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Microbial Rhodopsins: Diversity, Mechanisms, and Optogenetic Applications
Annual Review of Biochemistry ( IF 12.1 ) Pub Date : 2017-06-27 00:00:00 , DOI: 10.1146/annurev-biochem-101910-144233
Elena G Govorunova 1 , Oleg A Sineshchekov 1 , Hai Li 1 , John L Spudich 1
Affiliation  

Microbial rhodopsins are a family of photoactive retinylidene proteins widespread throughout the microbial world. They are notable for their diversity of function, using variations of a shared seven-transmembrane helix design and similar photochemical reactions to carry out distinctly different light-driven energy and sensory transduction processes. Their study has contributed to our understanding of how evolution modifies protein scaffolds to create new protein chemistry, and their use as tools to control membrane potential with light is fundamental to optogenetics for research and clinical applications. We review the currently known functions and present more in-depth assessment of three functionally and structurally distinct types discovered over the past two years: (a) anion channelrhodopsins (ACRs) from cryptophyte algae, which enable efficient optogenetic neural suppression; (b) cryptophyte cation channelrhodopsins (CCRs), structurally distinct from the green algae CCRs used extensively for neural activation and from cryptophyte ACRs; and (c) enzymerhodopsins, with light-gated guanylyl cyclase or kinase activity promising for optogenetic control of signal transduction.

中文翻译:



微生物视紫红质:多样性、机制和光遗传学应用



微生物视紫红质是一类广泛存在于微生物世界的光活性视黄基蛋白。它们以其功能多样性而闻名,利用共享的七跨膜螺旋设计的变化和类似的光化学反应来执行截然不同的光驱动能量和感觉转导过程。他们的研究有助于我们理解进化如何改变蛋白质支架以创造新的蛋白质化学,并且它们作为光控制膜电位的工具是光遗传学研究和临床应用的基础。我们回顾了目前已知的功能,并对过去两年发现的三种功能和结构不同的类型进行了更深入的评估:( a )来自隐藻的阴离子通道视紫红质(ACR),它可以实现有效的光遗传学神经抑制; ( b ) 隐植物阳离子通道视紫红质 (CCR),在结构上不同于广泛用于神经激活的绿藻 CCR 和隐植物 ACR; ( c ) 酶视紫红质,具有光门控鸟苷酸环化酶或激酶活性,有望用于信号转导的光遗传学控制。

更新日期:2017-06-27
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