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首页> 外文期刊>Journal of Molecular Liquids >Asking biological questions of physical systems: The device approach to emergent properties
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Asking biological questions of physical systems: The device approach to emergent properties

机译:询问物理系统的生物学问题:突发性能的设备方法

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摘要

Life occurs in concentrated "Ringer Solutions" derived from seawater that Lesser Blum studied for most of his life. As we worked together, Lesser and I realized that the questions asked of those solutions were quite different in biology from those in the physical chemistry he knew. Biology is inherited. Information is passed by handfuls of atoms in the genetic code. A few atoms in the proteins built from the code change macroscopic function. Indeed, a few atoms often control biological function in the same sense that a gas pedal controls the speed of a car. Biological questions then are most productive when they are asked in the context of evolution. What function does a system perform ? How is the system built to perform that function ? What forces are used to perform that function ? How are the modules that perform functions connected to make the machinery of life. Physiologists have shown that much of life is a nested hierarchy of devices, one on top of another, linking atomic ions in concentrated solutions to current flow through proteins, current flow to voltage signals, voltage signals to changes in current flow, all connected to make a regenerative system that allows electrical action potentials to move meters, under the control of a few atoms. The hierarchy of devices allows macroscopic properties to emerge from atomic scale interactions. The structures of biology create these devices. The concentration and electrical fields of biology power these devices, more than anything else. The resulting organisms reproduce. Evolution selects the organisms that reproduce more and thereby selects the devices that allow macroscopic control to emerge from the atomic structures of genes and proteins and their motions. (C) 2018 Elsevier B.V. All rights reserved.
机译:生命发生在源自海水中的集中的“铃声解决方案”中,这对他的大部分生命学习了较小的Blum。当我们一起工作时,较小的,我意识到那些解决方案的问题与他认识的物理化学的生物学中的生物学完全不同。生物学是遗传的。信息由遗传密码中的少数原子通过。从代码更改宏观函数中构建的蛋白质中的一些原子。实际上,少数几个原子通常以同样的意义控制生物功能,即气踏板控制汽车的速度。当在演变的背景下被问及时,生物问题最有效。系统执行哪些功能?系统如何执行该功能?什么力量用于执行该功能?如何执行函数的模块是如何制作生命的机械。生理学家已经表明,大部分生命是设备的嵌套层次,一个在另一个上,一个在浓缩溶液中将原子离子连接到电流通过蛋白质,电流流到电压信号,电压信号变为电流的变化,都是连接的在少量原子的控制下,允许电动动作电位移动电表的再生系统。设备层次结构允许宏观属性从原子尺度相互作用中出现。生物学结构创建这些设备。生物学的浓度和电场,这些装置的浓度和电场比其他任何东西更多。得到的生物体繁殖。 Evolution选择再现更多的生物,从而选择允许宏观对照的装置从基因和蛋白质的原子结构中出现,以及它们的运动。 (c)2018年elestvier b.v.保留所有权利。

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