Thatcher B J, Storey K B
Institute of Biochemistry and Department of Biology, Carleton University, Ottawa, ON, Canada.
Biochem Cell Biol. 2001;79(1):11-9.
Glutamate dehydrogenase (GDH) was purified to homogeneity from the liver of euthermic (37 degrees C body temperature) and hibernating (torpid, 5 degrees C body temperature) Richardson's ground squirrels (Spermophilus richardsonii). SDS-PAGE yielded a subunit molecular weight of 59.5+/-2 kDa for both enzymes, but reverse phase and size exclusion HPLC showed native molecular weights of 335+/-5 kDa for euthermic and 320+/-5 kDa for hibernator GDH. Euthermic and hibernator GDH differed substantially in apparent Km values for glutamate, NH4+, and alpha-ketoglutarate, as well as in Ka and IC50 values for nucleotide and ion activators and inhibitors. Kinetic properties of each enzyme were differentially affected by assay temperature (37 versus 5 degrees C). For example, the Km for alpha-ketoglutarate of euthermic GDH was higher at 5 degrees C (3.66+/-0.34 mM) than at 37 degrees C (0.10+/-0.01 mM), whereas hibernator GDH had a higher affinity for alpha-ketoglutarate at 5 degrees C (Km was 0.98+/-0.08 mM at 37 degrees C and 0.43+/-0.02 mM at 5 degrees C). Temperature effects on Ka ADP values of the enzymes followed a similar pattern; GTP inhibition was strongest with the euthermic enzyme at 37 degrees C and weakest with hibernator GDH at 5 degrees C. Entry into hibernation leads to stable changes in the properties of ground squirrel liver GDH that allow the enzyme to function optimally at the prevailing body temperature.
从体温正常(37℃)和处于冬眠状态(体温5℃)的北美 Richardson 地松鼠(Spermophilus richardsonii)肝脏中纯化得到了均一的谷氨酸脱氢酶(GDH)。SDS-PAGE 显示两种酶的亚基分子量均为 59.5±2 kDa,但反相高效液相色谱(RP-HPLC)和尺寸排阻高效液相色谱(SEC-HPLC)显示,体温正常的地松鼠肝脏 GDH 的天然分子量为 335±5 kDa,冬眠地松鼠肝脏 GDH 的天然分子量为 320±5 kDa。体温正常和冬眠的地松鼠肝脏 GDH 在谷氨酸、NH4+和α-酮戊二酸的表观 Km 值以及核苷酸和离子激活剂及抑制剂的 Ka 和 IC50 值方面存在显著差异。每种酶的动力学特性受测定温度(37℃与 5℃)的影响不同。例如,体温正常的地松鼠肝脏 GDH 在 5℃时α-酮戊二酸的 Km 值(3.66±0.34 mM)高于 37℃时(0.10±0.01 mM),而冬眠地松鼠肝脏 GDH 在 5℃时对α-酮戊二酸的亲和力更高(37℃时 Km 为 0.98±0.08 mM,5℃时为 0.43±0.02 mM)。温度对酶的 Ka ADP 值的影响遵循类似模式;GTP 对体温正常的地松鼠肝脏 GDH 的抑制作用在 37℃时最强,对冬眠地松鼠肝脏 GDH 在 5℃时最弱。进入冬眠状态会导致北美地松鼠肝脏 GDH 的性质发生稳定变化,使该酶能够在当时的体温下发挥最佳功能。