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基于 Hsp70 启动子的热休克诱导基因调控的小鼠模型。

An Hsp70 promoter-based mouse for heat shock-induced gene modulation.

机构信息

Laboratory of Wound Repair and Rehabilitation Medicine, Daping Hospital, Third Military Medical University, Chongqing, 400042, China.

State Key Laboratory of Trauma, Burn and Combined Injury, Third Military Medical University, Chongqing, 400038, China.

出版信息

J Mol Med (Berl). 2024 May;102(5):693-707. doi: 10.1007/s00109-024-02433-9. Epub 2024 Mar 16.

Abstract

Physical therapy is extensively employed in clinical settings. Nevertheless, the absence of suitable animal models has resulted in an incomplete understanding of the in vivo mechanisms and cellular distribution that respond to physical stimuli. The objective of this research was to create a mouse model capable of indicating the cells affected by physical stimuli. In this study, we successfully established a mouse line based on the heat shock protein 70 (Hsp70) promoter, wherein the expression of CreERT2 can be induced by physical stimuli. Following stimulation of the mouse tail, ear, or cultured calvarias with heat shock (generated by heating, ultrasound, or laser), a distinct Cre-mediated excision was observed in cells stimulated by these physical factors with minimal occurrence of leaky reporter expression. The application of heat shock to Hsp70-CreERT2; FGFR2-P253R double transgenic mice or Hsp70-CreERT2 mice infected with AAV-BMP4 at calvarias induced the activation of Cre-dependent mutant FGFR2-P253R or BMP4 respectively, thereby facilitating the premature closure of cranial sutures or the repair of calvarial defects. This novel mouse line holds significant potential for investigating the underlying mechanisms of physical therapy, tissue repair and regeneration, lineage tracing, and targeted modulation of gene expression of cells in local tissue stimulated by physical factor at the interested time points. KEY MESSAGES: In the study, an Hsp70-CreERT2 transgenic mouse was generated for heat shock-induced gene modulation. Heat shock, ultrasound, and laser stimulation effectively activated Cre expression in Hsp70-CreERT2; reporter mice, which leads to deletion of floxed DNA sequence in the tail, ear, and cultured calvaria tissues of mice. Local laser stimuli on cultured calvarias effectively induce Fgfr2-P253R expression in Hsp70-mTmG-Fgfr2-P253R mice and result in accelerated premature closure of cranial suture. Heat shock activated AAV9-FLEX-BMP4 expression and subsequently promoted the repair of calvarial defect of Hsp70-CreERT2; Rosa26-mTmG mice.

摘要

物理疗法在临床环境中得到广泛应用。然而,由于缺乏合适的动物模型,我们对体内对物理刺激做出反应的机制和细胞分布仍了解不足。本研究的目的是创建一种能够指示受物理刺激影响的细胞的小鼠模型。在这项研究中,我们成功地基于热休克蛋白 70(Hsp70)启动子建立了一种小鼠品系,其中 CreERT2 的表达可以通过物理刺激诱导。在对小鼠尾巴、耳朵或培养的颅骨进行热休克(通过加热、超声或激光产生)刺激后,在这些物理因子刺激的细胞中观察到明显的 Cre 介导的切除,而漏报表达则很少发生。将热休克应用于 Hsp70-CreERT2; FGFR2-P253R 双转基因小鼠或感染 AAV-BMP4 的 Hsp70-CreERT2 小鼠的颅骨上,分别诱导 Cre 依赖性突变型 FGFR2-P253R 或 BMP4 的激活,从而促进颅缝过早闭合或颅骨缺陷的修复。这种新型小鼠品系在研究物理治疗、组织修复和再生、谱系追踪以及物理因子刺激局部组织中细胞的基因表达的靶向调节等方面具有重要的潜在应用价值。

关键信息

在本研究中,生成了一种 Hsp70-CreERT2 转基因小鼠,用于热休克诱导的基因调节。热休克、超声和激光刺激可有效激活 Hsp70-CreERT2; 报告小鼠中的 Cre 表达,导致小鼠尾巴、耳朵和培养颅骨组织中 floxed DNA 序列的缺失。对培养颅骨进行局部激光刺激可有效诱导 Hsp70-mTmG-Fgfr2-P253R 小鼠中 Fgfr2-P253R 的表达,并导致颅缝过早闭合加速。热休克激活了 AAV9-FLEX-BMP4 的表达,并随后促进了 Hsp70-CreERT2; Rosa26-mTmG 小鼠颅骨缺陷的修复。

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