INSERM U779, University of Paris XI, 78 rue du Général Leclerc, 94275 Le Kremlin-Bicêtre, France.
Clin Biochem. 2009 Dec;42(18):1818-23. doi: 10.1016/j.clinbiochem.2009.05.011. Epub 2009 May 29.
To determine the role of the alpha-hemoglobin stabilizing protein (AHSP) in the clinical expression of alpha-hemoglobin (alpha-Hb) variants described as unstable, ten alpha chain variants have been studied with their chaperone. AHSP specifically binds free alpha-Hb to form a soluble heterodimer until it is replaced by the beta-Hb partner. In this way, AHSP prevents the precipitation of free alpha chains which might damage the membrane of erythrocyte. AHSP specifically recognizes the G and H helices of alpha-Hb that are also involved in the alpha1beta1 dimer interface. AHSP may act as a modifier in alpha-thalassemias and lead to the thalassemic phenotypes observed in certain unstable alpha-Hb variants previously considered unstable. The different abnormalities of the alpha chain were located either in the G helix: Hb Bronovo alpha103(G10)His-->Leu, Hb Sallanches alpha104(G11)Cys-->Tyr, Hb Oegstgeest alpha104(G11)Cys-->Ser, Hb Bleuland alpha108(G15)Thr-->Asn, Hb Suan Dok alpha109(G16)Leu-->Arg and as yet undescribed alpha109(G16)Leu-->Gln, in the GH corner: Hb Foggia alpha117(GH5)Phe-->Ser, or in the H helix: Hb Groene Hart alpha119(H2)Pro-->Ser, Hb Diamant alpha119(H2)Pro-->Leu, Hb Utrecht alpha129(H12)Leu-->Pro.
These different mutated alpha-Hb were co-expressed with their chaperone AHSP as a fusion protein with glutathione S-transferase (GST) and analyzed by SDS-PAGE.
In all cases the proteins were normally synthesized in bacteria as shown by an expression level of mutated GST-alpha-Hbs similar to that observed for normal GST-alpha-Hb. In contrast, the recovered quantities of purified mutated GST-alpha-Hbs associated with AHSP are highly variable. An extreme case is GST-alpha-Hb(Utrecht) which was only found at trace levels.
One can assume that different mechanisms may be responsible for the amount of abnormal Hb recovered, such as a highly unstable alpha chain or an impaired formation of the complex AHSP/alpha-Hb or a modification of the alphabeta dimer formation.
确定α-血红蛋白稳定蛋白 (AHSP) 在不稳定描述的α-血红蛋白 (α-Hb) 变体的临床表达中的作用,研究了 10 种α 链变体及其伴侣。AHSP 特异性地将游离的 α-Hb 结合形成可溶性异二聚体,直到被 β-Hb 伴侣取代。通过这种方式,AHSP 防止游离的 α 链沉淀,否则游离的 α 链可能会破坏红细胞的膜。AHSP 特异性识别 α-Hb 的 G 和 H 螺旋,这些螺旋也参与 α1β1 二聚体界面。AHSP 可能作为α-地中海贫血的修饰因子,并导致以前认为不稳定的某些不稳定α-Hb 变体观察到的地中海贫血表型。α 链的不同异常位于 G 螺旋中:Hb Bronovo alpha103(G10)His-->Leu、Hb Sallanches alpha104(G11)Cys-->Tyr、Hb Oegstgeest alpha104(G11)Cys-->Ser、Hb Bleuland alpha108(G15)Thr-->Asn、Hb Suan Dok alpha109(G16)Leu-->Arg 和尚未描述的 alpha109(G16)Leu-->Gln、在 GH 角中:Hb Foggia alpha117(GH5)Phe-->Ser,或在 H 螺旋中:Hb Groene Hart alpha119(H2)Pro-->Ser、Hb Diamant alpha119(H2)Pro-->Leu、Hb Utrecht alpha129(H12)Leu-->Pro。
这些不同的突变 α-Hb 与它们的伴侣 AHSP 一起作为谷胱甘肽 S-转移酶 (GST) 的融合蛋白共同表达,并通过 SDS-PAGE 进行分析。
所有情况下,突变的 GST-α-Hb 都像正常的 GST-α-Hb 一样,在细菌中正常合成,表达水平相似。相比之下,与 AHSP 一起回收的纯化突变 GST-α-Hb 的量变化很大。一个极端的例子是 GST-α-Hb(Utrecht),它只在痕量水平下被发现。
可以假设不同的机制可能导致回收的异常 Hb 量不同,例如高度不稳定的 α 链或 AHSP/α-Hb 复合物的形成受损或 αβ 二聚体形成的修饰。