首页> 美国卫生研究院文献>Journal of Bacteriology >In vivo control of gluconeogenesis in wild-type Neurospora crassa and in the adenylate cyclase-deficient cr-1 (crisp) mutant.
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In vivo control of gluconeogenesis in wild-type Neurospora crassa and in the adenylate cyclase-deficient cr-1 (crisp) mutant.

机译:在体内控制野生型芥菜和腺苷酸环化酶缺陷型cr-1(crisp)突变体中糖异生的过程。

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摘要

The rate of cycloheximide-resistant incorporation of carbon from [14C]alanine and [14C]acetate into polysaccharidic material was used to study gluconeogenic activity in wild-type Neurospora crassa and in the adenylate cyclase-deficient cr-1 (crisp-1) mutant. The wild-type efficiently utilized alanine and acetate as gluconeogenic substrates, whereas the mutant used acetate efficiently but was unable to use alanine. Cycloheximide-resistant 14C-incorporating activity was sensitive to carbon catabolite effects (repression and inactivation) in the two strains, which suggested that cyclic AMP metabolism was not involved in these regulatory responses. In the wild type, gluconeogenesis was induced by incubation of the cells in the absence of a carbon source. In contrast, cr-1 required supplementation with acetate. This finding suggested that induction of gluconeogenesis in N. crassa could be mediated by metabolites formed in carbon-starved cells. The cr-1 mutant seemed to be deficient in this process and to depend on an exogenous effector to induce gluconeogenesis. Incubation of cr-1 with cyclic AMP partially overcame the acetate requirement for induction of gluconeogenesis.
机译:来自[14C]丙氨酸和[14C]乙酸盐的耐环己酰亚胺的碳掺入多糖材料的速率用于研究野生型芥菜神经孢菌和腺苷酸环化酶缺陷型cr-1(crisp-1)突变体的糖异生活性。 。野生型有效地利用丙氨酸和乙酸盐作为糖异生底物,而突变体有效地利用乙酸盐但不能使用丙氨酸。耐环己酰亚胺的14C结合活性对这两种菌株的碳分解代谢作用(抑制和失活)敏感,这表明环状AMP代谢不参与这些调节反应。在野生型中,通过在不存在碳源的情况下孵育细胞来诱导糖异生。相反,cr-1需要补充乙酸盐。这一发现表明,在克氏猪笼草中糖原异生的诱导可以由碳缺乏细胞中形成的代谢产物介导。 cr-1突变体似乎在此过程中是缺陷的,并且依赖于外源性效应子来诱导糖异生。用环AMP培育cr-1可以部分克服醋酸盐诱导糖异生的要求。

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