首页> 外文OA文献 >Cloning and characterization of a caesalpinoid (\u3ci\u3eChamaecrista fasciculata\u3c/i\u3e) hemoglobin: The structural transition from a nonsymbiotic hemoglobin to a leghemoglobin
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Cloning and characterization of a caesalpinoid (\u3ci\u3eChamaecrista fasciculata\u3c/i\u3e) hemoglobin: The structural transition from a nonsymbiotic hemoglobin to a leghemoglobin

机译:caesalpinoid(\ u3ci \ u3eChamaecrista fasciculata \ u3c / i \ u3e)血红蛋白的克隆和鉴定:从非共生血红蛋白到豆血红蛋白的结构转变

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摘要

Nonsymbiotic hemoglobins (nsHbs) and leghemoglobins (Lbs) are plant proteins that can reversibly bind O2 and other ligands. The nsHbs are hexacoordinate and appear to modulate cellular concentrations of NO and maintain energy levels under hypoxic conditions. The Lbs are pentacoordinate and facilitate the diffusion of O2 to symbiotic bacteroids within legume root nodules. Multiple lines of evidence suggest that all plant Hbs evolved from a common ancestor and that Lbs originated from nsHbs. However, little is known about the structural intermediates that occurred during the evolution of pentacoordinate Lbs from hexacoordinate nsHbs. We have cloned and characterized a Hb (ppHb) from the root nodules of the ancient caesalpinoid legume Chamaecrista fasciculata. Protein sequence, modeling data, and spectral analysis indicated that the properties of ppHb are intermediate between that of nsHb and Lb, suggesting that ppHb resembles a putative ancestral Lb. Predicted structural changes that appear to have occurred during the nsHb to Lb transition were a compaction of the CD-loop and decreased mobility of the distal His inhibiting its ability to coordinate directly with the heme-Fe, leading to a pentacoordinate protein. Other predicted changes include shortening of the N- and C-termini, compaction of the protein into a globular structure, disappearance of positive charges outside the heme pocket and appearance of negative charges in an area located between the N- and C-termini. A major consequence for some of these changes appears to be the decrease in O2-affinity of ancestral nsHb, which resulted in the origin of the symbiotic function of Lbs.
机译:非共生血红蛋白(nsHbs)和豆球蛋白(Lbs)是植物蛋白,可以可逆地结合O2和其他配体。 nsHbs是六坐标的,似乎在缺氧条件下调节细胞的NO浓度并保持能量水平。 Lbs是五配位的,并促进O2扩散到豆类根瘤内的共生类细菌。多方面的证据表明,所有植物的Hb都是从共同的祖先进化而来的,而Lb则是从nsHb起源的。但是,人们对五配位nsHbs从五配位Lbs进化过程中发生的结构中间体知之甚少。我们已经从古代盲肠类豆科植物Chamaecrista fasciculata的根瘤中克隆并鉴定了Hb(ppHb)。蛋白质序列,建模数据和光谱分析表明,ppHb的特性介于nsHb和Lb的中间,这表明ppHb类似于假定的祖先Lb。预测的在nsHb向Lb过渡期间发生的结构变化是CD环的紧缩和远端His的活动性降低,从而抑制了其与血红素-Fe直接结合的能力,从而导致了五配位蛋白。其他预计的变化包括N和C末端的缩短,蛋白质紧实成球状结构,血红素袋外部正电荷的消失以及N和C末端之间区域的负电荷的出现。其中一些变化的主要结果似乎是祖先nsHb的O2亲和力降低,这导致Lbs共生功能的起源。

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