sconC是一种参与调节中性曲霉硫代谢的基因,属于SKP1基因家族。

M Piotrowska, R Natorff, A Paszewski
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引用次数: 33

摘要

sconC编码细粒曲霉(Aspergillus nidulans)硫代谢负调控基因,经克隆、测序后发现,该基因属于SKP1基因高度保守家族,SKP1基因对许多细胞功能(包括细胞周期调节)至关重要。722 bp的ORF编码161个氨基酸的蛋白质,被4个内含子打断。在上游未翻译序列中有第5个内含子(长135 bp)。在突变等位基因sconC3和sconC1保守区发现了两个点突变,导致硫代谢物抑制减轻。SCONC蛋白含有快速周转的蛋白质中常见的PEST序列。将sconC3突变体转化为sconB+可恢复野生型表型。sconB基因编码一种含有F-box的蛋白质,该结构域已知与Skp1蛋白相互作用。通过与其他系统的类比,SCONC蛋白似乎可能与SCONB相互作用。sconC mRNA存在于scon3和sconB2突变体中,并且sconC转录物的水平似乎不受添加硫培养基的显著调节。
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sconC, a gene involved in the regulation of sulphur metabolism in Aspergillus nidulans, belongs to the SKP1 gene family.

sconC, which encodes a negative regulator of sulphur metabolism in Aspergillus nidulans was cloned, sequenced, and found to belong to the highly conserved family of SKP1 genes essential for many cell functions, including cell cycle regulation. The ORF of 722 bp, encoding a protein of 161 amino acids, is interrupted by four introns. There is a fifth intron (135 bp long) in the upstream untranslated sequence. Two point mutations in conserved regions were identified in the mutant alleles sconC3 and sconC1, which result in relief of sulphur metabolite repression. The SCONC protein contains the PEST sequence common for proteins that are subject to rapid turnover. Transformation of the sconC3 mutant with sconB+ restores the wild-type phenotype. The sconB gene encodes a protein containing the F-box, a domain known to interact with Skp1 proteins. By analogy with other systems, it seems likely that the SCONC protein interacts with SCONB. sconC mRNA is present in the sconC3 and sconB2 mutants and the level of the sconC transcript seems not to be significantly regulated by supplementation of the medium with sulphur.

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