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Human Cpr (Cell Cycle Progression Restoration) Genes Impart a Far(-) Phenotype on Yeast Cells

机译:人类Cpr(细胞周期进展恢复)基因在酵母细胞上影响Far(-)表型

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摘要

Regulated cell cycle progression depends on the proper integration of growth control pathways with the basic cell cycle machinery. While many of the central molecules such as cyclins, CDKs, and CKIs are known, and many of the kinases and phosphatases that modify the CDKs have been identified, little is known about the additional layers of regulation that impinge upon these molecules. To identify new regulators of cell proliferation, we have selected for human and yeast cDNAs that when overexpressed were capable of specifically overcoming G(1) arrest signals from the cell cycle branch of the mating pheromone pathway, while still maintaining the integrity of the transcriptional induction branch. We have identified 13 human CPR (cell cycle progression restoration) genes and 11 yeast OPY (overproduction-induced pheromone-resistant yeast) genes that specifically block the G(1) arrest by mating pheromone. The CPR genes represent a variety of biochemical functions including a new cyclin, a tumor suppressor binding protein, chaperones, transcription factors, translation factors, RNA-binding proteins, as well as novel proteins. Several CPR genes require individual CLNs to promote pheromone resistance and those that require CLN3 increase the basal levels of Cln3 protein. Moreover, several of the yeast OPY genes have overlapping functions with the human CPR genes, indicating a possible conservation of roles.
机译:调节的细胞周期进程取决于生长控制途径与基本细胞周期机制的适当整合。虽然已知许多中心分子,例如细胞周期蛋白,CDK和CKI,并且已经鉴定出许多修饰CDK的激酶和磷酸酶,但对影响这些分子的其他调控层知之甚少。为了确定新的细胞增殖调节剂,我们选择了人和酵母cDNA,它们在过表达时能够特异性克服交配信息素途径的细胞周期分支的G(1)阻滞信号,同时仍保持转录诱导的完整性科。我们已经确定了13个人类CPR(细胞周期进展恢复)基因和11个酵母OPY(过量生产诱导的信息素抗性酵母)基因,它们通过交配信息素特异性地阻止G(1)逮捕。 CPR基因代表了多种生化功能,包括新的细胞周期蛋白,抑癌剂结合蛋白,分子伴侣,转录因子,翻译因子,RNA结合蛋白以及新型蛋白。一些CPR基因需要单个CLN来促进信息素抵抗,而那些需要CLN3的基因会增加Cln3蛋白的基础水平。而且,一些酵母OPY基因与人CPR基因具有重叠的功能,表明可能保守作用。

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