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Is salivary histatin 5 a metallopeptide?

机译:唾液组蛋白5是金属肽吗?

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Histatins are small histidine-rich salivary polypeptides which exhibit antimicrobial activity against Candida albicans. This antimicrobial activity has been ascribed in part to a high content of basic amino acids. However, unlike most other antimicrobial proteins histatins have a high content of histidine, tyrosine and acidic amino acids known to participate in metal ion coordination. This study was conducted to test whether histatin 5 could bind zinc and copper which are metals present in salivary secretions and whole saliva. Physical binding parameters and spectral properties of zinc- and copper-histatin complexes were investigated in order to obtain direct evidence of these interactions. A spectrophotometric competition assay using the metallochromic indicator murexide showed that histatin 5 dissociates metal indicator complexes containing zinc or copper ions. Absorption spectra of histatin 5 at increasing copper chloride concentrations resulted in higher absorbance in the 230-280 nm wavelength range and this spectral change was saturated at a peptide: metal molar ratio of approx. 1:1. A corresponding band was observed in the visible range of the spectrum with a maximum and molar extinction coefficient corresponding to that of copper binding to an ATCUN motif. Quantitative assessment of zinc and coper binding to histatin 5 using isothermal titration calorimetry revealed at least one high affinity site for each metal, with binding constants of 1.2 * 10~5 and 2.6 * 10~7 M~(-1), respectively. These results indicate that histatin 5 exhibits metallopeptide-like properties. The precise biological significance of this has not yet been established but histatins may contribute significantly to salivary metal binding capacity.
机译:Histatins是富含组氨酸的唾液多肽,对白念珠菌具有抗菌活性。这种抗微生物活性部分归因于高含量的碱性氨基酸。但是,与大多数其他抗菌蛋白不同,组蛋白具有已知参与金属离子配位的高组氨酸,酪氨酸和酸性氨基酸含量。进行该研究以测试组蛋白5是否可以结合唾液分泌物和整个唾液中存在的金属锌和铜。为了获得这些相互作用的直接证据,研究了锌-和铜-组蛋白复合物的物理结合参数和光谱性质。使用金属致变色指示剂莫来塞德的分光光度竞争试验表明,组蛋白5使含锌或铜离子的金属指示剂络合物解离。在氯化铜浓度增加时,组蛋白5的吸收光谱导致在230-280 nm波长范围内有更高的吸收度,并且该光谱变化在肽与金属的摩尔比约为5%时饱和。 1:1在光谱的可见范围内观察到相应的带,具有与铜结合到ATCUN基序的最大和摩尔消光系数。用等温滴定热法定量评估锌和铜与组蛋白5的结合,发现每种金属至少有一个高亲和力位点,结合常数分别为1.2 * 10〜5和2.6 * 10〜7 M〜(-1)。这些结果表明组蛋白5表现出类似金属肽的性质。尚未确定其确切的生物学意义,但组蛋白可能对唾液金属的结合能力有重大贡献。

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