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81.
82.
Electromagnetic fields of very low amplitude have been reported to influence a number of cellular functions. Many of these
effects have a high degree of frequency specificity. Herein it is suggested that some of these reported results could be explained
by a fieldinduced alteration in the enzymic activity of integral membrane proteins. It is shown that such a field-induced
transition from an initial nonequilibrium steady-state to a final nonequilibrium steady-state can lead to an alteration in
the concentration profiles of those charged species in the cell's ambient electrolyte that comprise the so-called electrical
double layer. Examples of variations in the concentration profiles of those ions that react with a membrane-bound enzyme,
as well as nonreacting ionic species, are given. The modulation of such effects by systematic variations in extracellular
pH and ionic strength is discussed. 相似文献
83.
Kawalek J. C., Rew R. S. and Heavner J. 1984. Glutathione-S-transferase, a possible drug-metabolizing enzyme in Haemonchus contortus: comparative activity of a cambendazole-resistant and a susceptible strain. International Journal for Parasitology14: 173–175. A drug metabolizing enzyme (DME), glutathione-S-transferase, was detected in homogenates of a cambendazole-susceptible and a cambendazole-resistant strain of Haemonchus contortus. The activity was 1.5–1.8 times higher in the resistant strain. DME activation is a possible mechanism for anthelmintic resistance in H. contortus. 相似文献
84.
85.
86.
T J Holmes J L Vennerstrom V John 《Biochemical and biophysical research communications》1984,123(1):156-162
Irreversible inhibition of soybean lipoxygenase-1 (SL-1) was accomplished via a controlled potential oxidative electrolysis of 1,5-dihydroxynaphthalene (1,5-DHN) at +0.8 V vs SCE. The inactivation of SL-1 with this known inhibitor was greatly enhanced under these electrolytic conditions to which the enzyme itself was stable. Electrolyses were run at 0 degree C in a 0.05 M phosphate buffer, pH 7.0, using graphite cloth electrodes. The rate of inactivation was observed to be limited by and dependent on the anodic oxidation of 1,5-DHN. The non-oxidizable (at this potential) inhibitor indomethacin was shown to protect the enzyme from irreversible inactivation, however, an external nucleophile (2-mercaptoethanol) had little effect. These initial studies support the capability of such electrochemical methods for the site-specific covalent modification (affinity labelling) of lipoxygenase, and perhaps other enzymes. 相似文献
87.
Irene Carlberg Kenneth Söderhäll Kristina Glimelius Tage Eriksson 《Physiologia plantarum》1984,62(3):458-464
Embryogenic and non-embryogenic cell strains of Daucus carota L. were examined for their protease activity using a wide range of chromogenic synthetic peptides as substrates. High arginine-specific activity was present in all strains, but no protease activity "specific" for embryogenic or non-embryogenic strains could be detected with the substrates tested. The specific protease activity was 5–10 times higher in the non-embryogenic as compared to the embryogenic strain for most tested substrates, and this difference was not due to release of proteases in the latter. All strains showed a decrease in protease activity when cultured in media without 2,4-dichlorophenoxyacetic acid, but the embryos had high protease activity in comparison with the nondifferentiated cell aggregates. In the latter aggregates, hydrolyzing activity towards three of the substrates (H-D-Phe-Pip-Arg- p -nitroanilide, Suc-Ala-Pro-Phe- p -nitro-anilide and Bz-Phe-Val-Arg- p -nitroanilide) was absent, whereas the embryos were able to hydrolyze them. 相似文献
88.
A method is described to measure directly in rat brain the activity of pyruvate dehydrogenase kinase (PDHa kinase; EC 2.7.1.99), which catalyzes the inactivation of pyruvate dehydrogenase complex (PDHC, EC 1.2.4.1, EC 2.3.1.12, and EC 1.6.4.3). The activity showed the expected dependence on added ATP and divalent cation, and the expected inhibition by dichloroacetate, pyruvate, and thiamin pyrophosphate. These results, and the properties of pyruvate dehydrogenase phosphate phosphatase (EC 3.1.3.43), indicate that the mechanisms of control of phosphorylation of PDHC seem qualitatively similar in brain to those in other tissues. Regionally, PDHa kinase is more active in cerebral cortex and hippocampus, and less active in hypothalamus, pons and medulla, and olfactory bulbs. Indeed, the PDHa kinase activity in olfactory bulbs is uniquely low, and is more sensitive to inhibition by pyruvate and dichloroacetate than that in the cerebral cortex. Thus, there are significant quantitative differences in the enzymatic apparatus for controlling PDHC activity in different parts of the brain. 相似文献
89.
大尺蠖核多角体病毒DNA的限制性消化和物理图谱 总被引:4,自引:0,他引:4
用5种限制性核酸内切酶消化大尺蠖核多角体病毒(BsNPV)基因组DNA,所得片段数分别是:BamH Ⅰ,9;Bgl Ⅱ,7;Xho Ⅰ,10;HindⅢ 13;EcoR Ⅰ,12,从各个片段的累加测出BsNPV基因组的平均大小约为91,75kb;分子量约为59.60×10~6d。在单酶消化的基础上,用BamH Ⅰ/Bgl Ⅱ双酶消化得到16个片段(即9+7);大小为91,27kb,用、Bgl Ⅱ/Xho Ⅰ双酶消化产生7+10=17个片段,大小为90.04kb,由此组建了这三个酶在BsNPV基因组上的物理图谱。 相似文献
90.
氨基酰化酶中金属锌离子的功能作用 总被引:1,自引:0,他引:1
氨基酰化酶是含锌金属酶。该酶每摩尔蛋白中含2摩尔Zn(Ⅱ)离子。金属鳌合剂与酶作用,通过竞争螯合Zn(Ⅱ)离子使酶活力下降。残余活力与残留金属含量呈正相关。竞争螯合的结果,生成不含金属的脱辅基酶蛋白,并导致酶活力的丧失。脱辅基酶由于加入Zn(Ⅱ)离子而恢复其活力。实验表明金属锌离子是氨基酰化酶催化活力所必需。与Zn(Ⅱ)离子相似,Co(Ⅱ)离子也可与脱辅基酶相结合并使之复活。 在190—240nm区域内对比了天然酶、脱辅基酶蛋白与Co(Ⅱ)置换氨基酰化酶的圆二色谱。远紫外圆二色谱表明,与天然酶相比,在脱辅基酶中由于金属离子的丧失导致主链构象发生变化,其中α螺旋增加约7%。因而锌离子(钴离子)对蛋白主链的反应最适构象有一定的稳定作用。脱辅基酶与Co(Ⅱ)离子结合,酶的主链构象恢复至与天然酶几近相同。可认为这是促使酶复活的内在因素。 相似文献