Cosens B, Thacker D, Brimijoin S
J Neurobiol. 1976 Jul;7(4):339-54. doi: 10.1002/neu.480070406.
Stop-flow techniques were used to determine how temperature affected the axonal transport of dopamine-beta-hydroxylase (DBH) activity in rabbit sciatic nerves in vitro. These nerves were cooled locally to 2 degrees C for 1.5 hr, which caused a sharp peak of DBH activity to accumulate above the cooled region. Accumulated DBH was then allowed to resume migration at various temperatures. From direct measurements of the rate of migration, we found that the axonal transport velocity of DBH was a simple exponential function of temperature between 13 degrees C and 42 degrees C. Over this range of temperatures, the results were well described by the equation: V=0.546(1.09)T, where V is velocity in mm/hr, and T is temperature in degrees centigrade. The Q10 between 13 degrees and 42 degrees C was 2.33, and an Arrhenius plot of the natural logarithm of velocity versus the reciprocal of absolute temperature yielded an apparent activation energy of 14.8 kcal. Transport virtually halted when temperature was raised to 47 degrees C, although only about half of the DBH activity disappeared during incubation at this temperature. Another transition occurred at 13 degrees C; below this temperature, velocity fell precipitously. This was not an artifact peculiar to the stop-flow system since the rate of accumulation of DBH activity proximal to a cold-block also decreased abruptly when the temperature above the block was reduced below 13 degrees C.
采用停流技术来确定温度如何在体外影响兔坐骨神经中多巴胺-β-羟化酶(DBH)活性的轴突运输。将这些神经局部冷却至2℃持续1.5小时,这导致DBH活性在冷却区域上方积累形成一个尖锐峰值。然后让积累的DBH在不同温度下恢复迁移。通过直接测量迁移速率,我们发现DBH的轴突运输速度在13℃至42℃之间是温度的简单指数函数。在这个温度范围内,结果可以很好地用以下方程描述:V = 0.546(1.09)T,其中V是以毫米/小时为单位的速度,T是以摄氏度为单位的温度。13℃至42℃之间的Q10为2.33,速度的自然对数与绝对温度的倒数的阿累尼乌斯图得出表观活化能为14.8千卡。当温度升至47℃时,运输几乎停止,尽管在此温度下孵育期间只有约一半的DBH活性消失。另一个转变发生在13℃;低于此温度,速度急剧下降。这不是停流系统特有的假象,因为当阻断上方的温度降至13℃以下时,冷阻断近端DBH活性的积累速率也会突然下降。