANGMUIR-BLODGETT NANOTEMPLATE CRYSTALLIZATION COMBINED TO LASER-MICROFRAGMENTATION UNIQUELY CHARACTERIZE PROTEINS CRYSTALS BY SYNCHROTRON MICRODIFFRACTION
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LANGMUIR-BLODGETT NANOTEMPLATE CRYSTALLIZATION COMBINED TO LASER-MICROFRAGMENTATION UNIQUELY CHARACTERIZE PROTEINS CRYSTALS BY SYNCHROTRON MICRODIFFRACTION

机译:朗格米尔-布洛杰特纳米模板结晶与激光微片段化结合,通过同步微电子微衍射独特地表征蛋白质晶体

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摘要

Laser-induced microfragmentation of LB nanotemplate-induced protein crystals in glycerol solution results in distinct, coherently diffracting domains. Only crystals produced according to the Langmuir-Blodgett (LB) nanotemplate technique reveal in all four proteins being tested (lysozyme, insulin, thaumatin and ribonuclease) domains highly radiation resistant, while the crystals produced by the standard hanging drop crystallization method do not. Actually the very same laser exposure causes the disappearance of these "classical" protein crystals during the same time frame of 40 min needed for the laser cutting in all four proteins being tested. The microdiffraction of microcrystals prepered by the combination of Langmuir-Blodgett and Laser technologies proves that not only the Lysozyme survives the process, as shown recently by nanodifraction, but also all three other model proteins appear to behave similarly well, namely insulin, thaumatin and ribonuclease. The result confirms the emerging of a new biophysical technique uniquely usefull for synchrotron radiation studies based on small protein microcrystals uniquely radiation resistant when prepered by LB nanotemplate and subsequently fragmented by Laser.
机译:激光诱导的LB纳米模板诱导的蛋白质晶体在甘油溶液中的微片段化导致不同的,相干的衍射域。仅根据Langmuir-Blodgett(LB)纳米模板技术生产的晶体在所有被测试的四种蛋白质(溶菌酶,胰岛素,索马汀和核糖核酸酶)域中均显示出高度抗辐射性,而通过标准悬滴结晶法生产的晶体则没有。实际上,完全相同的激光照射会导致这些&#34classical&#34蛋白质晶体在40分钟的同一时间范围内消失,这是对所有四种蛋白质进行激光切割所需的时间。 Langmuir-Blodgett和Laser技术的结合对微晶的微衍射表明,不仅溶菌酶在过程中幸存,如最近的纳米衍射所表明的,而且所有其他三种模型蛋白的表现也相似,即胰岛素,索马汀和核糖核酸酶。该结果证实了一种新的生物物理技术的出现,该技术基于小蛋白微晶对同步加速器辐射的研究非常有用,当通过LB纳米模板进行预涂并随后被Laser破碎时,这种蛋白具有独特的抗辐射性。

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