Clinical Proteomics Unit, Division of Molecular Medicine, St. John's Research Institute, St. John's National Academy of Health Sciences, 100ft Road, Koramangala, Bangalore, 560034, India.
Manipal Hospital, Old Airport Road, Bangalore, 560017, India.
Chembiochem. 2018 Mar 16;19(6):633-640. doi: 10.1002/cbic.201700491. Epub 2018 Feb 9.
Electrostatic attraction between α and β globin chains holds the subunits together in a tetrameric human hemoglobin molecule (α β ). Compared to normal globin chains, the affinity of a mutant chain to its partner globin might be different in genetic variants of hemoglobin. This leads to an unequal abundance of normal and variant hemoglobin in heterozygous samples, even though the rates of synthesis of both the normal and variant chains are the same. The aforementioned affinities across various globin chains might be assessed by quantification of the different forms of the tetramers present in a variant hemoglobin sample. In the present study, by exploiting mass differences between globin chains, differently populated hemoglobin tetramers present in hemoglobin (Hb) Beckman, a β variant (βA135D), were structurally characterized. The relative populations of dissymmetric tetramers (α β , α ββ , and α β ) indicated that both β and β have different affinities towards the α globin chain. Conformational dynamics analyzed from hydrogen/deuterium exchange kinetics of the three peptide fragments of Hb Beckman in its oxy state displayed molecular insight into its functional abnormality. However, in comparison to normal hemoglobin (α β ), the point mutation did not show any change in the collision cross-sections of the functionally active conformers of the variant hemoglobin molecules (α ββ and α β ).
α 和 β 球蛋白链之间的静电吸引将亚基保持在一起,形成四聚体人血红蛋白分子(αβ)。与正常球蛋白链相比,突变链与其伴侣球蛋白的亲和力在血红蛋白的遗传变异中可能不同。这导致杂合样本中正常和变异血红蛋白的丰度不平衡,尽管正常和变异链的合成速率相同。通过定量分析变异血红蛋白样本中存在的不同四聚体形式,可以评估各种球蛋白链之间的上述亲和力。在本研究中,通过利用球蛋白链之间的质量差异,对血红蛋白(Hb)Beckman 中的不同人群血红蛋白四聚体(αβ、αββ 和 αβ)进行了结构表征。不对称四聚体(αβ、αββ 和 αβ)的相对丰度表明,β 和 β 对α 球蛋白链具有不同的亲和力。对 Hb Beckman 中三个肽段在氧合状态下的氢/氘交换动力学进行分析,显示了其功能异常的分子见解。然而,与正常血红蛋白(αβ)相比,该点突变并未显示变异血红蛋白分子(αββ和αβ)的功能活性构象的碰撞截面有任何变化。