垂体的遗传学、基因表达和生物信息学。

Hormone research Pub Date : 2009-04-01 Epub Date: 2009-04-29 DOI:10.1159/000192447
Shannon W Davis, Mary Anne Potok, Michelle L Brinkmeier, Piero Carninci, Robert H Lyons, James W MacDonald, Michelle T Fleming, Amanda H Mortensen, Noboru Egashira, Debashis Ghosh, Karen P Steel, Robert Y Osamura, Yoshihide Hayashizaki, Sally A Camper
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引用次数: 0

摘要

先天性垂体激素缺乏症的遗传病例很常见,其中许多是由转录因子缺陷引起的。具有同源突变的小鼠模型对于揭示导致器官发育问题和典型患者特征的分子机制非常有价值。我们正在利用转录因子 PROP1 和 POU1F1 缺陷的突变小鼠进行基因表达谱分析,以确定这些关键转录因子的靶基因以及病因不明的垂体激素缺乏症的候选基因。这些研究揭示了 Wnt 信号通路的关键作用,包括 TCF/LEF 转录因子和 groucho 家族的相互作用蛋白、骨形态发生蛋白拮抗剂和 notch 信号的靶标。目前的研究正在调查新型同源染色体基因的作用以及调节从增殖到分化、细胞粘附和细胞迁移的途径。垂体腺瘤是人类常见的健康问题,但大多数病例都是散发性的,因此有必要在传统的孟德尔遗传学研究之外另辟蹊径。腺瘤形成的小鼠模型为在增生、腺瘤和肿瘤发生的渐进阶段进行基因表达谱分析提供了机会。这种方法有望确定作为腺瘤形成风险因素的相关途径和候选基因,了解腺瘤进展的机制,并确定药物靶点和临床相关的生物标志物。
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Genetics, gene expression and bioinformatics of the pituitary gland.

Genetic cases of congenital pituitary hormone deficiency are common and many are caused by transcription factor defects. Mouse models with orthologous mutations are invaluable for uncovering the molecular mechanisms that lead to problems in organ development and typical patient characteristics. We are using mutant mice defective in the transcription factors PROP1 and POU1F1 for gene expression profiling to identify target genes for these critical transcription factors and candidates for cases of pituitary hormone deficiency of unknown aetiology. These studies reveal critical roles for Wnt signalling pathways, including the TCF/LEF transcription factors and interacting proteins of the groucho family, bone morphogenetic protein antagonists and targets of notch signalling. Current studies are investigating the roles of novel homeobox genes and pathways that regulate the transition from proliferation to differentiation, cell adhesion and cell migration. Pituitary adenomas are a common human health problem, yet most cases are sporadic, necessitating alternative approaches to traditional Mendelian genetic studies. Mouse models of adenoma formation offer the opportunity for gene expression profiling during progressive stages of hyperplasia, adenoma and tumorigenesis. This approach holds promise for the identification of relevant pathways and candidate genes as risk factors for adenoma formation, understanding mechanisms of progression, and identifying drug targets and clinically relevant biomarkers.

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Hormone research
Hormone research 医学-内分泌学与代谢
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