Lee Yong-Hwan, Tanner John J, Larson John D, Henzl Michael T
Department of Chemistry, University of Missouri, Columbia, Missouri 65211, USA.
Biochemistry. 2004 Aug 10;43(31):10008-17. doi: 10.1021/bi0492915.
In model peptide systems, Ca2+ affinity is maximized in EF-hand motifs containing four carboxylates positioned on the +x and -x and +z and -z axes; introduction of a fifth carboxylate ligand reduces the affinity. However, in rat beta-parvalbumin, replacement of Ser-55 with aspartate heightens divalent ion affinity [Henzl, M. T., et al. (1996) Biochemistry 35, 5856-5869]. The corresponding alpha-parvalbumin variant (S55D/E59D) likewise exhibits elevated affinity [Henzl, M. T., et al. (2003) Anal. Biochem. 319, 216-233]. To determine whether these mutations produce a variation on the archetypal EF-hand coordination scheme, we have obtained high-resolution X-ray crystallographic data for alpha S55D/E59D. As anticipated, the aspartyl carboxylate replaces the serine hydroxyl at the +z coordination position. Interestingly, the Asp-59 carboxylate abandons the role it plays as an outer sphere ligand in wild-type rat beta, rotating away from the Ca2+ and, instead, forming a hydrogen bond with the amide of Glu-62. Superficially, the coordination sphere in the CD site of alpha S55D/E59D resembles that in the EF site. However, the orientation of the Asp-59 side chain is predicted to stabilize the D-helix, which may contribute to the heightened divalent ion affinity. DSC data indicate that the alpha S55D/E59D variant retains the capacity to bind 1 equiv of Na+. Consistent with this finding, when binding measurements are conducted in K(+)-containing buffer, divalent ion affinity is markedly higher. In 0.15 M KCl and 0.025 M Hepes-KOH (pH 7.4) at 5 degrees C, the macroscopic Ca2+ binding constants are 1.8 x 10(10) and 2.0 x 10(9) M(-1). The corresponding Mg2+ binding constants are 2.7 x 10(6) and 1.2 x 10(5) M(-1).
在模型肽系统中,当EF手基序中位于+x和 -x以及+z和 -z轴上的四个羧酸盐存在时,Ca2+亲和力达到最大值;引入第五个羧酸盐配体会降低亲和力。然而,在大鼠β-小白蛋白中,用天冬氨酸取代Ser-55会提高二价离子亲和力[亨兹尔,M. T.等人(1996年)《生物化学》35卷,5856 - 5869页]。相应的α-小白蛋白变体(S55D/E59D)同样表现出亲和力升高[亨兹尔,M. T.等人(2003年)《分析生物化学》319卷,216 - 233页]。为了确定这些突变是否会在典型的EF手配位模式上产生变化,我们获得了α S55D/E59D的高分辨率X射线晶体学数据。正如预期的那样,天冬氨酸羧酸盐在+z配位位置取代了丝氨酸羟基。有趣的是,Asp-59羧酸盐放弃了它在野生型大鼠β中作为外层球配体所起的作用,从Ca2+处旋转开,转而与Glu-62的酰胺形成氢键。表面上,α S55D/E59D的CD位点中的配位球类似于EF位点中的配位球。然而,Asp-59侧链的取向预计会稳定D螺旋,这可能有助于提高二价离子亲和力。差示扫描量热法(DSC)数据表明,α S55D/E59D变体保留了结合1当量Na+的能力。与此发现一致,当在含K(+)的缓冲液中进行结合测量时,二价离子亲和力明显更高。在5℃下的0.15 M KCl和0.025 M Hepes - KOH(pH 7.4)中,宏观Ca2+结合常数分别为1.8×10(10)和2.0×10(9) M(-1)。相应的Mg2+结合常数分别为2.7×10(6)和1.2×10(5) M(-1)。