Identification and Characterisation of cis-Regulatory Elements Upstream of the Human Receptor Tyrosine Kinase Gene MERTK.

Brain plasticity (Amsterdam, Netherlands) Pub Date : 2021-08-23 eCollection Date: 2021-01-01 DOI:10.3233/BPL-200102
Alexander D Walsh, Laura J Johnson, Alexandra J Harvey, Trevor J Kilpatrick, Michele D Binder
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引用次数: 4

Abstract

Background: MERTK encodes a receptor tyrosine kinase that regulates immune homeostasis via phagocytosis of apoptotic cells and cytokine-mediated immunosuppression. MERTK is highly expressed in the central nervous system (CNS), specifically in myeloid derived innate immune cells and its dysregulation is implicated in CNS pathologies including the autoimmune disease multiple sclerosis (MS).

Objective: While the cell types and tissues that express MERTK have been well described, the genetic elements that define the gene's promoter and regulate specific transcription domains remain unknown. The primary objective of this study was to define and characterise the human MERTK promoter region.

Methods: We cloned and characterized the 5' upstream region of MERTK to identify cis-acting DNA elements that promote gene transcription in luciferase reporter assays. In addition, promoter regions were tested for sensitivity to the anti-inflammatory glucocorticoid dexamethasone.

Results: This study identified identified both proximal and distal-acting DNA elements that promote transcription. The strongest promoter activity was identified in an ∼850 bp region situated 3 kb upstream of the MERTK transcription start site. Serial deletions of this putative enhancer revealed that the entire region is essential for expression activity. Using in silico analysis, we identified several candidate transcription factor binding sites. Despite a well-established upregulation of MERTK in response to anti-inflammatory glucocorticoids, no DNA region within the 5 kb putative promoter was found to directly respond to dexamethasone treatment.

Conclusions: Elucidating the genetic mechanisms that regulate MERTK expression gives insights into gene regulation during homeostasis and disease, providing potential targets for therapeutic modulation of MERTK transcription.

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人受体酪氨酸激酶基因MERTK上游顺式调控元件的鉴定与表征。
背景:MERTK编码一种受体酪氨酸激酶,通过吞噬凋亡细胞和细胞因子介导的免疫抑制来调节免疫稳态。MERTK在中枢神经系统(CNS)中高度表达,特别是在髓源性先天免疫细胞中,其失调与包括自身免疫性疾病多发性硬化症(MS)在内的中枢神经系统病变有关。目的:虽然已经很好地描述了表达MERTK的细胞类型和组织,但定义该基因启动子和调节特定转录域的遗传元件仍然未知。本研究的主要目的是定义和表征人类MERTK启动子区域。方法:在荧光素酶报告基因检测中,我们克隆并鉴定了MERTK的5'上游区域,以鉴定促进基因转录的顺式作用DNA元件。此外,还检测了启动子区域对抗炎糖皮质激素地塞米松的敏感性。结果:本研究确定了促进转录的近端和远端作用的DNA元件。在MERTK转录起始位点上游3kb处约850 bp的区域中发现了最强的启动子活性。这个假定的增强子的序列缺失揭示了整个区域对表达活性是必不可少的。使用硅分析,我们确定了几个候选转录因子结合位点。尽管MERTK在抗炎糖皮质激素的作用下上调,但在5kb的推定启动子内没有发现DNA区域对地塞米松治疗有直接反应。结论:阐明调控MERTK表达的遗传机制有助于深入了解稳态和疾病期间的基因调控,为MERTK转录的治疗调节提供潜在靶点。
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