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Characterization of a Novel Origin Recognition Complex-Like Complex: Implications for DNA Recognition, Cell Cycle Control, and Locus-Specific Gene Amplification

机译:新型起源识别复合物-类似复合物的表征:对DNA识别,细胞周期控制和特定基因的基因扩增的影响。

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摘要

The origin recognition complex (ORC) plays a central role in eukaryotic DNA replication. Here we describe a unique ORC-like complex in Tetrahymena thermophila, TIF4, which bound in an ATP-dependent manner to sequences required for cell cycle-controlled replication and gene amplification (ribosomal DNA [rDNA] type I elements). TIF4's mode of DNA recognition was distinct from that of other characterized ORCs, as it bound exclusively to single-stranded DNA. In contrast to yeast ORCs, TIF4 DNA binding activity was cell cycle regulated and peaked during S phase, coincident with the redistribution of the Orc2-related subunit, p69, from the cytoplasm to the macronucleus. Origin-binding activity and nuclear p69 immunoreactivity were further regulated during development, where they distinguished replicating from nonreplicating nuclei. Both activities were lost from germ line micronuclei following the programmed arrest of micronuclear replication. Replicating macronuclei stained with Orc2 antibodies throughout development in wild-type cells but failed to do so in the amplification-defective rmm11 mutant. Collectively, these findings indicate that the regulation of TIF4 is intimately tied to the cell cycle and developmentally programmed replication cycles. They further implicate TIF4 in rDNA gene amplification. As type I elements interact with other sequence-specific single-strand breaks (in vitro and in vivo), the dynamic interplay of Orc-like (TIF4) and non-ORC-like proteins with this replication determinant may provide a novel mechanism for regulation.
机译:起源识别复合体(ORC)在真核DNA复制中起着核心作用。在这里,我们描述了嗜热四膜膜虫TIF4中独特的ORC样复合物,该复合物以ATP依赖的方式与细胞周期控制的复制和基因扩增所需的序列结合(核糖体DNA [rDNA] I型元素)。 TIF4的DNA识别模式不同于其他特征性ORC,因为它仅与单链DNA结合。与酵母ORC相反,TIF4 DNA结合活性受细胞周期调节,并在S期达到高峰,与Orc2相关亚基p69从细胞质到大核的重新分布相吻合。起源结合活性和核p69免疫反应性在发育过程中得到了进一步的调控,它们区分复制与非复制核。在程序性停止微核复制后,两种活性都从种系微核中丢失。在野生型细胞的整个发育过程中,复制用Orc2抗体染色的大核,但在扩增缺陷的rmm11突变体中却没有这样做。总而言之,这些发现表明,TIF4的调节与细胞周期和发育性复制周期密切相关。它们进一步暗示TIF4参与rDNA基因扩增。当I型元素与其他序列特异性单链断裂(体外和体内)相互作用时,具有这种复制决定簇的Orc样(TIF4)和非ORC样蛋白的动态相互作用可能为调节提供新的机制。 。

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