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首页> 外文期刊>Plant Physiology >Channelrhodopsins of Volvox carteri Are Photochromic Proteins That Are Specifically Expressed in Somatic Cells under Control of Light, Temperature, and the Sex Inducer
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Channelrhodopsins of Volvox carteri Are Photochromic Proteins That Are Specifically Expressed in Somatic Cells under Control of Light, Temperature, and the Sex Inducer

机译:沃尔沃卡氏菌的通道视紫红质是光致变色蛋白,在光,温度和性诱导剂的控制下在体细胞中特异性表达

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摘要

Channelrhodopsins are light-gated ion channels involved in the photoresponses of microalgae. Here, we describe the characterization of two channelrhodopsins, Volvox channelrhodopsin-1 (VChR1) and VChR2, from the multicellular green alga Volvox carteri. Both are encoded by nuclear single copy genes and are highly expressed in the small biflagellated somatic cells but not in the asexual reproductive cells (gonidia). Expression of both VChRs increases after cell cleavage and peaks after completion of embryogenesis, when the biosynthesis of the extracellular matrix begins. Likewise, expression of both transcripts increases after addition of the sex-inducer protein, but VChR2 is induced much more than VChR1. The expression of VChR1 is specifically promoted by extended dark periods, and heat stress reduces predominantly VChR1 expression. Expression of both VChRs increased under low light conditions, whereas cold stress and wounding reduced expression. Both VChRs were spectroscopically studied in their purified recombinant forms. VChR2 is similar to the ChR2 counterpart from Chlamydomonas reinhardtii with respect to its absorption maximum (460 nm) and photocycle dynamics. In contrast, VChR1 absorbs maximally at 540 nm at low pH (D540), shifting to 500 nm at high pH (D500). Flash photolysis experiments showed that after light excitation, the D540 dark state bleaches and at least two photoproducts, P600 and P500, are sequentially populated during the photocycle. We hypothesize that VChR2 is a general photoreceptor that is responsible for the avoidance of blue light and might play a key role in sexual development, whereas VChR1 is the main phototaxis photoreceptor under vegetative conditions, as it is more specifically adapted to environmental conditions and the developmental stages of Volvox.
机译:通道视紫红质是与微藻的光响应有关的光门离子通道。在这里,我们描述了来自多细胞绿藻Volvox Carteri的两个通道视紫红质的特征,即Volvox通道视紫红质1(VChR1)和VChR2。两者均由核单拷贝基因编码,并在小双鞭毛体细胞中高表达,而在无性生殖细胞(性腺)中却不表达。当细胞外基质的生物合成开始时,两种VChRs的表达在细胞裂解后都会增加,并在胚胎发生完成后达到高峰。同样,添加性诱导蛋白后,两个转录物的表达均增加,但VChR2的诱导作用远大于VChR1。延长的暗期特别促进了VChR1的表达,并且热应激主要降低了VChR1的表达。在弱光条件下,两种VChRs的表达均增加,而冷应激和创伤使表达降低。两种VChR均以其纯化的重组形式进行了光谱研究。 VChR2在最大吸收(460 nm)和光循环动力学方面类似于莱茵衣藻(Chlamydomonas reinhardtii)的ChR2。相反,VChR1在低pH(D540)时最大吸收540 nm,而在高pH(D500)时最大吸收500 nm。闪光光解实验表明,在光激发后,D540暗态漂白剂和至少两个光产物P600和P500在光循环过程中依次出现。我们假设VChR2是一种普通的感光体,负责避免蓝光,并且可能在性发育中起关键作用,而VChR1是在营养条件下的主要趋光性感光体,因为它更具体地适应环境条件和发育沃尔沃的各个阶段。

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