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COMPARATIVE GENETICS OF SKELETAL DEFECTS

COMPARATIVE GENETICS OF SKELETAL DEFECTS
骨骼缺陷的比较遗传学
批准号:
6830374
负责人:
Richard M Harland
金额:
$34.2万
依托单位国家:
美国
项目类别:
财政年份:
2004
资助国家:
美国
项目状态:
已结题
起止时间:
2004-09-30 至 2009-07-31

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中文摘要
翻译
描述(申请人提供):这项研究的目标是了解先天性骨骼疾病导致明显的发育和放射学骨骼改变的分子机制。特别是,PI对两种进行性骨质增生症感兴趣:范布赫姆病(VB)(MIM 239100)和硬化症(MIM 269500)。VB是一种严重的常染色体隐性遗传性骨病,以颅面畸形和全身性骨过度生长为特征。硬化症是一种骨骼发育不良,与VB非常相似,但有更明显的放射学骨改变(颌骨;长骨;巨人症)和手部异常(并指)。连锁分析将这两种疾病定位到相同的基因座(17q12-q21),硬化症患者被发现携带BMP拮抗剂基因skerostin(Sost)的几个编码突变。相比之下,VB患者没有表现出SOST编码突变,但显示了52kb的非编码缺失,在SOST转录本下游35kb。在小鼠中使用人类转基因,PI已经证明了硬化症和VB是等位的,并且52kb的缺失移除了必要的SOST转录调控元件,改变了人类SOST的表达模式。此外,在小鼠中,SOST水平的增加会导致严重的肢体异常(融合和分指),而缺乏SOST会导致骨质增生。这些初步观察表明,SOST在脊椎动物的肢体发育以及整个成体生活中都发挥着关键的作用,控制着骨骼的动态平衡。由于SOST从鱼类到人类都高度保守,PI有兴趣阐明该分子在不同脊椎动物骨骼发育过程中的作用。因此,这项资助侧重于破译SOST的几个基本特性,包括1)SOST特定调控元件的鉴定和表征,2)确定SOST在肢体模式和成年骨骼动态平衡中的作用,以及3)研究SOST在不同脊椎动物谱系中的作用。
英文摘要
DESCRIPTION (provided by applicant): The goal of this research is to understand the molecular mechanisms by which congenital skeletal disorders lead to pronounced developmental and radiological bone alterations. In particular the PIs are interested in two progressive hyperosteosis disorders: Van Buchem disease (VB) (MIM 239100) and Sclerosteosis (MIM 269500). VB is a severe, autosomal-recessive bone disorder characterized by cranio-facial distortion and generalized bone overgrowth. Sclerosteosis is a skeletal dysplasia highly similar to VB but with more pronounced radiological bone alterations (jaw; long bones; gigantism) and the presence of hand abnormalities (syndactyly). Linkage analysis mapped both diseases to the same locus (17q12-q21), and Sclerosteosis patients were found to carry several coding mutations in the BMP-antagonist gene Sclerostin (Sost). In contrast, VB patients exhibit no Sost coding mutations, however displayed a 52kb noncoding deletion, 35kb downstream of the Sost transcript. Using human transgenes in mice, the PIs have demonstrated that sclerosteosis and VB are allelic, and that the 52kb deletion removes essential Sost transcriptional regulatory elements, altering the human Sost expression pattern. Also, in mice, increased levels of Sost result in severe limb abnormalities (fused and split digits), while the lack of mouse Sost leads to hyperosteosis. These initial observations suggest that Sost plays a critical role during limb development as well as throughout the adult-life controlling bone homeostasis in vertebrates. Since Sost is highly conserved from fishes to humans, the PIs are interested in elucidating the role of this molecule during skeletal development in different vertebrates. Accordingly, this grant focuses on deciphering several fundamental properties of Sost including 1) identification and characterization of Sost-specific regulatory elements, 2) determination of the role of Sost in limb patterning and adult bone homeostasis, and 3) investigation of the role of Sost across different vertebrate lineages.
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  • 财政年份:
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  • 项目类别:
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  • 财政年份:
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