Ramnanan Christopher J, Storey Kenneth B
Department of Molecular Physiology, Vanderbilt University School of Medicine, Nashville, TN, 37232, USA.
J Comp Physiol B. 2008 Jan;178(1):33-45. doi: 10.1007/s00360-007-0197-9. Epub 2007 Aug 10.
Estivation (aerobic dormancy) is characterized by sustained metabolic rate depression, which is crucial to survival in the face of unfavorable environmental conditions and enables the preservation of endogenous fuel reserves. Ion pumping is one of the most energetically taxing physiological processes in cells, and ion motive ATPases are likely loci to be differentially regulated in models of metabolic arrest. We proposed that the sarcoendoplasmic reticulum (SER) calcium-ATPase (SERCA) would be deactivated in the estivating desert snail Otala lactea, potentially contributing to the overall suppression of metabolism. SERCA kinetic parameters [decreased maximal velocities, increased substrate K (m) values, increased Arrhenius activation energy (E (a))] were indicative of a less active enzyme in the estivated state. Interestingly, the less active SERCA population in dormant snails featured greater kinetic (K (m) Mg.ATP versus temperature) and conformational (resistance to urea denaturation) stability than that in active snails. Western blotting confirmed that SERCA protein content did not change during estivation. In light of this observation, we proposed that estivation-dependent changes in SERCA activity was due to changes in SERCA phosphorylation state. In vitro studies promoting specific kinase or phosphatase action indicated that decreased SERCA activity in estivation was linked with endogenous kinase activity whereas reactivation of SERCA was facilitated by endogenous protein phosphatases (PP).
夏眠(有氧休眠)的特征是代谢率持续降低,这对于在不利环境条件下生存至关重要,并有助于保存内源性燃料储备。离子泵浦是细胞中能量消耗最大的生理过程之一,离子动力ATP酶可能是代谢停滞模型中差异调节的位点。我们提出,在夏眠的沙漠蜗牛Otala lactea中,肌浆网(SER)钙ATP酶(SERCA)将失活,这可能有助于整体代谢抑制。SERCA动力学参数[最大速度降低、底物K(m)值增加、阿累尼乌斯活化能(E(a))增加]表明该酶在夏眠状态下活性较低。有趣的是,休眠蜗牛中活性较低的SERCA群体在动力学(K(m)Mg.ATP与温度的关系)和构象(对尿素变性的抗性)稳定性方面比活跃蜗牛中的SERCA群体更高。蛋白质印迹法证实,夏眠期间SERCA蛋白含量没有变化。鉴于这一观察结果,我们提出,SERCA活性的夏眠依赖性变化是由于SERCA磷酸化状态的变化。促进特定激酶或磷酸酶作用的体外研究表明,夏眠期间SERCA活性降低与内源性激酶活性有关,而SERCA的重新激活则由内源性蛋白磷酸酶(PP)促进。