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

机译:严格调控鸟苷酸环化酶视蛋白CyclOp对细胞和动物中cGMP的光遗传学操纵

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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)信号通过激活蛋白激酶G和环状核苷酸门控(CNG)通道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嘌呤环化酶视紫红质,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快速增加。在五种不同的真菌CyclOps中,表现出不同的八种跨膜拓扑结构和胞质N末端,BeCyclOp是优越的光遗传学工具(光/暗活性比:5,000;不产生cAMP;周转量(20?C)〜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O 2 / CO 2 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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