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硫酸软骨素簇对类蛋白微球电活性的调节作用。

Modulation of electrical activity of proteinoid microspheres with chondroitin sulfate clusters.

作者信息

Mougkogiannis Panagiotis, Adamatzky Andrew

机构信息

Unconventional Computing Lab, University of the West of England, Bristol, United Kingdom.

出版信息

PLoS One. 2024 Dec 4;19(12):e0313077. doi: 10.1371/journal.pone.0313077. eCollection 2024.

Abstract

Proteinoids-thermal proteins-are produced by heating amino acids to their melting point and initiation of polymerisation to produce polymeric chains. Proteinoids swell in aqueous solution into hollow microspheres. The proteinoid microspheres produce endogenous burst of electrical potential spikes and change patterns of their electrical activity in response to illumination. These microspheres were proposed as proto-neurons in 1950s. To evaluate pathways of potential evolution of these proto-neurons and their applicability of chimera neuromorphic circuits we decided to hybridise them with hondroitin sulphate (CS) clusters, which form a part of the brain extracellular matrix. We found a novel synergistic interaction between CS clusters and proteinoids that dramatically affects patterns of electrical activity of proteinoid microspheres. Our study might shed light on evolution of synaptic plasticity's molecular mechanisms and the role of extracellular matrix-protein interactions in learning, and open up possibilities for novel methods in unconventional computing and the development of adaptable, brain-inspired computational systems.

摘要

类蛋白——热蛋白——是通过将氨基酸加热至熔点并引发聚合反应以产生聚合物链而形成的。类蛋白在水溶液中膨胀成中空微球。类蛋白微球会产生内源性的电位尖峰爆发,并根据光照改变其电活动模式。这些微球在20世纪50年代被提议作为原始神经元。为了评估这些原始神经元潜在的进化途径及其在嵌合神经形态电路中的适用性,我们决定将它们与硫酸软骨素(CS)簇进行杂交,硫酸软骨素簇是大脑细胞外基质的一部分。我们发现CS簇与类蛋白之间存在一种新型的协同相互作用,这种相互作用会显著影响类蛋白微球的电活动模式。我们的研究可能会揭示突触可塑性分子机制的进化以及细胞外基质 - 蛋白质相互作用在学习中的作用,并为非传统计算中的新方法以及适应性强、受大脑启发的计算系统的开发开辟可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a708/11616837/25a239d20b6c/pone.0313077.g001.jpg

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