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Architecture and Signal Transduction Mechanism of the Bacterial Chemosensory Array: Progress Controversies and Challenges

机译:细菌化学感应阵列的体系结构和信号转导机制:进展争议和挑战

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摘要

Recent research has deepened our understanding of the ancient, conserved chemosensory array that detects small molecule attractants and repellents, and directs the chemotaxis of bacterial and archaeal cells towards an optimal chemical environment. Here we review advances towards a molecular description of the ultrastable lattice architecture and ultrasensitive signal transduction mechanism of the chemosensory array, as well as controversies and challenges requiring further research. Ultimately, a full molecular understanding of array structure and on-off switching will foster (i) the design of novel therapies that block pathogenic wound seeking and infection, (ii) the development of highly specific, sensitive, stable biosensors, and (iii) the elucidation of general functional principles shared by receptor patches in all branches of life.
机译:最近的研究加深了我们对古老的,保守的化学感应阵列的了解,该阵列可以检测小分子引诱剂和驱避剂,并将细菌和古细菌细胞的化学趋向指向最佳的化学环境。在这里,我们回顾了对化学传感器阵列的超稳定晶格结构和超灵敏信号转导机制的分子描述的进展,以及需要进一步研究的争议和挑战。最终,对阵列结构和通断转换的完整分子理解将促进(i)阻止病原性伤口寻找和感染的新疗法的设计,(ii)开发高度特异性,灵敏,稳定的生物传感器,以及(iii)阐明生命各个分支中受体斑块共有的一般功能原理。

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