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| METTL3基因在奶牛乳腺上皮细胞炎症反应中的表达及功能分析 |
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王正兴1,2, 李彦龙1,2, 邢明旭1,2, 秦铭1,2, 王玉梅1,2, 王兴平1,2, 罗仍卓么1,2
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1.宁夏大学 动物科技学院,宁夏 银川 750021;2.宁夏回族自治区反刍动物分子细胞育种重点实验室,宁夏 银川 750021
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| 摘要: |
| 【 目的】探讨甲基转移酶样蛋白3(methyltransferase-like 3,METTL3)基因在奶牛乳腺上皮细胞(bovin mammary epithelial cells,bMECs)炎症反应中的表达及功能,为解析奶牛乳房炎分子调控机制奠定基础。【 方法】采用生物信息学方法分析奶牛METTL3蛋白质的结构特征;采用50 μg/mL的脂多糖(lipopolysaccharide,LPS)构建bMECs炎症模型,在此基础上通过实时荧光定量PCR(RT-qPCR)检测LPS诱导不同时间点(0,3,6,12和24 h)炎症 因子基因(IL-6和IL-8)及METTL3基因的表达水平,并利用CCK-8和RT-qPCR检测干扰METTL3基因后bMECs的细胞活力、炎症因子、细胞增殖及凋亡相关基因表达的变化。【 结果】生物信息学分析结果表明,METTL3基因的开放阅读框(ORF)长度为1 743 bp,编码一个由580个氨基酸组成的蛋白质,该蛋白存在59个潜在的翻译后修饰位点,可能通过表观转录调控机制参与细胞炎症进程。在LPS诱导bMECs的不同时间点,IL-6和IL-8表达量随诱导时间延长而升高,于24 h达到表达峰值(P<0.01),表明成功建立了bMECs炎症模型。与0 h相比,METTL3在LPS刺激3,6,12和24 h的表达水平均极显著上调(P<0.01),其中6 h表达量最高,呈现炎症早期响应特征。在干扰METTL3表达后,bMECs内促炎因子IL-6的表达水平极显著下调(P<0.01),IL-8显著下调(P<0.05),IL-1β亦呈现下降趋势,细 胞增殖基因CDK2、CDK4和PCNA的表达水平均极显著升高(P<0. 01),而细胞凋亡基因CASP3、CASP9和BAX的表达水平均极显著降低(P<0.01)。干扰METTL3后,bMECs细胞活力显著升高(P<0.05)。【 结论】METTL3通过加剧炎症反应、促进细胞凋亡并抑制细胞增殖而加重LPS诱导的bMECs炎症损伤,提示METTL3是调控奶牛乳腺炎 进程的关键分子。 |
| 关键词: 奶牛 奶牛乳腺上皮细胞 炎症反应 METTL3 |
| DOI:10. 13207/j. jnwafu. 2026. 08. 002 |
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| 基金项目:国家自然科学基金项目(32460826);国家现代农业产业技术体系项目(CARS-36);宁夏自然科学基金项目(2024AAC03116) |
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| Analysis on the expression and function of METTL3 gene in the inflammatory response of bovine mammary epithelial cells |
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WANG Zhengxing1,2, LI Yanlong1,2, XING Mingxu1,2, QIN Ming1,2, WANG Yumei1,2, WANG Xingping1,2, LUORENG Zhuoma1,2
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1.School of Animal Science and Technology,Ningxia University,Yinchuan,Ningxia 750021,China;2.Key Laboratory of Molecular Cell Breeding of Ruminants,Ningxia Hui Autonomous Region,Yinchuan,Ningxia 750021,China
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| Abstract: |
| 【 Objective】This study aimed to investigate the expression and function of methyltransferase-like 3(METTL3) in the inflammatory response of bovine mammary epithelial cells (bMECs),so as to lay a foundation for elucidating the molecular regulatory mechanisms of bovine mastitis.【Method】The structure cha-racteristics of the bovine METTL3 protein were analyzed by using bioinformatics methods. An inflammatory model of bMECs was established based on 50 μg/mL LPS treatment. On this basis,RT-qPCR was used to de?tect the expression levels of inflammatory factors (IL-6 and IL-8) and the METTL3 gene at different time points (0,3,6,12,and 24 h) after LPS induction. CCK-8 assay and RT-qPCR were employed to examine cell viability,the expression of inflammatory factors,and the expression of cell proliferation and apoptosis-related genes after METTL3 knockdown.【Result】Bioinformatics analysis results indicated that the open reading frame (ORF) of the METTL3 gene was 1 743 bp in length,encoding a protein of 580 amino acids. This protein con?tained 59 potential post-translational modification sites and might be involved in cellular inflammatory processes through epitranscriptional regulatory mechanisms. At different time points after LPS induction,the expression levels of IL-6 and IL-8 continued to increase over time,peaking at 24 h (P<0. 01),indicating the successful es-tablishment of an inflammatory model of bMECs. The expression level of METTL3 was highly significantly up-regulated at 3,6,12,and 24 h after LPS stimulation (P<0.01) compared with that at 0 h,with the highest ex-pression level observed at 6 h,demonstrating the characteristic of early inflammatory response. After METTL3 knockdown,the expression level of the pro-inflammatory factor IL-6 was highly significantly downregulated (P<0.01),IL-8 was significantly downregulated (P<0. 05),and IL-1β also showed a downward trend. The expression levels of cell proliferation-related genes CDK2,CDK4,and PCNA were highly significantly in?creased (P<0. 01),while the expression levels of apoptosis-related genes CASP3,CASP9,and BAX were highly significantly decreased (P<0. 01). In addition,cell viability was significantly increased after METTL3 knockdown (P<0.05).【Conclusion】METTL3 aggravates LPS-induced inflammatory injury in bMECs by ex?acerbating the inflammatory response,promoting cellular apoptosis,and inhibiting cell proliferation. This finding identifies METTL3 as a key regulator in the progression of bovine mastitis. |
| Key words: dairy cows bovin mammary epithelial cells inflammatory response METTL3 |