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首页> 外文期刊>Comptes Rendus Chimie >Multifunction moonlighting and intrinsically disordered proteins: Information catalysis, non-rigid molecule symmetries and the 'logic gate' spectrum
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Multifunction moonlighting and intrinsically disordered proteins: Information catalysis, non-rigid molecule symmetries and the 'logic gate' spectrum

机译:多功能月光和内在无序的蛋白质:信息催化,非刚性分子对称性和“逻辑门”谱

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摘要

Intrinsically disordered proteins (IDP) appear far more likely to engage in functional moonlighting than well-structured proteins. The recent use of nonrigid molecule theory to address IDP structure and dynamics produces this result directly: mirror image subgroup or subgroupoid tiling matching of the molecular fuzzy lock-and-key can be much richer for IDP's since the number of possible group orgroupoid symmetries can grow exponentially with molecule length, while tiling matching for 3D structured proteins is relatively limited. An 'information catalysis' model suggests how this mechanism can produce a vast spectrum of biological logic gates having subtle properties far beyond familiar AND, OR, XOR, etc. behaviors. Inferring the general from the particular, the analysis adds weight to arguments that a fundamental defining characteristic of the living state is the operation of chemical or other cognitive processes at virtually every scale and level of organization.
机译:与结构良好的蛋白质相比,内在无序的蛋白质(IDP)似乎更有可能参与功能性月光照明。最近使用非刚性分子理论来解决IDP结构和动力学问题直接产生了以下结果:分子模糊锁键的镜像子组或子组样平铺匹配对于IDP可能要丰富得多,因为可能的组或组样对称性的数量会增加与分子长度成指数关系,而3D结构蛋白的图块匹配相对有限。 “信息催化”模型表明这种机制如何产生广泛的生物学逻辑门,这些逻辑门的微妙特性远远超出了常见的AND,OR,XOR等行为。从特殊情况推断一般情况,该分析增加了这样的论点,即生存状态的基本定义特征是化学或其他认知过程在几乎组织的各个规模和水平上的运行。

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