REGULATION OF MYELIN BASIC PROTEIN GENE EXPRESSION
REGULATION OF MYELIN BASIC PROTEIN GENE EXPRESSION
批准号:
2891817
负责人:
SHOHREH AMINI
金额:
$3.85万
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 1999-08-31
关键词:
Polyomavirus hominis 2 developmental genetics developmental neurobiology gene induction /repression genetically modified animals intermolecular interaction laboratory mouse myelin basic proteins myelination neurogenetics progressive multifocal leukoencephalopathy protein structure function tissue /cell culture transcription factor tumor suppressor proteins virus protein
中文摘要
髓鞘碱性蛋白(MBP)基因的MBI调控序列
在核苷酸-14到-50之间的跨度
转录起始点是细胞类型特异性转录的关键
编码髓鞘主要蛋白质组分的MBP基因
中枢神经系统(CNS)中的鞘。我们最近的研究表明
表明MB1序列与发育受控的
从小鼠脑中提取的DNA结合蛋白命名为MEF-1/PURα。MEF-
1/PURα在体外增强MBP的启动子活性
转录系统,并具有刺激转录的能力
少突胶质细胞系中的MBP基因。MEF-1/PURα展示
与JCV早期蛋白、T抗原结合的能力。过度表达
少突胶质细胞系中JCVT抗原抑制转录
MEF-1/PURα激活MBP启动子。JCV是一个人类
嗜神经性病毒在中枢神经系统复制时诱导
少突胶质细胞溶解破坏所致的脱髓鞘。在……里面
此外,转基因动物的结果表明,在
病毒全基因组缺失,JCV-T抗原表达
少突胶质细胞导致中枢神经系统髓鞘功能障碍。生化研究
已经表明髓鞘基因的水平大幅下降
在这些动物身上的表达。因此,我们假设这种关联
JCVT抗原与MEF-1/PURα功能失活MEF-1
1/purα,并导致MBP和其他髓鞘的异常表达
实验动物的基因。蛋白质-蛋白质研究的结果
已经表明MEF-1/PURα与细胞蛋白相互作用
P107,属于视网膜母细胞瘤肿瘤抑制基因家族。
P107在少突胶质细胞中的过表达可降低
MBP基因转录,提示p107可能代表细胞
JCV T抗原的同源物,它可能调节MEF-
1/Purα转录因子在脑发育过程中的作用。评估
我们的假设是,我们计划:i)确定MEF-1/PURα的水平
MBP基因表达及其与MB1基序的关系
大脑发育过程中的转基因小鼠;ii)检查
转基因小鼠和对照小鼠的MEF-1/PURα和JCVT抗原
在大脑发育的不同阶段产仔;iii)识别蛋白质
T抗原需要结合和失活的区域
MEF-1/PURα的转录功能;iv)决定
T抗原持续表达对MEF-1灭活的要求
1/purα并诱导中枢神经系统髓鞘减退;以及v)研究
P107通过MEF-1调控MBP基因转录的研究
1/PURα途径,并确定和表征其他潜在的
细胞蛋白在与MEF-1/PURα相互作用时修饰
它在大脑发育过程中的活动。JCVT抗原在非霍奇金淋巴瘤中的应用
转基因小鼠模型提供了一个很好的破译机会
髓鞘基因调控的调控机制
在正常和疾病状态下的表达。
英文摘要
The MBI regulatory sequence of the myelin basic protein (MBP) gene
spanning between nucleotides -14 to -50 with respect to the
transcription start site is critical for cell type-specific transcription
of the MBP gene which encodes the major protein component of the myelin
sheath in the central nervous system (CNS). Our recent studies have
indicated that the MB1 sequence binds to a developmentally controlled
DNA-binding protein from mouse brain named MEF-1/Pur alpha. MEF-
1/Pur alpha increases the promoter activity of MBP in an in vitro
transcription system and has the ability to stimulate transcription of the
MBP gene in oligodendrocytic cell lines. MEF-1/Pur alpha exhibits
binding ability to the JCV early protein, T-antigen. Overexpression of
JCV T-antigen in oligodendrocytic cell lines abrogates transcriptional
activation of the MBP promoter by MEF-1/Pur alpha. JCV is a human
neurotropic virus which upon replication in the CNS induces
demyelination due to the lytic destruction of oligodendrocytes. In
addition, results from transgenic animals have indicated that, in the
absence of the entire viral genome, expression of JCV-T antigen in
oligodendrocytes causes dysmyelination of the CNS. Biochemical studies
have indicated a substantial decrease in the level of myelin gene
expression in these animals. Thus, we hypothesize that the association
of JCV T-antigen with MEF-1/Pur alpha functionally inactivates MEF-
1/Pur alpha and results in aberrant expression of MBP and other myelin
genes in experimental animals. Results from protein-protein studies
have indicated that MEF-1/Pur alpha interacts with the cellular protein
p107, which belongs to the retinoblastoma tumor suppressor gene family.
Overexpression of p107 in oligodendrocytic cells decreases the level of
MBP gene transcription, suggesting that p107 may represent the cellular
homologue for JCV T-antigen, which may modulate activity of the MEF-
1/Pur alpha transcription factor during brain development. To evaluate
our hypothesis, we plan to: I) determine the level of MEF-1/Pur alpha
gene expression and its association with the MB1 motif of MBP in
transgenic mice during brain development; ii) examine the association of
MEF-1/Pur alpha and JCV T-antigen in transgenic mice and control
littermates at various stages of brain development; iii) identify protein
regions which are required by T-antigen to associate with and inactivate
the transcriptional function of MEF-1/Pur alpha; iv) determine the
requirements for continual expression of T-antigen to inactivate of MEF-
1/Pur alpha and induce hypomyelination of CNS; and v) investigate the
potential of p107 in modulating MBP gene transcription through MEF-
1/Pur alpha pathway and identify and characterize other potential
cellular proteins, which upon interaction with MEF-1/Pur alpha, modify
its activity during brain development. The use of JCV T-antigen in a
transgenic mouse model provides an excellent opportunity to decipher
the regulatory mechanisms involved in the control of myelin gene
expression in normal and disease states.
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