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2005年07月26日

【期刊论文】Repressive Effect of Sp1 on the C/EBPα Gene Promoter: Role in Adipocyte Differentiation

汤其群, QI-QUN TANG, MAN-SHIOW JIANG, AND M. DANIEL LANE*

MOLECULAR AND CELLULAR BIOLOGY July 1999 p. 4855-4865,-0001,():

-1年11月30日

摘要

Expression of C/EBPα is required for differentiation of 3T3-L1 preadipocytes into adipocytes. Previous investigations indicated that transcription of the C/EBPα gene is sequentially activated during differentiation, initially by C/EBPβ and C/EBPδ and later by C/EBPα (autoactivation). These events are mediated by a C/EBP regulatory element in the promoter of the C/EBPα gene. This article presents evidence that members of the Sp family, notably Sp1, act repressively on the C/EBPα promoter prior to the induction of differentiation. Sp1 was shown to bind to a GC box at the 5' end of the C/EBP regulatory element in the C/EBPα promoter and, in so doing, to competitively prevent binding to and transactivation of the promoter by the C/EBPs. One of the differentiation inducers methylisobutylxanthine (a cAMP phosphodiesterase inhibitor) or Forskolin, both of which increase the cellular cAMP level, causes down-regulation of Sp1. This decrease in Sp1 level early in the differentiation program appears to facilitate access of C/EBPβ and/or C/EBPδ to the C/EBP regulatory element and, thereby, derepression of the C/EBPα gene.

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2005年07月26日

【期刊论文】Activation and centromeric localization of CCAAT/enhancer-binding proteins during the mitotic clonal expansion of adipocyte differentiation

汤其群, Qi-Qun Tang and M. Daniel Lane

GENES & DEVELOPMENT 13: 2231-2241,-0001,():

-1年11月30日

摘要

Hormonal induction of 3T3-L1 preadipocytes triggers a cascade of events that initiate differentiation into adipocytes. CCAAT/enhancer-binding proteinsβ andδ (C/EBPβ/δ) are expressed early in the differentiation program, but are not immediately active. After a long lag, C/EBPβ/δ become competent to bind to the C/EBP regulatory element in the C/EBPa gene promoter, C/EBPa being a transcriptional activator of numerous adipocyte genes. As C/EBPβ/δ acquire binding activity, they become localized to centromeres as preadipocytes synchronously enter S phase at the onset of mitotic clonal expansion. Localization to centromeres occurs through C/EBP consensus-binding sites in centromeric satellite DNA. C/EBPa, which is antimitotic, becomes centromere-associated much later in the differentiation program as mitotic clonal expansion ceases and the cells become terminally differentiated.

3T3-L1 preadipocyte, cell cycle, C/, EBP, satellite DNA, centromere

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2005年07月26日

【期刊论文】CCAAT/enhancer-binding proteinβ is required for mitotic clonal expansion during adipogenesis

汤其群, Qi-Qun Tang*†‡, Tamara C. Otto*, and M. Daniel Lane*

PNAS February 4, 2003 vol. 100 no.3 853,-0001,():

-1年11月30日

摘要

Hormonal induction of growth-arrested 3T3-L1 preadipocytes triggers a signaling cascade that culminates in adipogenesis. CCAAT/enhancer-binding protein (C/EBP)β is expressed immediately but gains DNA-binding activity only after a long lag as the cells synchronously begin mitotic clonal expansion (MCE). After MCE, a process required for adipogenesis, C/EBP activates expression of C/EBPα and peroxisome proliferator-activated receptorγ, which then transcriptionally activate genes that produce the adipocyte phenotype. When mouse embryo fibroblasts (MEFs) are subjected to the same differentiation protocol, a subset of the MEFs undergoes a similar program of events. Similar to 3T3-L1 preadipocytes, the MEFs reenter the cell cycle (as indicated by the synchronous expression of cyclin A) and undergo MCE as evidenced by the incorporation of BrdUrd into DNA and the formation of mitotic foci of cells that undergo adipogenesis. C/EBPβ is expressed immediately after induction but exhibits delayed acquisition of DNAbinding activity followed by expression of adipocyte markers and the accumulation of cytoplasmic triglyceride. MEFs from C/EBPβ (-/-) mice, however, neither undergo MCE nor differentiate into adipocytes. Forced expression of C EBP (LAP) but not dominant-negative C/EBPβ (LIP) in C/EBPβ (-/-) MEFs restores MCE, expression of adipocyte markers, and the capacity to form mitotic foci of cells that undergo adipogenesis. These findings demonstrate that expression of C/EBPβ is a prerequisite for MCE in the adipocyte-differentiation program.

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2005年07月26日

【期刊论文】Derepression of the C/EBPα gene during adipogenesis: Identification of AP-2α as a repressor

汤其群, MAN-SHIOW JIANG, QI-QUN TANG, JOHN MCLENITHAN, DEB GEIMAN, WENDY SHILLINGLAW*, WILLIAM J. HENZEL*, AND M. DANIEL LANE†

Proc. Natl. Acad. Sci. USA Vol. 95, pp. 3467-3471, March 1998 Biochemistry,-0001,():

-1年11月30日

摘要

ABSTRACT During adipogenesis, CCAAT/enhancer binding protein α(C/EBPα) serves as a pleiotropic transcriptional activator of adipocyte genes. Previously, we identified dual repressive elements in the C/EBPα gene and a putative transacting factor (C/EBPα undifferentiated protein, or CUP) expressed by preadipocytes, but not adipocytes, that bind to these elements. In the present investigation, CUP was purified 17,000-fold from nuclear extracts of 3T3-L1 preadipocytes. Amino acid sequence and mass spectral analysis of tryptic peptides derived from purifed CUP (molecular mass '50 kDa) revealed that the repressor is (or contains) an isoform of the transcription factor, AP-2α. Electrophoretic mobility shift and Western blot analysis on purified CUP and preadipocyte nuclear extracts confirmed the identity of CUP as AP-2α. Both AP-2α protein and CUP binding activity are expressed by preadipocytes and then decrease concomitantly during differentiation of 3T3-L1 preadipocytes into adipocytes. Consistent with a repressive role of AP-2α/CUP, an AP-2α1 expression vector, cotransfected with a C/EBPα promoter-reporter construct into 3T3-L1 adipocytes, inhibited reporter gene transcription. Taken together with previous results, these findings suggest that in preadipocytes the C/EBPα gene is repressed by AP-2α/CUP, which, upon induction of differentiation, is down-regulated, allowing expression of the gene.

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2005年07月26日

【期刊论文】g protein-α

汤其群, Frederick Y. Wu*†, Qi-Qun Tang‡§, Honglin Chen†, Colette ApRhys†, Christopher Farrell*, Jianmeng Chen*, Masahiro Fujimuro†, M. Daniel Lane‡, and Gary S. Hayward*†¶

PNAS August 6, 2002 vol. 99 no.16 10687,-0001,():

-1年11月30日

摘要

Kaposi sarcoma-associated herpesvirus (KSHV) is an oncogenic DNA virus that causes Kaposi sarcoma and AIDS-related primary effusion lymphoma (PEL). Here we show that KSHV lytic cycle replication in PEL cells induces G1 cell cycle arrest, presumably to facilitate the progression of viral DNA replication. Expression of a KSHV-encoded early lytic protein referred to as RAP or K8 is induced within 12-2h after the onset of lytic cycle induction in host PEL cells, and coincides with increased levels of both the endogenous C/EBPα and p21CIP-1 proteins in the nucleus of the same cells. The KSHV RAP protein binds to C/EBPα in vitro and stimulates C/EBPα-induced expression from both the C/EBPα and p21 promoters in cotransfected cells. A recombinant adenovirus expressing the RAP protein induced the expression of both the C/EBPα and p21 proteins in primary human fibroblasts, and flow cytometric analysis revealed a dramatic inhibition of G1 to S cell cycle progression in the same cells. All of these effects were abolished in cells that lack C/EBPα or by deletion of the basic leucine zipper region in RAP that interacts with C/EBPα. Therefore, C/EBPα is essential for the p21-mediated inhibition of G1 to S-phase progression by RAP in KSHV-infected host cells.

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