Liebow C, Rothman S S
Biochim Biophys Acta. 1976 Nov 11;455(1):241-53. doi: 10.1016/0005-2736(76)90167-x.
Zymogen granules isolated from the rat pancreas released digestive enzyms in response to lowering the enzyme concentration of the medium in which the granules were suspended, and reabsorbed enzyme when the enzyme concentration of the medium was increased. The evidence suggests that the distribution of digestive enzyme between zymogen granule and medium is the result of an equilibrium process. This equilibrium is apparently expressed across the granule membrane since the disruption of the membrane barrier eliminated the delay in establishing new equilibrium between the bound and free enzyme. The release of enzyme was continuous (equilibration did not occur) when the suspending medium was continuously filtered, thereby maintaining a constant state of disequilibrium between intragranular enzyme and enzyme in the medium. The data suggest the following: (1) that digestive enzyme passes through the intact granule membrane bidirectionally, and (2) that there is a free cytoplasmic pool of digestive enzyme in intact cells which is in equilibrium with the enzyme content of the zymogen granule.
从大鼠胰腺分离出的酶原颗粒,会因悬浮颗粒的培养基中酶浓度降低而释放消化酶,当培养基中酶浓度升高时则会重新吸收酶。证据表明,消化酶在酶原颗粒和培养基之间的分布是一个平衡过程的结果。这种平衡显然是通过颗粒膜来体现的,因为膜屏障的破坏消除了在结合酶和游离酶之间建立新平衡时的延迟。当悬浮培养基持续过滤时,酶的释放是连续的(平衡未发生),从而使颗粒内酶与培养基中的酶之间保持恒定的不平衡状态。这些数据表明:(1)消化酶双向穿过完整的颗粒膜;(2)完整细胞中存在一个消化酶的游离细胞质池,它与酶原颗粒中的酶含量处于平衡状态。