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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >The crystal structure of auracyanin A at 1.85 A... resolution: the structures and functions of auracyanins A and B, two almost identical 'blue' copper proteins, in the photosynthetic bacterium Chloroflexus aurantiacus
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The crystal structure of auracyanin A at 1.85 A... resolution: the structures and functions of auracyanins A and B, two almost identical 'blue' copper proteins, in the photosynthetic bacterium Chloroflexus aurantiacus

机译:分辨率为1.85 A的金黄色花青素A的晶体结构:光合作用的金绿弯曲菌中的两个几乎相同的“蓝色”铜蛋白金黄色素A和B的结构和功能

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摘要

Auracyanins A and B are two closely similar "blue" copper proteins produced by the filamentous anoxygenic phototrophic bacterium Chloroflexus aurantiacus. Both proteins have a water-soluble 140-residue globular domain, which is preceded in the sequence by an N-terminal tail. The globular domains of auracyanins A and B have sequences that are 38% identical. The sequences of the N-terminal tails, on the other hand, are distinctly different, suggesting that auracyanins A and B occupy different membrane sites and have different functions. The crystal structure of auracyanin A has been solved and refined at 1.85 A... resolution. The polypeptide fold is similar to that of auracyanin B (Bond et al. in J Mol Biol 306:47-67, 2001), but the distribution of charged and polar residues on the molecular surface is different. The Cu-site dimensions of the two auracyanins are identical. This is unexpected, since auracyanin A has a shorter polypeptide loop between two of the Cu-binding residues, and the two proteins have significantly different EPR, UV-visible and resonance Raman spectra. The genes for the globular domains of auracyanins A and B have been cloned in a bacterial expression system, enabling purification of large quantities of protein. It is shown that auracyanin A is expressed only when C. aurantiacus cells are grown in light, whereas auracyanin B is expressed under dark as well as light conditions. The inference is that auracyanin A has a function in photosynthesis, and that auracyanin B has a function in aerobic respiration.
机译:花青素A和B是由丝状产氧光养细菌Chloroflexus aurantiacus产生的两个非常相似的“蓝色”铜蛋白。两种蛋白都有一个水溶性的140残基的球形结构域,该结构域在序列的N端尾部之前。花青素A和B的球状结构域具有38%相同的序列。另一方面,N-末端尾巴的序列明显不同,这表明花青素A和B占据不同的膜位点并具有不同的功能。已解决并以1.85 A ...的分辨率精制了花青素A的晶体结构。多肽的折叠类似于金黄色素B的折叠(Bond等人在J Mol Biol 306:47-67,2001),但是带电和极性残基在分子表面上的分布是不同的。两种金黄色花色素的Cu位点尺寸相同。这是出乎意料的,因为金黄色素A在两个Cu结合残基之间具有较短的多肽环,并且两个蛋白质具有显着不同的EPR,UV-可见和共振拉曼光谱。已在细菌表达系统中克隆了花青素A和B球状结构域的基因,从而能够纯化大量蛋白质。结果表明,仅在光下培养金黄色葡萄球菌时,才会表达花青素A,而在黑暗和光照条件下,花青素B都会表达。推测是,花青素A具有光合作用的功能,而花青素B具有有氧呼吸的功能。

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