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利用鱼腥蓝细菌感受态视紫红质进行质子内流。

An inward proton transport using Anabaena sensory rhodopsin.

机构信息

Department of Frontier Materials, Nagoya Institute of Technology, Showa-ku, Nagoya, 466-8555, Japan.

出版信息

J Microbiol. 2011 Feb;49(1):1-6. doi: 10.1007/s12275-011-0547-x. Epub 2011 Mar 3.

Abstract

ATP is synthesized by an enzyme that utilizes proton motive force and thus nature creates various proton pumps. The best understood proton pump is bacteriorhodopsin (BR), an outward-directed light-driven proton pump in Halobacterium salinarum. Many archaeal and eubacterial rhodopsins are now known to show similar proton transport activity. Proton pumps must have a specific mechanism to exclude transport in the reverse direction to maintain a proton gradient, and in the case of BR, a highly hydrophobic cytoplasmic domain may constitute such machinery. Although an inward proton pump has neither been created naturally nor artificially, we recently reported that an inward-directed proton transport can be engineered from a bacterial rhodopsin by a single amino acid replacement Anabaena sensory rhodopsin (ASR) is a photochromic sensor in freshwater cyanobacteria, possessing little proton transport activity. When we replace Asp217 at the cytoplasmic domain (distance ∼ 15 Å from the retinal chromophore) to Glu, ASR is converted into an inward proton transport, driven by absorption of a single photon. FTIR spectra clearly show an increased proton affinity for Glu217, which presumably controls the unusual directionality opposite to normal proton pumps.

摘要

ATP 是由一种利用质子动力势的酶合成的,因此自然界创造了各种质子泵。最被理解的质子泵是菌紫质(BR),一种在盐杆菌中的向外定向的光驱动质子泵。现在已经知道许多古菌和真细菌视紫红质具有类似的质子运输活性。质子泵必须具有特定的机制来排除反向运输,以维持质子梯度,在 BR 的情况下,高度疏水性的细胞质结构域可能构成这种机制。尽管天然或人工都没有创造出向内的质子泵,但我们最近报道,通过单个氨基酸替换,从细菌视紫红质中可以设计出向内的质子转运。蓝藻中的感蓝光视紫红质(ASR)是一种光致变色传感器,具有很少的质子运输活性。当我们在细胞质结构域(距离视黄醛发色团约 15Å)将天冬氨酸 217 替换为谷氨酸时,ASR 被转化为向内的质子转运,由单个光子的吸收驱动。FTIR 光谱清楚地显示出谷氨酸 217 的质子亲和力增加,这可能控制了与正常质子泵相反的异常方向。

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