| Literature DB >> 31311824 |
Fangfang Wu1,2, Bing Han1, Shusheng Wu1, Li Yang1, Shuo Leng3, Mingyue Li1, Jiefeng Liao1, Guangtian Wang1, Qingqing Ye1, Yuan Zhang1, Haifeng Chen4, Xufeng Chen5, Ming Zhong6, Yun Xu4, Qiang Liu7, John H Zhang8, Honghong Yao9,10.
Abstract
Circular RNAs (circRNAs) are expressed at high levels in the brain and are involved in various CNS diseases. However, the potential role of circRNAs in ischemic stroke-associated neuronal injury remains largely unknown. Here, we investigated the important functions of circRNA TLK1 (circTLK1) in this process. The levels of circTLK1 were significantly increased in brain tissues in a mouse model of focal cerebral ischemia and reperfusion. Knockdown of circTLK1 significantly decreased infarct volumes, attenuated neuronal injury, and improved neurological deficits. Furthermore, circTLK1 functioned as an endogenous miR-335-3p sponge to inhibit miR-335-3p activity, resulting in the increase of 2,3,7,8-tetrachlorodibenzo-p-dioxin-inducible poly (ADP-ribose) polymerase expression and a subsequent exacerbation of neuronal injury. Clinical studies confirmed increased levels of circTLK1 in the plasma of patients with acute ischemic stroke (59 males and 12 females). Our findings reveal a detrimental role of circTLK1 in ischemic brain injury.SIGNIFICANCE STATEMENT The extent of neuronal injury after brain ischemia is a primary factor determining stroke outcomes. However, the molecular switches that control the death of ischemic neurons are poorly understood. While our previous studies indicated the involvement of circRNAs in ischemic stroke, the potential role of circRNAs in neuronal injury remains largely unknown. The levels of circTLK1 were significantly increased in the brain tissue and plasma isolated from animal models of ischemic stroke and patients. Knockdown of circTLK1 significantly decreased infarct volumes, attenuated neuronal injury, and improved subsequent long-term neurological deficits. To our knowledge, these results provide the first definitive evidence that circTLK1 is detrimental in ischemic stroke.Entities:
Keywords: TIPARP; circular RNA TLK1; miR-335; neuronal injury; stroke
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Year: 2019 PMID: 31311824 PMCID: PMC6759031 DOI: 10.1523/JNEUROSCI.0299-19.2019
Source DB: PubMed Journal: J Neurosci ISSN: 0270-6474 Impact factor: 6.167