首页> 美国卫生研究院文献>Biochemical Journal >Modified high-affinity binding of Ni2+ Ca2+ and Zn2+ to natural mutants of human serum albumin and proalbumin.
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Modified high-affinity binding of Ni2+ Ca2+ and Zn2+ to natural mutants of human serum albumin and proalbumin.

机译:Ni2 +Ca2 +和Zn2 +与人血清白蛋白和原白蛋白的天然突变体的修饰高亲和力结合。

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摘要

High-affinity binding of radioactive Ni2+, Ca2+ and Zn2+ to six genetic albumin variants and to normal albumin isolated from the same heterozygote carriers was studied by equilibrium dialysis at pH 7.4. The three cations bind differently to albumin. Ni2+ binds to a site in the N-terminal region of the protein which is partially blocked by the presence of a propeptide as in proalbumin (proAlb) Varese (Arg-2-->His), proAlb Christchurch (Arg-1-->Gln) and proAlb Blenheim (Asp1-->Val) and by the presence of only an extra Arg residue (Arg-1) as in Arg-Alb and albumin (Alb) Redhill. The association constants are decreased by more than one order of magnitude in these cases, suggesting biological consequences for the ligand. The additional structural changes in Alb Redhill have no effect on Ni2+ binding. Finally, the modification of Alb Blenheim (Asp1-->Val) reduces the binding constant to 50%. Ca2+ binding is decreased to about 60-80% by the presence of a propeptide and the mutation Asp1-->Val. Arg-1 alone does not affect binding, whereas Alb Redhill binds Ca2+ more strongly than the normal protein (125%). In contrast with binding of Ni2+ and Ca2+, albumin shows heterogeneity with regard to binding of Zn2+, i.e. the number of high-affinity sites was calculated to be, on average, 0.43. The binding constant for Zn2+ is increased to 125% in the case of proAlb Varese, decreased to 50-60% for proAlb Christchurch and Alb Redhill but is normal for proAlb Blenheim, Alb Blenheim and Arg-Alb. The effects of the mutations on binding of Ca2+ and Zn2+ indicate that primary binding, when operative, is to as yet unidentified sites in domain I of the albumin molecule.
机译:通过在pH 7.4下进行平衡透析,研究了放射性Ni2 +,Ca2 +和Zn2 +与六个遗传白蛋白变体以及与从同一杂合子载体分离的正常白蛋白的高亲和力结合。这三个阳离子与白蛋白的结合不同。 Ni2 +结合到蛋白质N末端区域的位点,该部分被原蛋白的存在部分阻断,如原蛋白(proAlb)瓦雷泽(Arg-2-> His),proAlb Christchurch(Arg-1-> Gln)和proAlb Blenheim(Asp1-> Val),并且仅存在一个额外的Arg残基(Arg-1),如Arg-Alb和白蛋白(Alb)Redhill。在这些情况下,缔合常数降低了一个数量级以上,表明对配体的生物学影响。 Alb Redhill中的其他结构变化对Ni2 +结合没有影响。最后,Alb Blenheim(Asp1-> Val)的修饰将结合常数降低至50%。由于前肽的存在和突变Asp1-> Val,Ca2 +的结合降低到约60-80%。单独的Arg-1不会影响结合,而Alb Redhill结合Ca2 +的强度比正常蛋白质(125%)更强。与Ni 2+和Ca 2+的结合相反,白蛋白在Zn 2+的结合方面显示出异质性,即,高亲和力位点的数量平均计算为0.43。对于ProAlb Varese,Zn2 +的结合常数增加到125%,对于ProAlb Christchurch和Alb Redhill,降低到50-60%,但是对于ProAlb Blenheim,Alb Blenheim和Arg-Alb是正常的。突变对Ca2 +和Zn2 +结合的影响表明,当有效时,主要结合是与白蛋白分子结构域I中尚未确定的位点结合。

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