Department of Biochemistry and Molecular Biology, University of Kansas Medical Center, Kansas City, Kansas 66160, USA.
Protein Sci. 2013 Apr;22(4):444-54. doi: 10.1002/pro.2226. Epub 2013 Feb 21.
For over four decades free Mg(2+) ions, that is, those in excess of MgATP, have been reported to affect a wide variety of properties of phosphorylase kinase (PhK), including its affinity for other molecules, proteolysis, chemical crosslinking, phosphorylation, binding to certain monoclonal antibodies, and activity, which is stimulated. Additionally, for over three decades Mg(2+) has been known to act synergistically with Ca(2+) , another divalent activator of PhK, to affect even more properties of the enzyme. During all of this time, however, no study has been performed to determine the overall effects of free Mg(2+) ions on the physical properties of PhK, even though the effects of Ca(2+) ions on PhK's properties are well documented. In this study, changes in the physicochemical properties of PhK induced by Mg(2+) under nonactivating (pH 6.8) and activating (pH 8.2) conditions were investigated by circular dichroism spectroscopy, zeta potential analyses, dynamic light scattering, second derivative UV absorption, negative stain electron microscopy, and differential chemical crosslinking. The effects of the activator Mg(2+) on some of the properties of PhK measured by these techniques were found to be quite different at the two pH values, and displayed both differences and similarities with the effects previously reported to be induced by the activator Ca(2+) (Liu et al., Protein Sci 2008;17:2111-2119). The similarities may reflect the fact that both cations are activators, and foremost among their similarities is the dramatically less negative zeta potential induced by their binding to PhK.
四十多年来,游离的 Mg(2+) 离子(即超过 MgATP 的部分)被报道会影响磷酸化酶激酶 (PhK) 的多种性质,包括其对其他分子的亲和力、蛋白水解、化学交联、磷酸化、与某些单克隆抗体的结合以及活性,这些性质均受到刺激。此外,三十多年来,Mg(2+) 已被证明与 Ca(2+) 协同作用,Ca(2+) 是 PhK 的另一种二价激活剂,可进一步影响酶的更多性质。然而,在此期间,尽管 Ca(2+) 离子对 PhK 性质的影响已有详细记录,但没有研究对游离 Mg(2+) 离子对 PhK 物理性质的总体影响进行测定。在本研究中,通过圆二色性光谱、ζ 电位分析、动态光散射、二级紫外吸收、负染电子显微镜和差示化学交联等技术,研究了非激活(pH 6.8)和激活(pH 8.2)条件下 Mg(2+) 对 PhK 理化性质的影响。在这两种 pH 值下,用这些技术测量的激活剂 Mg(2+) 对 PhK 某些性质的影响有很大的不同,并且与先前报道的由激活剂 Ca(2+) 引起的影响既有差异又有相似之处(Liu 等人,Protein Sci 2008;17:2111-2119)。这些相似性可能反映了这样一个事实,即两种阳离子都是激活剂,它们之间最相似的是与 PhK 结合后导致 ζ 电位显著降低。