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自组织与钟表匠:分子识别的模糊性及细胞回路的设计图

Self-organization versus Watchmaker: ambiguity of molecular recognition and design charts of cellular circuitry.

作者信息

Kurakin Alexei

机构信息

Buck Institute for Age Research, 8001 Redwood Blvd., Novato, CA 94945, USA.

出版信息

J Mol Recognit. 2007 Jul-Aug;20(4):205-14. doi: 10.1002/jmr.839.

Abstract

A large body of experimental evidence indicates that the specific molecular interactions and/or chemical conversions depicted as links in the conventional diagrams of cellular signal transduction and metabolic pathways are inherently probabilistic, ambiguous and context-dependent. Being the inevitable consequence of the dynamic nature of protein structure in solution, the ambiguity of protein-mediated interactions and conversions challenges the conceptual adequacy and practical usefulness of the mechanistic assumptions and inferences embodied in the design charts of cellular circuitry. It is argued that the reconceptualization of molecular recognition and cellular organization within the emerging interpretational framework of self-organization, which is expanded here to include such concepts as bounded stochasticity, evolutionary memory, and adaptive plasticity offers a significantly more adequate representation of experimental reality than conventional mechanistic conceptions do. Importantly, the expanded framework of self-organization appears to be universal and scale-invariant, providing conceptual continuity across multiple scales of biological organization, from molecules to societies. This new conceptualization of biological phenomena suggests that such attributes of intelligence as adaptive plasticity, decision-making, and memory are enforced by evolution at different scales of biological organization and may represent inherent properties of living matter.

摘要

大量实验证据表明,在细胞信号转导和代谢途径的传统示意图中被描绘为链接的特定分子相互作用和/或化学转化本质上是概率性的、模糊的且依赖于上下文的。作为溶液中蛋白质结构动态性质的必然结果,蛋白质介导的相互作用和转化的模糊性挑战了细胞电路设计图中所体现的机械假设和推论的概念充分性和实际实用性。有人认为,在新兴的自组织解释框架内对分子识别和细胞组织进行重新概念化,在此扩展为包括有界随机性、进化记忆和适应性可塑性等概念,比传统机械概念能更充分地反映实验现实。重要的是,扩展后的自组织框架似乎具有普遍性和尺度不变性,在从分子到社会的多个生物组织尺度上提供概念上的连续性。这种对生物现象的新的概念化表明,诸如适应性可塑性、决策和记忆等智能属性是由进化在不同生物组织尺度上强化的,可能代表了生命物质的固有属性。

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