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Interaction of hemoglobin and copper nanoparticles:implications in hemoglobinopathy

机译:血红蛋白与铜纳米颗粒的相互作用:对血红蛋白病的意义

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Here we study the interaction of copper nanoparticles (CuNPs)with different variants of hemoglobin (Hb).The study reports analysis with HbAO (the major component of human Hb)and HbA2 (a variant that is associated with beta-thalassemia).In the case of HbAO,the major fraction of human Hb,the CuNPs trigger protein aggregation,and this is followed by the precipitation of the protein.The aggregative response is largely attenuated in the case of HbA2.The difference between the two variants is thus amenable to detection by simple optical methods.We verified that CuNPs co-precipitated with specific Hb variants using atomic absorption spectroscopy (AAS)and high-pressure liquid chromatography (HPLC).An associated observation was the reversal of zeta potential of HbAO induced by the CuNPs (from -11 mV to +13 mV).Dynamic light-scattering (DLS)studies indicated that in the case of HbAO,protein initially broke the nanoclusters into smaller sizes (4 nm),and this was followed by a gradual increase in cluster size.Assays of heme peroxidase activity indicated that the protein unfolded during the process.It is suggested that interaction between the CuNPs and HbAO stimulates the molten-globule state of the protein,leading to the onset of such an aggregative pathway.When studied for other variants,HbE,a common mutant of Hb,showed similar aggregative behavior,and on the other hand,rare variants such as HbC tended to remain in solution.A suitable scaling up of the approach may have important implications in screening hemoglobinopathies such as beta-thalassemia.
机译:在这里,我们研究了铜纳米颗粒(CuNPs)与血红蛋白(Hb)不同变体的相互作用。该研究报告了HbAO(人Hb的主要成分)和HbA2(与β地中海贫血有关的变体)的分析。在HbAO的情况下,人类Hb的主要组成部分CuNPs触发蛋白质聚集,随后蛋白质沉淀.HbA2的聚集反应大大减弱,因此两个变异体之间的差异可以接受我们用原子吸收光谱法(AAS)和高压液相色谱(HPLC)验证了CuNPs与特定的Hb变体共沉淀。相关的观察是CuNPs诱导的HbAO的Zeta电位逆转(从-11 mV到+13 mV)。动态光散射(DLS)研究表明,在HbAO的情况下,蛋白质最初将纳米团簇破碎成较小的尺寸(4 nm),然后逐渐增加血红素过氧化物酶活性的测定表明该蛋白在此过程中展开。这表明CuNP与HbAO之间的相互作用刺激了该蛋白的熔融球状状态,从而导致了这种聚集途径的开始。其他变体,HbE,一种常见的Hb突变体,表现出相似的聚集行为,另一方面,稀有的变体,如HbC则倾向于保留在溶液中。适当扩大该方法可能对筛查血红蛋白病(例如β)具有重要意义地中海贫血。

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