GROWTH RELATED GENES ON CHROMOSOME 11P155
GROWTH RELATED GENES ON CHROMOSOME 11P155
批准号:
2453793
负责人:
DALE M FRANK
金额:
$7.96万
依托单位国家:
美国
项目类别:
财政年份:
1998
资助国家:
美国
项目状态:
已结题
起止时间:
1998-02-01 至 2003-01-31
关键词:
Wilms' tumor animal genetic material tag cell growth regulation choriocarcinoma chromosomes developmental genetics embryo neoplasm embryogenesis flow cytometry gene expression genetically modified animals genomic imprinting human genetic material tag hydatidiform mole immunocytochemistry immunoprecipitation in situ hybridization introns laboratory mouse laboratory rabbit neoplastic growth placenta polymerase chain reaction single strand conformation polymorphism southern blotting yeast two hybrid system
中文摘要
描述(申请人的描述):基因组印记导致
某些基因的亲本依赖性单等位基因在小麦中的表达
后代。理论论证和有限的实验数据表明
不成比例的印记基因可能参与了
控制胎儿和胎盘的生长。低分辨率映射和
机械论模型表明,基因组印记可能是区域性的,
包含印记基因簇的特定染色体片段。
印记的这两个特征可以帮助解释
印记染色体区域在某些人类胚胎发病中的作用
肿瘤。申请者实验室的一个主要兴趣是测试
假设在染色体11p15.5上有一个扩展的印迹结构域
在这个染色体区域有多个印记基因
有助于正常生长控制和胚胎肿瘤的形成。这个
申请者组装了一个跨越700kb染色体的克隆重叠群
11页15.5页。这个重叠群位于最小区域内,可能会丢失
Wilms瘤(WT)的母系等位基因,包括几个已知的印记
基因。这个重叠群的外显子捕获已经发现了6个新基因,并且
基因分离工作正在进行中。这些基因中的第一个
选择进行分析的IPL(印迹于胎盘和肝脏)编码一个主要的
胎盘记录。该基因的预测蛋白质产物显示
与淋巴细胞转录本TDAG51的序列相似性,似乎是
参与使细胞易受凋亡的影响。他们发现,
IPL基因在人胎盘中以单等位基因表达,这是
很可能反映了父母的印记。虽然IPL不太可能成为WT
基因,它可能调节正常胎盘的生长,因此也可能发挥作用
在胎盘肿瘤中的作用。目前的建议是调查
IPL基因的生物学作用及新基因的分离鉴定
来自染色体11p15.5这个区域的印记基因,调节生长
胎儿和胎盘。在目标1中,申请者将隔离老鼠
IPL基因的同源基因,他们将测试小鼠IP1的印记
使用种间小鼠杂交,他们将确定其内含子/外显子
结构。在目标2中,他们将描述细胞的生物学功能
用真核细胞原位杂交技术研究小鼠和人IPL基因
表达系统,以及构建生殖系缺失小鼠。在AIM 3中
他们将把对IPL的分析扩展到肿瘤人胎盘
纸巾。在目标4中,他们将从他们的
染色体11p15.5克隆重叠群并研究它们对
胎儿和胎盘的正常生长方式与所描述的方法相似
对于IPL基因。
英文摘要
DESCRIPTION (Applicant's Description): Genomic imprinting results in
parent-of-origin dependent monoallelic expression of certain genes in the
offspring. T h e o retical arguments and limited experimental data suggest
that a disproportionate number of imprinted genes may be involved in the
control of fetal and placental growth. Low-resolution mapping and
mechanistic models suggest that genomic imprinting may be regional, with
particular chromosomal segments containing clusters of imprinted genes.
These two features of imprinting could help to explain the involvement of
imprinted chromosomal regions in the pathogenesis of certain human embryonal
tumors. A major interest of the applicants' laboratory is to test the
hypothesis that there is an extended imprinted domain on chromosome 11p15.5
and that there are multiple imprinted genes in this chromosomal region which
contribute to normal growth control and embryonal tumorigenesis. The
applicants have assembled a clone contig spanning 700 Kb of chromosome
11p15.5. This contig lies within the minimal region subject to loss of
maternal alleles in Wilms' tumor (WT) and includes several known imprinted
genes. Exon-trapping of this contig has uncovered 6 new genes, and
gene-isolation efforts are ongoing. The first of these genes which they
chose for analysis, IPL (imprinted in placenta and liver), encodes a major
placental transcript. The predicted protein product of this gene shows
sequence similarity to a lymphocyte transcript, TDAG51, which appears to be
involved in rendering cells susceptible to apoptosis. They have found that
the IPL gene is monoallelically expressed in human placenta, and this is
likely to reflect parental imprinting. While IPL is not likely to be a WT
gene, it may regulate growth of the normal placenta, and may thus also play
a role in placental neoplasia. The current proposal is to investigate the
biological role of the IPL gene and to isolate and characterize additional
imprinted genes from this region of chromosome 11p15.5 which regulate growth
of the fetus and placenta. In Aim 1 the applicants will isolate the mouse
orthologue of the IPL gene, they will test the imprinting of murine Ip1
using interspecific mouse crosses and they will determine its intron/exon
structure. In Aim 2 they will characterize the biological function of the
mouse and human IPL gene by in situ hybridization studies, by eukaryotic
expression systems, and by construction of germline-deletion mice. In Aim 3
they will extend their analysis of IPL to neoplastic human placental
tissues. In Aim 4 they will isolate additional imprinted genes from their
chromosome 11p15.5 clone contig and study them in terms of their effects on
normal fetal and placental growth by approaches similar to those described
for the IPL gene.
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GROWTH RELATED GENES ON CHROMOSOME 11P155
-
批准号:6150267
-
项目类别:
-
资助金额:$9.09万
-
财政年份:1998
-
负责人:DALE M FRANK
-
依托单位:
GROWTH RELATED GENES ON CHROMOSOME 11P155
-
批准号:2871990
-
项目类别:
-
资助金额:$7.97万
-
财政年份:1998
-
负责人:DALE M FRANK
-
依托单位:
GROWTH RELATED GENES ON CHROMOSOME 11P155
-
批准号:6350261
-
项目类别:
-
资助金额:$9.09万
-
财政年份:1998
-
负责人:DALE M FRANK
-
依托单位:
GROWTH RELATED GENES ON CHROMOSOME 11P155
-
批准号:6497676
-
项目类别:
-
资助金额:$9.09万
-
财政年份:1998
-
负责人:DALE M FRANK
-
依托单位: