Department of Orthopedic, The First Affiliated Hospital of Zhengzhou University, No. 1, Jianshe East road, Erqi District, Zhengzhou, 450052, China.
Sci Rep. 2021 Feb 11;11(1):3628. doi: 10.1038/s41598-021-83145-9.
Long non-coding RNA growth arrest specific transcript 5 (GAS5) has been found to be implicated in the pathogenesis of central nervous diseases and to be a contributor to hypoxic brain injury. However, the roles and molecular mechanisms of GAS5 in spinal cord injury (SCI) have not thoroughly investigated. Here, we reported that GAS5 knockdown improved rat locomotor function and alleviated pathological damage of spinal cord tissues by reducing oxidative stress, caspase-3 activity and vav guanine nucleotide exchange factor 1 (VAV1) expression in SCI rat models. GAS5 knockdown inhibited the increase of malondialdehyde (MDA) level and cell apoptotic rate induced by oxygen-glucose deprivation (OGD) and weakened the inhibitory effects of OGD on superoxide dismutase (SOD) and glutathione peroxidase (GSH-Px) activities and cell viability in RN-Sc cells, suggesting that GAS5 loss mitigated OGD-triggered oxidative stress and cell injury in RN-Sc cells. Molecular mechanism explorations revealed that GAS5 recruited CUGBP, Elav-like family member 2 (CELF2) to the coding region of VAV1 mRNA, resulting in the increase of VAV1 mRNA stability and expression levels. VAV1 knockdown weakened OGD-induced oxidative stress and cell injury in RN-Sc cells. VAV1 loss alleviated GAS5-induced oxidative stress and cell injury in OGD-treated RN-Sc cells. As a conclusion, our findings suggested that GAS5 aggravated SCI by increasing VAV1 expression via binding with CELF2, deepening our understanding on function and molecular basis of GAS5 in SCI.
长链非编码 RNA 生长停滞特异性转录本 5(GAS5)已被发现与中枢神经系统疾病的发病机制有关,并导致缺氧性脑损伤。然而,GAS5 在脊髓损伤(SCI)中的作用和分子机制尚未得到充分研究。在这里,我们报道了 GAS5 敲低通过减少 SCI 大鼠模型中氧化应激、半胱天冬酶-3 活性和 vav 鸟嘌呤核苷酸交换因子 1(VAV1)的表达,改善了大鼠的运动功能并减轻了脊髓组织的病理损伤。GAS5 敲低抑制了氧葡萄糖剥夺(OGD)诱导的丙二醛(MDA)水平和细胞凋亡率的增加,并减弱了 OGD 对超氧化物歧化酶(SOD)和谷胱甘肽过氧化物酶(GSH-Px)活性和 RN-Sc 细胞活力的抑制作用,表明 GAS5 缺失减轻了 OGD 触发的 RN-Sc 细胞中的氧化应激和细胞损伤。分子机制探索表明,GAS5 将 CUGBP、Elav 样家族成员 2(CELF2)募集到 VAV1 mRNA 的编码区,导致 VAV1 mRNA 稳定性和表达水平增加。VAV1 敲低减弱了 OGD 诱导的 RN-Sc 细胞中的氧化应激和细胞损伤。VAV1 缺失减轻了 OGD 处理的 RN-Sc 细胞中 GAS5 诱导的氧化应激和细胞损伤。总之,我们的研究结果表明,GAS5 通过与 CELF2 结合增加 VAV1 的表达加重了 SCI,加深了我们对 GAS5 在 SCI 中的功能和分子基础的理解。