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胞质溶胶蛋白因子对大鼠肝脏中肾上腺素和胰高血糖素敏感的腺苷酸环化酶的激活作用。在制备微粒体组分过程中酶活性丧失、定量及部分特性鉴定中的作用。

Activation of epinephrine and glucagon-sensitive adenylate cyclases of rat liver by cytosol protein factors. Role in loss of enzyme activities during preparation of particulate fractions, quantitation and partial characterization.

作者信息

Katz M S, Kelly T M, Piñeyro M A, Gregerman R I

出版信息

J Cyclic Nucleotide Res. 1978 Oct;4(5):389-407.

PMID:721979
Abstract

The role of cytosol components in the loss of rat liver adenylate cyclase activity which occurs during the preparation of particulate fractions from crude homogenates was studied. Epinephrine (5 micron)-, glucagon (10 micron)-, and fluoride (5 mM)- stimulated activities of twice-washed particulates were 31%, 58% and 67% of the homogenate activities, respectively. Addition of cytosol (100,000 X g supernatant devoid of adenylate cyclase activity) restored these activities to 82%, 88% and 80%. Cytosol also increased particulate basal activity from 60% of homogenate activity to 98%. The cytosol components capable of increasing adenylate cyclase activity were heat labile, nondialyzable, stable to freezing at -20 degrees, resistant to change of pH between 2 and 12, and unaffected by EGTA and NAD. Pretreatment with pepsin destroyed the effects of cytosol on both epinephrine- and glucagon-sensitive activities, whereas trypsin destroyed the effect of cytosol only on epinephrine-sensitive activity. The cytosol effect on adenylate cyclase was specific, since several purified proteins and ubiquitin, did not stimulate enzyme activity. Only part of the cytosol effect could be attributed to its GTP content. GTP at the concentration present in cytosol stimulated epinephrine-sensitive activity but significantly less than did cytosol, while GTP had no effect on glucagon-sensitive activity. Dialyzed cytosol retained its effectiveness even after removal of most (97%) of its GTP to a concentration where GTP had only a minimal effect on epinephrine-sensitive activity. Cytosol, unlike GTP, stimulated rather than inhibited activation by fluoride. Cytosol thus appears to contain at least two different protein components, which increase the activity of the two hormone-sensitive adenylate cyclases and presumably account in part for losses of adenylate cyclase activities seen during the preparation of particulates from homogenates.

摘要

研究了细胞质组分在大鼠肝腺苷酸环化酶活性丧失中的作用,该活性丧失发生在从粗匀浆制备微粒体组分的过程中。用肾上腺素(5微摩尔)、胰高血糖素(10微摩尔)和氟化物(5毫摩尔)刺激的两次洗涤后的微粒体活性分别为匀浆活性的31%、58%和67%。添加细胞质(不含腺苷酸环化酶活性的100,000×g上清液)可将这些活性恢复到82%、88%和80%。细胞质还使微粒体基础活性从匀浆活性的60%增加到98%。能够增加腺苷酸环化酶活性的细胞质组分对热不稳定、不可透析、在-20℃冷冻稳定、在pH 2至12之间稳定,且不受乙二醇双四乙酸(EGTA)和烟酰胺腺嘌呤二核苷酸(NAD)影响。用胃蛋白酶预处理会破坏细胞质对肾上腺素和胰高血糖素敏感活性的影响,而用胰蛋白酶预处理只会破坏细胞质对肾上腺素敏感活性的影响。细胞质对腺苷酸环化酶的作用具有特异性,因为几种纯化的蛋白质和泛素均未刺激酶活性。细胞质的作用只有部分可归因于其鸟苷三磷酸(GTP)含量。细胞质中存在的浓度的GTP刺激肾上腺素敏感活性,但显著低于细胞质的刺激效果,而GTP对胰高血糖素敏感活性无影响。即使去除了大部分(97%)的GTP至GTP对肾上腺素敏感活性仅有最小影响的浓度,透析后的细胞质仍保持其有效性。与GTP不同,细胞质刺激而非抑制氟化物激活。因此,细胞质似乎至少含有两种不同的蛋白质组分,它们增加了两种激素敏感的腺苷酸环化酶的活性,并且可能部分解释了从匀浆制备微粒体过程中观察到的腺苷酸环化酶活性的丧失。

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