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针对细胞周期蛋白E亚效突变的显性修饰因子进行的遗传筛选,鉴定出果蝇S期进入的新型调节因子。

A genetic screen for dominant modifiers of a cyclin E hypomorphic mutation identifies novel regulators of S-phase entry in Drosophila.

作者信息

Brumby Anthony, Secombe Julie, Horsfield Julie, Coombe Michelle, Amin Nancy, Coates Deborah, Saint Robert, Richardson Helena

机构信息

Peter MacCallum Cancer Centre, East Melbourne, Victoria, 3002, Australia.

出版信息

Genetics. 2004 Sep;168(1):227-51. doi: 10.1534/genetics.104.026617.

Abstract

Cyclin E together with its kinase partner Cdk2 is a critical regulator of entry into S phase. To identify novel genes that regulate the G1- to S-phase transition within a whole animal we made use of a hypomorphic cyclin E mutation, DmcycEJP, which results in a rough eye phenotype. We screened the X and third chromosome deficiencies, tested candidate genes, and carried out a genetic screen of 55,000 EMS or X-ray-mutagenized flies for second or third chromosome mutations that dominantly modified the DmcycEJP rough eye phenotype. We have focused on the DmcycEJP suppressors, S(DmcycEJP), to identify novel negative regulators of S-phase entry. There are 18 suppressor gene groups with more than one allele and several genes that are represented by only a single allele. All S(DmcycEJP) tested suppress the DmcycEJP rough eye phenotype by increasing the number of S phases in the postmorphogenetic furrow S-phase band. By testing candidates we have identified several modifier genes from the mutagenic screen as well as from the deficiency screen. DmcycEJP suppressor genes fall into the classes of: (1) chromatin remodeling or transcription factors; (2) signaling pathways; and (3) cytoskeletal, (4) cell adhesion, and (5) cytoarchitectural tumor suppressors. The cytoarchitectural tumor suppressors include scribble, lethal-2-giant-larvae (lgl), and discs-large (dlg), loss of function of which leads to neoplastic tumors and disruption of apical-basal cell polarity. We further explored the genetic interactions of scribble with S(DmcycEJP) genes and show that hypomorphic scribble mutants exhibit genetic interactions with lgl, scab (alphaPS3-integrin--cell adhesion), phyllopod (signaling), dEB1 (microtubule-binding protein--cytoskeletal), and moira (chromatin remodeling). These interactions of the cytoarchitectural suppressor gene, scribble, with cell adhesion, signaling, cytoskeletal, and chromatin remodeling genes, suggest that these genes may act in a common pathway to negatively regulate cyclin E or S-phase entry.

摘要

细胞周期蛋白E与其激酶伴侣Cdk2共同作用,是进入S期的关键调节因子。为了在完整动物体内鉴定调控G1期到S期转换的新基因,我们利用了一个低表达的细胞周期蛋白E突变体DmcycEJP,它会导致粗糙眼表型。我们筛选了X染色体和第三条染色体的缺失,测试了候选基因,并对55000只经EMS或X射线诱变的果蝇进行了遗传筛选,以寻找能显性修饰DmcycEJP粗糙眼表型的第二条或第三条染色体突变。我们重点研究了DmcycEJP抑制子S(DmcycEJP),以鉴定进入S期的新负调控因子。有18个抑制基因群具有多个等位基因,还有几个基因仅由单个等位基因代表。所有测试的S(DmcycEJP)都通过增加形态发生后沟S期带中的S期数量来抑制DmcycEJP粗糙眼表型。通过测试候选基因,我们从诱变筛选以及缺失筛选中鉴定出了几个修饰基因。DmcycEJP抑制基因分为以下几类:(1) 染色质重塑或转录因子;(2) 信号通路;(3) 细胞骨架;(4) 细胞黏附;(5) 细胞结构肿瘤抑制因子。细胞结构肿瘤抑制因子包括scribble、致死-2-巨幼虫(lgl)和盘状大蛋白(dlg),其功能丧失会导致肿瘤形成和顶端-基底细胞极性的破坏。我们进一步探究了scribble与S(DmcycEJP)基因的遗传相互作用,结果表明低表达的scribble突变体与lgl、痂(scab,αPS3整合素——细胞黏附)、叶足虫(phyllopod,信号传导)、dEB1(微管结合蛋白——细胞骨架)和莫伊拉(moira,染色质重塑)表现出遗传相互作用。细胞结构抑制基因scribble与细胞黏附、信号传导、细胞骨架和染色质重塑基因之间的这些相互作用表明,这些基因可能在一条共同途径中发挥作用,对细胞周期蛋白E或进入S期进行负调控。

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