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大鼠脑部分中的β-D-葡萄糖苷酶。

Beta-D-glucosidase in fractions from rat brain.

作者信息

Hermans I J

出版信息

Neurochem Res. 1978 Dec;3(6):711-24. doi: 10.1007/BF00965994.

Abstract

Beta-Glucosidase activity has been determined in homogenate and in centrifugation fractions of 7-day-old and adult rat brain; maximum activity was found at pH 4 and pH 5. Of the adult brain, more than 50% of the activity was concentrated in the 800-g sediment fraction (P1), while in the brain of 7-day-old rat about 20% was found in the corresponding fraction. The activity maximum in all fractions after a 2% Triton X-100 treatment occurs at pH 5. Addition of Triton to adult brain homogenate enhances the activity, but this stimulation is less than the sum of the activities observed at pH 4 and pH 5 in the absence of Triton. Triton addition to brain homogenate of 7-day-old rat results in a fall in activity at pH 4 and in a maximum at pH 5. In rat brain homogenate subjected to sonication, a loss of activity is observed at pH 4, scarcely at pH 5; the activity loss is completely abolished and turned into an increase under the influence of Triton. This increase equals the level obtained when Triton is added to an untreated brain homogenate. Sonication of rat brain homogenate leads to changes in the distribution pattern; about 25% of the activity of the adult brain is found in the P1 fraction compared to 50% in the corresponding fraction of the untreated brain. Fractionation of a sonicated brain homogenate from adult rat reveals that at pH 4 most activity (52%) is concentrated in the 20,000-g pellet (P2), 23% in supernatant fluid (S2); at pH 5 the opposite is observed; most activity (49%) is found in the 20,000-g supernatant (S2) and 23% in the 20,000-g pellet (P2). In the presence of Triton the activity of the sonicated brain homogenate of adult rat increases; this stimulation roughly equals the sum of the corresponding activities measured at pH 4 and pH 5 in the absence of Triton.

摘要

已测定7日龄和成年大鼠脑匀浆及离心组分中的β-葡萄糖苷酶活性;在pH 4和pH 5时发现活性最高。在成年脑中,超过50%的活性集中在800g沉淀物组分(P1)中,而在7日龄大鼠脑中,相应组分中约有20%的活性。用2% Triton X-100处理后,所有组分中的活性最大值出现在pH 5。向成年脑匀浆中添加Triton可增强活性,但这种刺激小于在无Triton时pH 4和pH 5下观察到的活性之和。向7日龄大鼠脑匀浆中添加Triton会导致pH 4时活性下降,pH 5时活性达到最大值。在经过超声处理的大鼠脑匀浆中,在pH 4时观察到活性丧失,在pH 5时几乎没有;在Triton的影响下,活性丧失完全消除并转变为增加。这种增加等于向未处理的脑匀浆中添加Triton时获得的水平。大鼠脑匀浆的超声处理导致分布模式发生变化;成年脑约25%的活性存在于P1组分中,而未处理脑的相应组分中为50%。对成年大鼠超声处理后的脑匀浆进行分级分离显示,在pH 4时,大部分活性(52%)集中在20000g沉淀(P2)中,23%在上清液(S2)中;在pH 5时观察到相反情况;大部分活性(49%)存在于20000g上清液(S2)中,23%存在于20000g沉淀(P2)中。在Triton存在的情况下,成年大鼠超声处理后的脑匀浆活性增加;这种刺激大致等于在无Triton时pH 4和pH 5下测量的相应活性之和。

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