首页> 外文期刊>Journal of bacteriology >Regulation and glutamic acid decarboxylase during Neurospora crassa conidial germination.
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Regulation and glutamic acid decarboxylase during Neurospora crassa conidial germination.

机译:芥菜孢分生孢子萌发过程中的调节和谷氨酸脱羧酶。

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Glutamic acid decarboxylase (GAD) from Neurospora crassa was assayed in dormant and germinating conidia that had been permeabilized by toluene and methanol. N. crassa conidia contained 10 times the GAD activity found in vegetativemycelia. During conidial germination, GAD activity rapidly decreased to low levels before germ tubes appeared. GAD activity in germinating conidia closely followed the decreasing rate of glutamic acid metabolism. Inhibiting protein synthesis partially blocked the decrease in GAD activity, but eliminating exogenous carbon sources did not alter the initial rate of decrease in this enzyme. However, when conidia were incubated for more than 3 h in distilled water, GAD activity began to increase and eventually reached levels comparable to those in dormant conidia. Either GAD was reversibly inactivated or this enzyme could be synthesized from endogenous storage compounds when conidia were incubated in distilled water. These results are consistent with the hypothesis that GAD is a developmentally regulated enzyme that is responsible for catalyzing the first step in the metabolism of the large pool of free glutamic acid during conidial germination.
机译:在已经被甲苯和甲醇渗透的休眠和萌发分生孢子中测定了来自神经孢霉的谷氨酸脱羧酶(GAD)。猪笼草分生孢子所含的GAD活性是植物菌丝体中的10倍。在分生孢子萌发过程中,GAD活性迅速下降至胚芽管出现之前的低水平。萌发分生孢子中的GAD活性紧随谷氨酸代谢速率的降低。抑制蛋白质合成可部分阻止GAD活性的降低,但消除外源碳源不会改变该酶的初始降低速率。但是,当分生孢子在蒸馏水中孵育3小时以上时,GAD活性开始增加,最终达到与休眠分生孢子相当的水平。当分生孢子在蒸馏水中孵育时,GAD可逆地失活,或者可以从内源性存储化合物合成这种酶。这些结果与假说GAD是一种发育受调节的酶有关,该酶负责在分生孢子萌发过程中催化大量游离谷氨酸代谢的第一步。

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