TRANSCRIPTION REGULATION BY SV40 SMALL T
TRANSCRIPTION REGULATION BY SV40 SMALL T
批准号:
3195180
负责人:
MARY R LOEKEN
金额:
$17.98万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
1992
资助国家:
美国
项目状态:
已结题
起止时间:
1992-07-01 至 1996-04-30
中文摘要
转录因子EIIF控制着一些RNA聚合酶II
-在生长细胞中诱导的转录基因,如c-myc、
EGF受体和二氢叶酸还原酶。它最初被确定为一种
宿主细胞编码的因子,与腺病毒E2a启动子结合。EIIF
可以在包括视网膜母细胞瘤基因产物的复合体中发现
(Rb)和Cyclin A Rb和Cyclin A结合似乎抑制
依赖EIIF的转录。Rb和Cyclin A在#年从EIIF释放
对细胞周期控制信号的反应,或对Rb或Cyclin A结合的反应
肿瘤病毒癌基因如SV40大T抗原或腺病毒EIA。
我们先前已经发现sv40小t抗原反式激活。
瞬时转染质粒DNA过程中E2a启动子的表达
这需要EIIF网站。小t不结合Rb和细胞周期蛋白A。
因此,依赖于EIIF的转录的激活可能会
涉及到新的、未被发现的机制。
转录因子TFIIIB和TFIIIC控制着一类RNA
聚合酶III转录的基因,包括tRNA基因和
腺病毒VA-I启动子。这些转录因子似乎也是
在生长、转化或病毒感染的细胞中被激活。小t
在瞬时转染过程中反式激活VA-I启动子。我们有
通过测试小T突变体发现,小T上的不同结构
似乎是激活E2A和VA-I启动子所必需的。
因此,可能至少有两个细胞过程是
受到小T的刺激。
我们建议研究这两类病毒的作用机制
基因是受调控的。我们将使用SV40小T作为代理进行调查
这些过程。我们将通过凝胶位移分析来检验这些因素
与表达小t的细胞相比,使用表达小t的细胞提取液
不。在可能的情况下,我们将尝试关联任何可检测到的变化
通过凝胶移位分析和体外转录增加。我们会
继续研究小t突变体以确定所需的结构
转录调控。这些信息将被用来确定如何
小T与细胞蛋白相互作用,介导其作用。
抄写。我们还将检查鉴定出的细胞
与小T结合的蛋白质,即2A型磷酸酶(PP2A),
由于EIIF和TFIIIC因子通过小T介导反式激活
似乎受到磷酸化的调节,可能是小T
通过抑制其靶标的去磷酸化来激活转录
转录因子。这些实验将勾勒出
可能导致肿瘤的真核转录调控
其他未经调查发现的转变
系统。
英文摘要
The transcription factor, EIIF, controls some RNA polymerase II
-transcribed genes that are induced in growing cells, such as c-myc, the
EGF receptor, and dihydrofolate reductase. It was first identified as a
host cell-encoded factor that binds to the Adenovirus E2A promoter. EIIF
can be found in a complex that includes the retinoblastoma gene product
(Rb) and cyclin A. Rb and cyclin A binding appear to inhibit
EIIF-dependent transcription. Rb and cyclin A are released from EIIF in
response to cell cycle control signals, or upon binding of Rb or cyclin A
by tumor virus oncogenes such as SV40 large T antigen or Adenovirus EIA.
We have previously discovered that SV40 small t antigen trans-activates
the E2A promoter during transient transfection with plasmid DNA and that
this requires the EIIF sites. Small t does not bind Rb and cyclin A.
Therefore, activation of EIIF-dependent transcription is likely to
involve novel, undiscovered mechanisms.
The transcription factors, TFIIIB and TFIIIC, control a class of RNA
polymerase III-transcribed genes that include tRNA genes and the
Adenovirus VA-I promoter. These transcription factors also appear to be
activated in growing, transformed, or virus infected cells. Small t
trans-activates the VA-I promoter during transient transfection. We have
found by testing small t mutants that different structures on small t
appear to be required to activate the E2A and the VA-I promoters.
Therefore, there may be at least two cellular processes that are
stimulated by small t.
We propose to investigate the mechanisms by which these two classes of
genes are regulated. We will use SV40 small t as an agent to investigate
these processes. We will examine these factors by gel shift analysis
using extracts of cells that express small t compared to those that do
not. Where possible, we will attempt to correlate any changes detectable
by gel shift analysis with increased transcription in vitro. We will
continue to study small t mutants to identify the structures required for
transcription regulation. This information will be used to determine how
small t interacts with cellular proteins the mediate its effects off
transcription. We will also examine whether the one identified cellular
protein that binds to small t, the enzyme type 2A phosphatase (PP2A),
mediates trans-activation by small t. Since the EIIF and TFIIIC factors
appear to be regulated by phosphorylation, it is possible that small t
activates transcription by inhibiting the dephosphorylation of its target
transcription factors. These experiments will outline pathways of
eukaryotic transcriptional control that may result in neoplastic
transformation which have not been revealed by investigation of other
systems.
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