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Engineering a carotenoid-binding site in Dokdonia sp PRO95 Na+-translocating rhodopsin by a single amino acid substitution

机译:通过单一氨基酸取代工艺在Dokdonia SP Pro95 Na + -Translocated roodopsin中工艺一种类胡萝卜素结合位点

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摘要

Light-driven H+, Cl- and Na+ rhodopsin pumps all use a covalently bound retinal molecule to capture light energy. Some H+-pumping rhodopsins (xanthorhodopsins; XRs) additionally contain a carotenoid antenna for light absorption. Comparison of the available primary and tertiary structures of rhodopsins pinpointed a single Thr residue (Thr216) that presumably prevents carotenoid binding to Na+-pumping rhodopsins (NaRs). We replaced this residue in Dokdonia sp. PRO95 NaR with Gly, which is found in the corresponding position in XRs, and produced a variant rhodopsin in a ketocarotenoid-synthesising Escherichia coli strain. Unlike wild-type NaR, the isolated variant protein contained the tightly bound carotenoids canthaxanthin and echinenone. These carotenoids were visible in the absorption, circular dichroism and fluorescence excitation spectra of the Thr216Gly-substituted NaR, which indicates their function as a light-harvesting antenna. The amino acid substitution and the bound carotenoids did not affect the NaR photocycle. Our findings suggest that the antenna function was recently lost during NaR evolution but can be easily restored by site-directed mutagenesis.
机译:光驱动的H +,Cl-和Na + rhodopsin泵均使用共价结合的视网膜分子来捕获光能。一些H + -Pumping rhodopsins(Xanthorhodopsins; XRS)另外含有类胡萝卜素天线,用于光吸收。罗摩辛的可用初级和三级结构的比较精确地定位了单个Thr残基(Thr216),其可能是防止胡萝卜素与Na + -Pumping rhodopsins(NAR)结合的。我们在Dokdonia SP中取代了这种残留物。 PRO95 NAR用含量在XRS的相应位置中发现,并在酮核合成的大肠杆菌菌株中产生了变体的杂皮蛋白酶。与野生型NAR不同,孤立的变体蛋白含有紧密结合的类胡萝卜素和赤内酮。这些类胡萝卜素在THR216GLY-取代的NAR的吸收,圆形二色性和荧光激发光谱中可见,这表明其用作光收集天线。氨基酸取代和结合的类胡萝卜素不影响NAR光循环。我们的研究结果表明,天线功能最近在NAR演化期间丢失,但可以通过网站导向诱变轻松恢复。

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