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        Microarray Approaches for Analysis of Cell Cycle Regulatory Genes

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        Cell cycle phase-specific regulation of transcription is a major mechanism for the regulation of progress through the eukaryotic cell cycle. Hundreds of genes are known to be cell cycle regulated, including histones, cyclins, transcription factors, and genes for such cycle-specific processes as initiation of replication and cytokinesis. Many of the transcription factors involved in cell cycle regulation have been identified (Table 1 ). Many of these transcription factors and their downstream effector genes also play important roles outside of normal cell cycle progression, such as in induction of cell cycle arrest or apoptosis in response to deoxyribonucleic acid (DNA) damage or other cellular stresses. Loss of control of cell cycle-regulated genes is also known to play an important role in disease states such as genomic instability and cancer. For instance, p53, a cell cycle regulatory transcription factor, is also one of the most commonly mutated tumor-suppressor genes in human cancer (1 ), and hence one of the most exhaustively studied. Estimates based on a survey of p53 binding sites in the genome put the number of p53 regulated genes at several hundred (2 ), whereas the finding that p53 can affect the expression of some genes in the absence of direct DNA binding may increase this number (3 ). Genes known to be regulated by p53 are not restricted to roles in cell cycle progression, but are involved in other important cellular processes, such as DNA repair and apoptosis (Table 2 ). As this is an example of just one transcription factor, it is obvious that cell cycle dependent transcription involves many layers of complexity.
        Table 1  Representative Transcription Factors Involved in Cell Cycle Regulation

        Cell cycle phase

        Mammalian

        Yeast

        G0/G1

        AP-1 family (FOS, JUN)

         
         

        MYC

         
         

        MYB

         

        G1/S

        pRB

        SBF (Swi4, Swi6)

         

        E2F-1, E2F-2

        MBF (Mbp1, Swi6)

         

        TP53 (Tumor protein p53)

         

        G2/M

        Forkhead proteins

         
         

        (AFX, FKHR-L1)

        Fkh1, Fkh2, Ndd1

        M/G1

         

        Mcm1, Ace2, Swi5

        Table 2  Examples of Tp53 Effector Genes With Roles in Cellular Stress Response Processes

        Cell cycle control

        Apoptosis

        DNA repair

        Other

        CIP1/WAF1

        BAX

        XPC

        MDM2

        ClnG

        BCL-X

        DDB2

        FRA1

        ClnD1

        PAG608

        GADD45A

        ATF3

        WIP1

        FAS/APO1

        PCNA

        14-3-3σ

        EGF-R

        KILLER/DR5

        P53A2

        Rb

        TGF-α

        TRUNDD

         

        c-MYC

        Rb

        TRID

         

        MMP2

        PCNA

        Seven in absentia

         

        MAP4

        GADD45A

        IGF-BP3

         

        TSP1 & 2

        14-3-3σ

        PIG1 to PIG14

         

        BAI-1

        BTG2

           

        WIG1

        Seven in absentia

           

        Amyloid

        IGF-

           

        GML

        PIG1 to PIG14

           

        bFGF

        inhibin-β

           

        PIR121

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