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1.
Cell Rep ; 16(6): 1774-1786, 2016 08 09.
Artigo em Inglês | MEDLINE | ID: mdl-27477279

RESUMO

Faithful inheritance of eukaryotic genomes requires the orchestrated activation of multiple DNA replication origins (ORIs). Although origin firing is mechanistically conserved, how origins are specified and selected for activation varies across different model systems. Here, we provide a complete analysis of the nucleosomal landscape and replication program of the human parasite Leishmania major, building on a better evolutionary understanding of replication organization in Eukarya. We found that active transcription is a driving force for the nucleosomal organization of the L. major genome and that both the spatial and the temporal program of DNA replication can be explained as associated to RNA polymerase kinetics. This simple scenario likely provides flexibility and robustness to deal with the environmental changes that impose alterations in the genetic programs during parasitic life cycle stages. Our findings also suggest that coupling replication initiation to transcription elongation could be an ancient solution used by eukaryotic cells for origin maintenance.


Assuntos
Cromatina/parasitologia , Replicação do DNA/genética , DNA/metabolismo , Leishmania major/genética , Animais , Período de Replicação do DNA/genética , Células Eucarióticas/parasitologia , Humanos , Nucleossomos/parasitologia , Parasitos/genética , Origem de Replicação/genética , Transcrição Gênica
2.
Nucleic Acids Res ; 42(11): 7057-68, 2014 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-24753426

RESUMO

Robustness and completion of DNA replication rely on redundant DNA replication origins. Reduced efficiency of origin licensing is proposed to contribute to chromosome instability in CDK-deregulated cell cycles, a frequent alteration in oncogenesis. However, the mechanism by which this instability occurs is largely unknown. Current models suggest that limited origin numbers would reduce fork density favouring chromosome rearrangements, but experimental support in CDK-deregulated cells is lacking. We have investigated the pattern of origin firing efficiency in budding yeast cells lacking the CDK regulators Cdh1 and Sic1. We show that each regulator is required for efficient origin activity, and that both cooperate non-redundantly. Notably, origins are differentially sensitive to CDK deregulation. Origin sensitivity is independent on normal origin efficiency, firing timing or chromosomal location. Interestingly, at a chromosome arm, there is a shortage of origin firing involving active and dormant origins, and the extent of shortage correlates with the severity of CDK deregulation and chromosome instability. We therefore propose that CDK deregulation in G1 phase compromises origin redundancy by decreasing the number of active and dormant origins, leading to origin shortage and increased chromosome instability.


Assuntos
Proteínas Cdh1/fisiologia , Instabilidade Cromossômica , Proteínas Inibidoras de Quinase Dependente de Ciclina/fisiologia , Replicação do DNA , Origem de Replicação , Proteínas de Saccharomyces cerevisiae/fisiologia , Proteínas Cdh1/genética , Proteínas Inibidoras de Quinase Dependente de Ciclina/genética , Período de Replicação do DNA , Deleção de Genes , Dosagem de Genes , Proteínas de Saccharomyces cerevisiae/genética
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