Kiger Laurent, Vasseur Corinne, Domingues-Hamdi Elisa, Truan Gilles, Marden Michael C, Baudin-Creuza Véronique
INSERM, U779, University Paris 11, 78 rue du General Leclerc, 94275 Le Kremlin Bicêtre, France.
Biochim Biophys Acta. 2014 Jan;1840(1):277-87. doi: 10.1016/j.bbagen.2013.09.015. Epub 2013 Sep 21.
AHSP is an erythroid molecular chaperone of the α-hemoglobin chains (α-Hb). Upon AHSP binding, native ferric α-Hb undergoes an unprecedented structural rearrangement at the heme site giving rise to a 6th coordination bond with His(E7).
Recombinant AHSP, WT α-Hb:AHSP and α-Hb(HE7Q):AHSP complexes were expressed in Escherichia coli. Thermal denaturation curves were measured by circular dichroism for the isolated α-Hb and bound to AHSP. Kinetics of ligand binding and redox reactions of α-Hb bound to AHSP as well as α-Hb release from the α-Hb:AHSP complex were measured by time-resolved absorption spectroscopy.
AHSP binding to α-Hb is kinetically controlled to prevail over direct binding with β-chains and is also thermodynamically controlled by the α-Hb redox state and not the liganded state of the ferrous α-Hb. The dramatic instability of isolated ferric α-Hb is greatly decreased upon AHSP binding. Removing the bis-histidyl hexacoordination in α-HbH58(E7)Q:AHSP complex reduces the stabilizing effect of AHSP binding. Once the ferric α-Hb is bound to AHSP, the globin can be more easily reduced by several chemical and enzymatic systems compared to α-Hb within the Hb-tetramer.
α-Hb reduction could trigger its release from AHSP toward its final Hb β-chain partner producing functional ferrous Hb-tetramers. This work indicates a preferred kinetic pathway for Hb-synthesis.
The cellular redox balance in Hb-synthesis should be considered as important as the relative proportional synthesis of both Hb-subunits and their heme cofactor. The in vivo role of AHSP is discussed in the context of the molecular disorders observed in thalassemia.
AHSP是α-血红蛋白链(α-Hb)的一种红系分子伴侣。AHSP结合后,天然高铁α-Hb在血红素位点发生前所未有的结构重排,形成与组氨酸(His(E7))的第六个配位键。
重组AHSP、野生型α-Hb:AHSP和α-Hb(HE7Q):AHSP复合物在大肠杆菌中表达。通过圆二色性测量分离的α-Hb及其与AHSP结合后的热变性曲线。通过时间分辨吸收光谱测量与AHSP结合的α-Hb的配体结合和氧化还原反应动力学以及α-Hb从α-Hb:AHSP复合物中的释放。
AHSP与α-Hb的结合在动力学上受到控制,优先于与β链的直接结合,并且在热力学上也受α-Hb氧化还原状态而非亚铁α-Hb的配体状态控制。AHSP结合后,分离出的高铁α-Hb的显著不稳定性大大降低。去除α-HbH58(E7)Q:AHSP复合物中的双组氨酸六配位会降低AHSP结合的稳定作用。一旦高铁α-Hb与AHSP结合,与Hb四聚体内的α-Hb相比,球蛋白可以更容易地被几种化学和酶系统还原。
α-Hb的还原可触发其从AHSP向其最终的Hbβ链伴侣释放,从而产生功能性亚铁Hb四聚体。这项工作表明了Hb合成的一种优先动力学途径。
Hb合成中的细胞氧化还原平衡应被视为与Hb亚基及其血红素辅因子的相对比例合成同样重要。在β地中海贫血中观察到的分子紊乱的背景下讨论了AHSP的体内作用。