Shimizu T
J Biochem. 1979 Oct;86(4):1139-45. doi: 10.1093/oxfordjournals.jbchem.a132608.
An apparent 'triphasic' alteration of 30S dynein ATPase activity was produced by treatment with various amounts of NEM when the modification and susequent ATPase assay were carried out at pH 7.4 and pH 10-10.2, respectively. The Mg-ATPase activity was markedly inhibited by modification of the most reactive SH groups with 10 microM NEM, although the same treatment had no significant effect on the activity when assayed at neutral pH. Increasing the NEM concentration to 0.3 mM largely restored the enzyme activity, but a further increase in NEM concentration inhibited the enzyme activity again. This unusual response of 30S dynein ATPase at pH 10-10.2 was accounted for by the results of Arrhenius plots of the enzyme activity at pH 10.1; the enzyme protein modified with not more than 10 microM NEM was not stable under the assay conditions (pH 10-10.2 at 25 degrees C), whereas modification with 0.3 mM NEM stabilized 30S dynein against the assay conditions. The possible significance of the 10 microM NEM-induced inhibition of the 30S dynein alkaline ATPase activity is discussed in connection with the participation of SH groups of 30S dynein in the enzyme activity.
当分别在pH 7.4和pH 10 - 10.2条件下进行修饰和后续ATP酶测定时,用不同量的N - 乙基马来酰亚胺(NEM)处理会使30S动力蛋白ATP酶活性出现明显的“三相”变化。用10 μM NEM修饰最具反应性的巯基时,Mg - ATP酶活性受到显著抑制,不过在中性pH条件下进行测定时,相同处理对活性没有显著影响。将NEM浓度增加到0.3 mM可使酶活性大幅恢复,但NEM浓度进一步增加又会再次抑制酶活性。30S动力蛋白ATP酶在pH 10 - 10.2时的这种异常反应可以通过在pH 10.1时酶活性的阿累尼乌斯曲线结果来解释;用不超过10 μM NEM修饰的酶蛋白在测定条件下(25℃,pH 10 - 10.2)不稳定,而用0.3 mM NEM修饰可使30S动力蛋白在测定条件下保持稳定。结合30S动力蛋白的巯基参与酶活性的情况,讨论了10 μM NEM诱导的30S动力蛋白碱性ATP酶活性抑制的可能意义。