Kramer P, Nowak T
Department of Chemistry, University of Notre Dame, College of Science, IN 46556.
J Inorg Biochem. 1988 Feb;32(2):135-51. doi: 10.1016/0162-0134(88)80022-9.
The exchange inert coordination complexes, Cr(H2O)4GDP, Cr(H2O)4GTP, Cr(NH3)4GDP, Cr(NH3)4GTP, Co(NH3)4GDP, and Co(NH3)4GTP have been synthesized and characterized. The lambda and delta coordination isomers of Cr(H2O)4GDP, Cr(NH3)4GDP, and the four Cr(H2O)4GTP isomers have been separated by reverse phase HPLC and characterized by their CD spectra. While the isomers of Co(NH3)4GTP have not been successfully separated, 31P NMR spectroscopy reveals the presence of the lambda and delta forms. The complexes, Cr(H2O)4GDP, Co(NH3)4GDP, Cr(H2O)4GTP, and Co(NH3)4GTP, are linear competitive inhibitors of avian phosphoenolpyruvate carboxykinase. The Ki values of 30 microM, 540 microM, 40 microM, and 12 microM, respectively, were determined for these complexes using Mn-IDP as the nucleotide substrate in the phosphoenolpyruvate carboxylation direction or Mn-ITP as nucleotide substrate for the oxalacetate decarboxylation reaction. The lambda and delta isomers of Cr(H2O)4 GDP show little specificity (a twofold maximum difference in Ki) for the enzyme. The isomeric forms of Cr(H2O)4 GTP demonstrate no observed stereoselectivity of interaction with the enzyme. All of the complexes tested, except for Cr(NH3)4GDP and Co(NH3)4GDP, which have larger Ki values, are good substrate analogs for P-enolpyruvate carboxykinase. When the substrate is Mn-GTP, fixed at 0.2 mM at pH 6.0, enzyme activity is stimulated two- to two and a half-fold by Cr(H2O)4GTP. A Dixon plot reveals that the stimulatory effect is saturated at 0.4 mM Cr(H2O)4GTP. The interaction of the enzyme with Cr(H2O)4GTP appears to produce a "memory" effect which is manifest with guanosine nucleotide substrates, but which is not observed with the alternative substrate Mn-ITP.
已合成并表征了交换惰性配位络合物Cr(H₂O)₄GDP、Cr(H₂O)₄GTP、Cr(NH₃)₄GDP、Cr(NH₃)₄GTP、Co(NH₃)₄GDP和Co(NH₃)₄GTP。通过反相高效液相色谱法分离了Cr(H₂O)₄GDP、Cr(NH₃)₄GDP的λ和δ配位异构体以及四种Cr(H₂O)₄GTP异构体,并通过它们的圆二色光谱进行了表征。虽然Co(NH₃)₄GTP的异构体尚未成功分离,但³¹P核磁共振光谱显示存在λ和δ形式。络合物Cr(H₂O)₄GDP、Co(NH₃)₄GDP、Cr(H₂O)₄GTP和Co(NH₃)₄GTP是禽磷酸烯醇丙酮酸羧激酶的线性竞争性抑制剂。在磷酸烯醇丙酮酸羧化方向上使用Mn-IDP作为核苷酸底物或在草酰乙酸脱羧反应中使用Mn-ITP作为核苷酸底物,分别测定了这些络合物的Ki值为30微摩尔/升、540微摩尔/升、40微摩尔/升和12微摩尔/升。Cr(H₂O)₄GDP的λ和δ异构体对该酶显示出很小的特异性(Ki的最大差异为两倍)。Cr(H₂O)₄GTP的异构体形式未显示出与该酶相互作用的立体选择性。除了具有较大Ki值的Cr(NH₃)₄GDP和Co(NH₃)₄GDP外,所有测试的络合物都是磷酸烯醇丙酮酸羧激酶的良好底物类似物。当底物为Mn-GTP且在pH 6.0时固定为0.2毫摩尔/升时,Cr(H₂O)₄GTP可使酶活性提高两倍至两倍半。狄克逊图显示,在0.4毫摩尔/升的Cr(H₂O)₄GTP时刺激作用达到饱和。该酶与Cr(H₂O)₄GTP的相互作用似乎产生了一种“记忆”效应,这种效应在鸟苷核苷酸底物中表现明显,但在替代底物Mn-ITP中未观察到。