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Optogenetic manipulation of cGMP in cells and animals by the tightly light-regulated guanylyl-cyclase opsin CyclOp

机译:严格调节鸟嘌呤环化酶视蛋白CyclOp对细胞和动物中cGMP的光遗传学操纵

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摘要

Cyclic GMP (cGMP) signalling regulates multiple biological functions through activation of protein kinase G and cyclic nucleotide-gated (CNG) channels. In sensory neurons, cGMP permits signal modulation, amplification and encoding, before depolarization. Here we implement a guanylyl cyclase rhodopsin from Blastocladiella emersonii as a new optogenetic tool (BeCyclOp), enabling rapid light-triggered cGMP increase in heterologous cells (Xenopus oocytes, HEK293T cells) and in Caenorhabditis elegans. Among five different fungal CyclOps, exhibiting unusual eight transmembrane topologies and cytosolic N-termini, BeCyclOp is the superior optogenetic tool (light/dark activity ratio: 5,000; no cAMP production; turnover (20 °C) ∼17 cGMP s−1). Via co-expressed CNG channels (OLF in oocytes, TAX-2/4 in C. elegans muscle), BeCyclOp photoactivation induces a rapid conductance increase and depolarization at very low light intensities. In O2/CO2 sensory neurons of C. elegans, BeCyclOp activation evokes behavioural responses consistent with their normal sensory function. BeCyclOp therefore enables precise and rapid optogenetic manipulation of cGMP levels in cells and animals.
机译:循环GMP(cGMP)信号通过蛋白激酶G和环状核苷酸门控(CNG)通道的激活来调节多种生物学功能。在感觉神经元中,cGMP可以在去极化之前进行信号调制,放大和编码。在这里,我们实现了一种新的光遗传学工具(BeCyclOp)中的艾默生小球藻的鸟苷酸环化酶视紫红质,使异源细胞(非洲爪蟾卵母细胞,HEK293T细胞)和秀丽隐杆线虫中的光触发cGMP迅速增加。在五种不同的真菌CyclOps中,它们表现出不同的八种跨膜拓扑结构和胞质N末端,BeCyclOp是优良的光遗传学工具(光/暗活性比:5,000;无cAMP产生;周转(20°C)约17 cGMP s - 1 )。通过共表达的CNG通道(卵母细胞中的OLF,秀丽隐杆线虫中的TAX-2 / 4),BeCyclOp光激活在非常低的光强度下诱导电导快速增加和去极化。在秀丽隐杆线虫的O2 / CO2感觉神经元中,BeCyclOp激活引起与其正常感觉功能一致的行为反应。因此,BeCyclOp可以对细胞和动物中的cGMP水平进行精确,快速的光遗传学操作。

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