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对ATRX启动子和5'调控区域的比较分析揭示了保守的调控元件,这些元件与神经发育、α-珠蛋白调控及睾丸功能中的作用相关。

Comparative analysis of the ATRX promoter and 5' regulatory region reveals conserved regulatory elements which are linked to roles in neurodevelopment, alpha-globin regulation and testicular function.

作者信息

Tang Paisu, Frankenberg Stephen, Argentaro Anthony, Graves Jennifer M, Familari Mary

机构信息

Department of Zoology, University of Melbourne, Victoria 3010, Australia.

出版信息

BMC Res Notes. 2011 Jun 15;4:200. doi: 10.1186/1756-0500-4-200.

Abstract

BACKGROUND

ATRX is a tightly-regulated multifunctional protein with crucial roles in mammalian development. Mutations in the ATRX gene cause ATR-X syndrome, an X-linked recessive developmental disorder resulting in severe mental retardation and mild alpha-thalassemia with facial, skeletal and genital abnormalities. Although ubiquitously expressed the clinical features of the syndrome indicate that ATRX is not likely to be a global regulator of gene expression but involved in regulating specific target genes. The regulation of ATRX expression is not well understood and this is reflected by the current lack of identified upstream regulators. The availability of genomic data from a range of species and the very highly conserved 5' regulatory regions of the ATRX gene has allowed us to investigate putative transcription factor binding sites (TFBSs) in evolutionarily conserved regions of the mammalian ATRX promoter.

RESULTS

We identified 12 highly conserved TFBSs of key gene regulators involved in biologically relevant processes such as neural and testis development and alpha-globin regulation.

CONCLUSIONS

Our results reveal potentially important regulatory elements in the ATRX gene which may lead to the identification of upstream regulators of ATRX and aid in the understanding of the molecular mechanisms that underlie ATR-X syndrome.

摘要

背景

ATRX是一种受严格调控的多功能蛋白,在哺乳动物发育中起关键作用。ATRX基因突变会导致ATRX综合征,这是一种X连锁隐性发育障碍,会导致严重智力迟钝以及伴有面部、骨骼和生殖器异常的轻度α地中海贫血。尽管ATRX在全身广泛表达,但该综合征的临床特征表明它不太可能是基因表达的全局调节因子,而是参与调节特定的靶基因。目前对ATRX表达的调控了解不足,这体现在目前尚未确定其上游调节因子。一系列物种的基因组数据以及ATRX基因高度保守的5'调控区域的可得性,使我们能够研究哺乳动物ATRX启动子进化保守区域中假定的转录因子结合位点(TFBSs)。

结果

我们鉴定出12个与神经和睾丸发育以及α珠蛋白调控等生物学相关过程有关的关键基因调节因子的高度保守的TFBSs。

结论

我们的结果揭示了ATRX基因中潜在重要的调控元件,这可能有助于鉴定ATRX的上游调节因子,并有助于理解ATRX综合征背后的分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f2c8/3144453/203ff5c7070b/1756-0500-4-200-1.jpg

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