ESTROGEN REGULATED MRNA BINDING PROTEIN IN RNA STABILITY
ESTROGEN REGULATED MRNA BINDING PROTEIN IN RNA STABILITY
批准号:
2444150
负责人:
DAVID J SHAPIRO
金额:
$17.93万
依托单位国家:
美国
项目类别:
财政年份:
1995
资助国家:
美国
项目状态:
已结题
起止时间:
1995-08-01 至 1999-06-30
关键词:
RNA binding protein RNase protection assay Xenopus chemical binding chemical stability complementary DNA estrogens gel mobility shift assay gene induction /repression genetic library genetic transcription hormone regulation /control mechanism human genetic material tag messenger RNA molecular cloning northern blottings nucleic acid sequence nucleic acid structure phosphorylation posttranscriptional RNA processing protein purification site directed mutagenesis tissue /cell culture vitellogenins western blottings
中文摘要
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英文摘要
We have identified an estrogen-inducible protein which binds with high
specificity to a segment of the 3'-untranslated region of the estrogen-
stabilized mRNA encoding the egg yolk precursor protein, vitellogenin.
Since this protein is widely distributed in different tissues of Xenopus
laevis, is regulated by both estrogen and testosterone, and we have
identified a human homologue, it likely plays an important role in steroid
hormone control of mRNA degradation. Our approach is to clone, express
and characterize the protein, to investigate its regulation by estrogen
and other hormones, determine the precise sequence and structure of the
mRNA binding site, identify additional mRNAs which bind the protein and
investigate its role in the regulation of mRNA stability.
The high specificity with which the protein binds to its recognition
sequence, and our development of a nitrocellulose filter binding assay
make direct screening of a cDNA expression library our preferred method
for cloning and initial expression. If this proves impossible, we will
use biochemical techniques including RNA affinity chromatography to purify
the protein, obtain partial amino acid sequence, and use degenerate
oligonucleotides to screen a cDNA library. The Xenopus cDNA clone will be
used to isolate a human binding protein cDNA clone.
Nucleic acid probes and antibodies to the expressed protein will be used
to determine whether estrogen induces the mRNA and protein, or increases
the affinity of pre-existing protein for its mRNA binding site. We will
then carry out a more detailed analysis of the regulatory mechanism.
To further characterize the mRNA binding site we will use an iterative in
vitro selection method, RNase protection and mutagenesis. The in vitro
selection provides an unusual approach to identifying a consensus mRNA
binding site, and generating up-binding mutants of the binding site, and
will facilitate modeling the secondary structure of the binding site. We
will use the sequence and structure of the consensus binding site to
identify other mRNAs whose stability is regulated which contain potential
binding sites for the protein.
We will determine the relationship between estrogen induction, binding of
the protein to its recognition sequence and control of vitellogenin mRNA
stability. We will also examine the role of the binding protein in
controlling the stability of one human mRNA in which we identify a binding
site. We will determine whether the initial RNase cleavage site is
located near the protein binding site.
These studies should provide important insights into steroid hormone
control of mRNA stability.
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海外基金