Sun G, Budde R J
Department of Neuro-Oncology, University of Texas, M. D. Anderson Cancer Center, Houston 77030, USA.
Biochemistry. 1999 Apr 27;38(17):5659-65. doi: 10.1021/bi982793w.
In addition to a magnesium ion needed to form the ATP-Mg complex, we have previously determined that at least one more free Mg2+ ion is essential for the activation of the protein tyrosine kinase, Csk [Sun, G., and Budde, R. J. A. (1997) Biochemistry 36, 2139-2146]. In this paper, we report that several divalent metal cations, such as Mn2+, Co2+, Ni2+, and Zn2+ bind to the second Mg2+-binding site of Csk with up to 13200-fold higher affinity than Mg2+. This finding enabled us to substitute the free Mg2+ at this site with Mn2+, Co2+, Ni2+, or Zn2+ while keeping ATP saturated with Mg2+ to study the role of the free metal cation in Csk catalysis. Substitution by these divalent metal cations resulted in varied levels of Csk activity, with Mn2+ even more effective than Mg2+. Co2+ and Ni2+ supports reduced levels of Csk activity compared to Mg2+. Zn2+ has the highest affinity for the second Mg2+-binding site of Csk at 0.65 microM, but supports no kinase activity, acting as a dead-end inhibitor. The inhibition by Zn2+ is reversible and competitive against free Mg2+, noncompetitive against ATP-Mg, and mixed against the phosphate accepting substrate, polyE4Y, significantly increasing the affinity for this substrate. Substitution of the free Mg2+ with Mn2+, Co2+, or Ni2+ also results in lower Km values for the peptide substrate. These results suggest that the divalent metal activator is an important element in determining the affinity between Csk and the phosphate-accepting substrate.
除了形成ATP-Mg复合物所需的镁离子外,我们之前已经确定,至少还有一个游离Mg2+离子对于蛋白酪氨酸激酶Csk的激活至关重要[Sun, G., and Budde, R. J. A. (1997) Biochemistry 36, 2139 - 2146]。在本文中,我们报道了几种二价金属阳离子,如Mn2+、Co2+、Ni2+和Zn2+,它们与Csk的第二个Mg2+结合位点结合,其亲和力比Mg2+高13200倍。这一发现使我们能够用Mn2+、Co2+、Ni2+或Zn2+替代该位点的游离Mg2+,同时保持ATP被Mg2+饱和,以研究游离金属阳离子在Csk催化中的作用。用这些二价金属阳离子替代导致Csk活性水平不同,其中Mn2+甚至比Mg2+更有效。与Mg2+相比,Co2+和Ni2+支持的Csk活性水平降低。Zn2+对Csk的第二个Mg2+结合位点具有最高亲和力,为0.65 microM,但不支持激酶活性,起终末抑制剂的作用。Zn2+的抑制作用是可逆的,对游离Mg2+具有竞争性,对ATP-Mg无竞争性,对磷酸接受底物聚E4Y具有混合型抑制作用,显著增加了对该底物的亲和力。用Mn2+、Co2+或Ni2+替代游离Mg2+也会导致肽底物的Km值降低。这些结果表明,二价金属激活剂是决定Csk与磷酸接受底物之间亲和力的重要因素。