首页> 美国卫生研究院文献>Biochemical Journal >Disruption and overexpression of the Schizosaccharomyces pombe aph1 gene and the effects on intracellular diadenosine 55-P1 P4-tetraphosphate (Ap4A) ATP and ADP concentrations.
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Disruption and overexpression of the Schizosaccharomyces pombe aph1 gene and the effects on intracellular diadenosine 55-P1 P4-tetraphosphate (Ap4A) ATP and ADP concentrations.

机译:裂殖酵母pombe aph1基因的破坏和过表达及其对细胞内尿苷55-P1P4-四磷酸(Ap4A)ATP和ADP浓度的影响。

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摘要

Diadenosine oligophosphates are ubiquitous compounds that were discovered over 30 years ago. Diadenosine 5',5"'-P(1), P(4)-tetraphosphate (Ap(4)A) is the most studied member of this family, and its function in yeast is unknown. To investigate possible functions, we changed the intracellular Ap(4)A concentration in Schizosaccharomyces pombe via disruption and overexpression of the aph1 gene, which encodes an Ap(4)A hydrolase (Aph1). S. pombe Aph1 is 52% identical with a human tumour suppressor protein, Fhit, in a core region of 109 amino acids. Disruption of aph1 resulted in an 85% decrease in Ap(4)A hydrolase activity and a 290-fold increase in the intracellular Ap(4)A concentration. The disruption and subsequent increase in intracellular Ap(4)A concentration had no significant effect on the growth of S. pombe. Overexpression of the S. pombe aph1 gene, resulting in 17- and 84-fold increases in Ap(4)A hydrolase activity above wild-type levels, resulted in 60 and 80% decreases respectively in the intracellular Ap(4)A concentration. This represents the first report of a decrease in the intracellular Ap(4)A concentration in response to overexpression of a degradative enzyme in any eukaryotic organism. We describe a new S. pombe expression plasmid, pPOX, which was used to achieve the largest increase in expression of aph1. Overexpression of aph1 at the highest level resulted in a 46% increase in generation time in comparison with the control strain. Neither overexpression nor disruption had any effect on the intracellular ATP or ADP concentrations. This is the first report of ADP and ATP concentrations in S. pombe. These data also indicate that Aph1 functions in vivo to degrade Ap(4)A, and that high-level overexpression of this enzyme reduces the growth rate.
机译:腺苷低聚磷酸是30年前发现的普遍存在的化合物。腺苷5',5“'-P(1),P(4)-四磷酸(Ap(4)A)是该家族中研究最多的成员,其在酵母中的功能尚不清楚。为了研究可能的功能,我们改变了通过破坏和过表达aph1基因(编码一个Ap(4)A水解酶(Aph1))来破坏粟酒裂殖酵母中的细胞内Ap(4)A浓度。粟酒裂殖酵母Aph1与人类肿瘤抑制蛋白Fhit具有52%的相同性,在109个氨基酸的核心区域中,aph1的破坏导致Ap(4)A水解酶活性降低了85%,细胞内Ap(4)A的浓度增加了290倍。 (4)浓度对粟酒裂殖酵母的生长没有显着影响,过度表达粟酒裂殖酵母aph1基因,导致Ap(4)A水解酶活性在野生型水平以上分别增加17和84倍细胞内Ap(4)A浓度分别下降60%和80%,这是第一个报告下降的报告真核生物中降解酶过度表达引起的细胞内Ap(4)A浓度升高。我们描述了一种新的粟酒裂殖酵母表达质粒pPOX,该质粒用于实现aph1表达的最大增加。与对照菌株相比,最高水平的aph1过表达导致世代时间增加46%。过表达或破坏对细胞内ATP或ADP浓度均无影响。这是粟酒裂殖酵母中ADP和ATP浓度的首次报道。这些数据还表明,Aph1在体内具有降解Ap(4)A的功能,并且该酶的高水平过度表达降低了生长速率。

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