Das Debanjana, Ainavarapu Sri Rama Koti
Department of Chemical Sciences, Tata Institute of Fundamental Research, Dr. Homi Bhabha Road, Colaba, Mumbai 400005, India.
Inorg Chem. 2021 Jul 5;60(13):9720-9726. doi: 10.1021/acs.inorgchem.1c01007. Epub 2021 Jun 17.
Metalloproteins are an important class of proteins involved in metal uptake, transport, and electron-transfer reactions. Mimicking the active sites of these proteins through miniaturization is an active area of research with applications in biotechnology and medicine. Azurin is a 128-residue copper-binding cupredoxin protein involved in electron-transfer reactions. Previous studies have reported on the copper-binding-induced spectroscopic and structural properties of peptide loops (11 and 13 residues) from azurin. These azurin peptides exhibited novel stoichiometries. However, the underlying mechanism of fluorescence quenching upon copper binding remains to be understood, whether it is due to electron transfer, energy transfer, or both. Here, we report nickel-binding-associated spectroscopic and structural properties of the azurin peptides. They develop a β-turn upon nickel binding as seen in circular dichroism and exhibit electronic transitions centered at 270 and 450 nm. Unlike copper, which exhibited 1:1 and 1:2 peptide:metal stoichiometries, nickel exhibited only a 1:1 stoichiometry. Tryptophan-containing peptides showed fluorescence quenching upon nickel binding, which is due to electron transfer. These results further suggest that the quenching in copper-bound peptides is also due to electron transfer, which could not be ascertained in previous studies. Overall, azurin peptides provide a platform for studying metal-induced structural and spectroscopic properties using transition-metal ions.
金属蛋白是一类重要的蛋白质,参与金属的摄取、运输和电子转移反应。通过小型化模拟这些蛋白质的活性位点是一个活跃的研究领域,在生物技术和医学中有应用。天青蛋白是一种由128个残基组成的结合铜的蓝铜蛋白,参与电子转移反应。先前的研究报道了来自天青蛋白的肽环(11和13个残基)的铜结合诱导的光谱和结构性质。这些天青蛋白肽表现出新颖的化学计量。然而,铜结合后荧光猝灭的潜在机制仍有待了解,无论是由于电子转移、能量转移,还是两者兼有。在这里,我们报道了天青蛋白肽与镍结合相关的光谱和结构性质。如圆二色性所示,它们在镍结合时形成一个β-转角,并表现出以270和450nm为中心的电子跃迁。与铜不同,铜表现出1:1和1:2的肽:金属化学计量,而镍只表现出1:1的化学计量。含色氨酸的肽在镍结合时表现出荧光猝灭,这是由于电子转移。这些结果进一步表明,铜结合肽中的猝灭也是由于电子转移,而这在先前的研究中无法确定。总体而言,天青蛋白肽为利用过渡金属离子研究金属诱导的结构和光谱性质提供了一个平台。