Mitotic regulation of TFIID: Inhibition of activator-dependent transcription and changes in subcellular localization

被引:171
作者
Segil, N
Guermah, M
Hoffmann, A
Roeder, RG
Heintz, N
机构
[1] ROCKEFELLER UNIV,MOL BIOL LAB,NEW YORK,NY 10021
[2] ROCKEFELLER UNIV,BIOCHEM & MOL BIOL LAB,NEW YORK,NY 10021
[3] ROCKEFELLER UNIV,HOWARD HUGHES MED INST,NEW YORK,NY 10021
关键词
mitosis; transcription; TFIID; TAFs; phosphorylation; chromosome localization; RNA-POLYMERASE-II; TATA-BINDING-PROTEIN; CELL-CYCLE; GAL4; DERIVATIVES; PHOSPHORYLATION; MECHANISM; INVITRO; COMPLEX; MITOSIS; CHROMOSOMES;
D O I
10.1101/gad.10.19.2389
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Mitosis in higher eukaryotes is accompanied by a general inhibition of transcription. To begin to understand the mechanisms underlying this inhibition we have examined the behavior of the general transcription factor TFIID during mitosis; Immunocytochemistry and subcellular fractionation studies indicate that the majority of TFIID is displaced from the disassembling prophase nucleus to the mitotic cytoplasm around the time of nuclear envelope breakdown. However, a subpopulation of TFIID remains associated tightly with the condensed mitotic chromosomes. Metabolic labeling of mitotic cells revealed that several subunits of TFIID undergo mitosis-specific phosphorylation, but in spite of these changes, the TFIID complex remains intact. Functional analysis of purified TFIID from mitotic cells shows that phosphorylated forms are unable to direct activator-dependent transcription, but that this activity is restored upon dephosphorylation. These results demonstrate that TFIID regulation by phosphorylation is likely to have an important role in mitotic inhibition of RNA polymerase II transcription. In addition, they suggest a mechanism for regulating gene expression through the selective disruption of polymerase II promoter structures during mitosis.
引用
收藏
页码:2389 / 2400
页数:12
相关论文
共 67 条
[1]  
[Anonymous], 1988, Antibodies: a laboratory manual
[3]   Biochemistry and structural biology of transcription factor IID (TFIID) [J].
Burley, SK ;
Roeder, RG .
ANNUAL REVIEW OF BIOCHEMISTRY, 1996, 65 :769-799
[4]   ASSEMBLY OF RECOMBINANT TFIID REVEALS DIFFERENTIAL COACTIVATOR REQUIREMENTS FOR DISTINCT TRANSCRIPTIONAL ACTIVATORS [J].
CHEN, JL ;
ATTARDI, LD ;
VERRIJZER, CP ;
YOKOMORI, K ;
TJIAN, R .
CELL, 1994, 79 (01) :93-105
[5]   UNIQUE TATA-BINDING PROTEIN-CONTAINING COMPLEXES AND COFACTORS INVOLVED IN TRANSCRIPTION BY RNA POLYMERASE-II AND POLYMERASE-III [J].
CHIANG, CM ;
GE, H ;
WANG, ZX ;
HOFFMANN, A ;
ROEDER, RG .
EMBO JOURNAL, 1993, 12 (07) :2749-2762
[6]   RNA SYNTHESIS IN ROOTS OF VICIA FABA [J].
DAVIDSON, D .
EXPERIMENTAL CELL RESEARCH, 1964, 35 (02) :317-&
[7]   A SINGLE CDNA, HTFIIA/ALPHA, ENCODES BOTH THE P35 AND P19 SUBUNITS OF HUMAN TFIIA [J].
DEJONG, J ;
ROEDER, RG .
GENES & DEVELOPMENT, 1993, 7 (11) :2220-2234
[8]   ISOLATION OF COACTIVATORS ASSOCIATED WITH THE TATA-BINDING PROTEIN THAT MEDIATE TRANSCRIPTIONAL ACTIVATION [J].
DYNLACHT, BD ;
HOEY, T ;
TJIAN, R .
CELL, 1991, 66 (03) :563-576
[9]   REGULATION OF RNA SYNTHESIS DURING MITOSIS [J].
FARBER, J ;
STEIN, G ;
BASERGA, R .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1972, 47 (04) :790-&
[10]   IMPROVED METHODS FOR THE ISOLATION OF INDIVIDUAL AND CLUSTERED MITOTIC CHROMOSOMES [J].
GASSER, SM ;
LAEMMLI, UK .
EXPERIMENTAL CELL RESEARCH, 1987, 173 (01) :85-98