Hardin C D, Raeymaekers L, Paul R J
Department of Physiology and Biophysics, University of Cincinnati, Ohio 45267.
J Gen Physiol. 1992 Jan;99(1):21-40. doi: 10.1085/jgp.99.1.21.
A smooth muscle plasma membrane vesicular fraction (PMV) purified for the (Ca2+/Mg2+)-ATPase has endogenous glycolytic enzyme activity. In the presence of glycolytic substrate (fructose 1,6-diphosphate) and cofactors, PMV produced ATP and lactate and supported calcium uptake. The endogenous glycolytic cascade supports calcium uptake independent of bath [ATP]. A 10-fold dilution of PMV, with the resultant 10-fold dilution of glycolytically produced bath [ATP] did not change glycolytically fueled calcium uptake (nanomoles per milligram protein). Furthermore, the calcium uptake fueled by the endogenous glycolytic cascade persisted in the presence of a hexokinase-based ATP trap which eliminated calcium uptake fueled by exogenously added ATP. Thus, it appears that the endogenous glycolytic cascade fuels calcium uptake in PMV via a membrane-associated pool of ATP and not via an exchange of ATP with the bulk solution. To determine whether ATP produced endogenously was utilized preferentially by the calcium pump, the ATP production rates of the endogenous creatine kinase and pyruvate kinase were matched to that of glycolysis and the calcium uptake fueled by the endogenous sources was compared with that fueled by exogenous ATP added at the same rate. The rate of calcium uptake fueled by endogenous sources of ATP was approximately twice that supported by exogenously added ATP, indicating that the calcium pump preferentially utilizes ATP produced by membrane-bound enzymes.
为研究(Ca2+/Mg2+)-ATP酶而纯化得到的平滑肌质膜囊泡组分(PMV)具有内源性糖酵解酶活性。在糖酵解底物(果糖1,6-二磷酸)和辅因子存在的情况下,PMV产生ATP和乳酸,并支持钙摄取。内源性糖酵解级联反应支持钙摄取,且与浴液中的[ATP]无关。将PMV稀释10倍,导致糖酵解产生的浴液中[ATP]也稀释10倍,但这并未改变糖酵解驱动的钙摄取(每毫克蛋白质的纳摩尔数)。此外,在存在基于己糖激酶的ATP阱的情况下,内源性糖酵解级联反应驱动的钙摄取仍持续存在,该ATP阱消除了外源添加ATP驱动的钙摄取。因此,似乎内源性糖酵解级联反应是通过与膜相关的ATP池而非通过与大量溶液中的ATP交换来为PMV中的钙摄取提供能量。为了确定内源性产生的ATP是否被钙泵优先利用,将内源性肌酸激酶和丙酮酸激酶的ATP产生速率与糖酵解的速率匹配,并将内源性来源驱动的钙摄取与以相同速率添加的外源ATP驱动的钙摄取进行比较。内源性ATP来源驱动的钙摄取速率约为外源添加ATP支持的钙摄取速率的两倍,这表明钙泵优先利用膜结合酶产生的ATP。