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BMP2 基因长程调控元件的功能分析。

Functional analysis of the long-range regulatory element of BMP2 gene.

机构信息

1. Department of Electron Microscope, School of Basic Medical Sciences, Xi'an Jiaotong University Health Science Center, Xi'an 710061, China.

2. Department of Stomatology, Xi'an Medical University, Xi'an 710061, China.

出版信息

Yi Chuan. 2022 Dec 20;44(12):1141-1147. doi: 10.16288/j.yczz.22-304.

Abstract

Recently, several pedigree-based studies have shown that abnormal replication of an enhancer element regulatory region in the downstream of the bone morphogenetic protein 2 (BMP2) gene is the cause of brachydactyly type A2 (BDA2). However, the exact molecular function of this regulatory region is unclear, and even conflicting results have emerged. In this study, based on bioinformatics analysis, we amplified target fragments of different lengths in this regulatory region by PCR technology, including a highly conserved 2.1 kb core sequence and 3 fragments that can completely cover the core 2.1 kb fragment. Then, the gene recombination vectors were constructed, and the biological function of these fragments was analyzed by the dual-luciferase reporter gene technology system. We found that the highly conserved 2.1 kb fragment did not have enhancer activity, while all of three truncated fragments showed strong enhancer activity. The results suggest that the expression regulation mode of the gene is very complex. For the downstream regulatory region, selecting fragments of different lengths may have different effects on the regulation of expression, which may due to the fragments with different lengths carrying different regulatory elements in the number of types. In summary, this study revealed the complexity of gene regulatory elements, and provided new clues and directions for the subsequent in-depth exploration of the molecular pathogenic mechanism of BDA2.

摘要

最近,几项基于家系的研究表明,骨形态发生蛋白 2(BMP2)基因下游的增强子元件调控区的异常复制是 A2 型短指(BDA2)的病因。然而,该调控区的确切分子功能尚不清楚,甚至出现了相互矛盾的结果。在这项研究中,我们基于生物信息学分析,通过 PCR 技术扩增了该调控区不同长度的靶片段,包括高度保守的 2.1kb 核心序列和 3 个完全覆盖核心 2.1kb 片段的片段。然后,构建了基因重组载体,并通过双荧光素酶报告基因技术系统分析了这些片段的生物学功能。我们发现,高度保守的 2.1kb 片段没有增强子活性,而所有 3 个截断片段均表现出很强的增强子活性。结果表明,基因的表达调控模式非常复杂。对于下游调控区,选择不同长度的片段可能对基因表达的调控有不同的影响,这可能是由于不同长度的片段在数量和类型上携带不同的调控元件。总之,本研究揭示了基因调控元件的复杂性,为随后深入探讨 BDA2 的分子发病机制提供了新的线索和方向。

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