Literature DB >> 12819135

Exploration of the cell-cycle genes found within the RIKEN FANTOM2 data set.

Alistair R R Forrest1, Darrin Taylor, Sean Grimmond.   

Abstract

The cell cycle is one of the most fundamental processes within a cell. Phase-dependent expression and cell-cycle checkpoints require a high level of control. A large number of genes with varying functions and modes of action are responsible for this biology. In a targeted exploration of the FANTOM2-Variable Protein Set, a number of mouse homologs to known cell-cycle regulators as well as novel members of cell-cycle families were identified. Focusing on two prototype cell-cycle families, the cyclins and the NIMA-related kinases (NEKs), we believe we have identified all of the mouse members of these families, 24 cyclins and 10 NEKs, and mapped them to ENSEMBL transcripts. To attempt to globally identify all potential cell cycle-related genes within mouse, the MGI (Mouse Genome Database) assignments for the RIKEN Representative Set (RPS) and the results from two homology-based queries were merged. We identified 1415 genes with possible cell-cycle roles, and 1758 potential paralogs. We comment on the genes identified in this screen and evaluate the merits of each approach.

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Year:  2003        PMID: 12819135      PMCID: PMC403664          DOI: 10.1101/gr.1012403

Source DB:  PubMed          Journal:  Genome Res        ISSN: 1088-9051            Impact factor:   9.043


  36 in total

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6.  Isolation of Drosophila cyclin D, a protein expressed in the morphogenetic furrow before entry into S phase.

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7.  Genomic structure and chromosomal localization of mouse cyclin G1 gene.

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8.  A genome-wide transcriptional analysis of the mitotic cell cycle.

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9.  A single cyclin A gene and multiple cyclin B1-related sequences are dispersed in the mouse genome.

Authors:  L F Lock; J Pines; T Hunter; D J Gilbert; G Gopalan; N A Jenkins; N G Copeland; P J Donovan
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Review 10.  Radiation-induced mitotic delay: a genetic characterization in the fission yeast.

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4.  Cell-Specific Transcriptome Analysis Shows That Adult Pillar and Deiters' Cells Express Genes Encoding Machinery for Specializations of Cochlear Hair Cells.

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8.  Age-related transcriptome changes in Sox2+ supporting cells in the mouse cochlea.

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  8 in total

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