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尿道癌相关基因1通过微小RNA-513a-3p/细胞色素P_(450)1B1生物学轴促进人胃癌细胞增殖和迁移的机制研究
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作者 韩莹 焦璐 刘晓丹 《肿瘤基础与临床》 2023年第3期195-199,共5页
目的研究长链非编码RNA(lncRNA)尿路上皮癌胚抗原1(UCA1)在人胃癌细胞中的表达,并探讨UCA1通过微小RNA-513a-3p(miR-513a-3p)/细胞色素P_(450)1B1(CYP1B1)生物学轴对胃癌细胞增殖和迁移的影响及机制。方法分别向人胃癌细胞中转入UCA1小... 目的研究长链非编码RNA(lncRNA)尿路上皮癌胚抗原1(UCA1)在人胃癌细胞中的表达,并探讨UCA1通过微小RNA-513a-3p(miR-513a-3p)/细胞色素P_(450)1B1(CYP1B1)生物学轴对胃癌细胞增殖和迁移的影响及机制。方法分别向人胃癌细胞中转入UCA1小干扰RNA(siRNA)、miR-513a-3p模拟物和miR-513a-3p抑制剂以抑制UCA1、上调miR-513a-3p和抑制miR-513a-3p表达。通过定量PCR检测不同细胞UCA1、miR-513a-3p和CYP1B1 mRNA的表达,CCK8试剂盒检测细胞增殖,Transwell小室检测细胞迁移。结果与GES-1细胞相比,UCA1在人胃癌细胞HGC-27、SNU-5、AGS、SGC-7901中表达均升高(t=11.106,P<0.001;t=10.872,P<0.001;t=12.134,P<0.001;t=16.178,P<0.001),细胞增殖活性(t=7.252,P<0.001;t=8.964,P<0.001;t=8.666,P=0.003;t=8.697,P<0.001)和细胞迁移能力(t=4.040,P=0.010;t=7.079,P<0.001;t=6.833,P=0.003;t=7.527,P<0.001)均升高。双荧素酶基因报告实验显示miR-513a-3p与UCA1和CYP1B1靶向结合。与NC siRNA组相比,UCA1 siRNA显著下调UCA1和上调miR-513a-3p在SGC-7901细胞中的表达(t=7.895,P<0.001;t=12.911,P<0.001);miR-513a-3p表达上调显著抑制SGC-7901细胞中UCA1和CYP1B1 mRNA表达(t=7.224,P<0.001;t=5.645,P=0.002),而抑制miR-513a-3p则显著上调SGC-7901细胞中UCA1和CYP1B1 mRNA表达(t=9.628,P<0.001;t=11.665,P<0.001)。与单独UCA1敲低的SGC-7901细胞相比,UCA1和miR-513a-3p共同敲低的SGC-7901细胞CYP1B1 mRNA表达、细胞增殖活性和细胞迁移能力均升高(t=3.695,P=0.014;t=4.198,P=0.009;t=3.602,P=0.016)。结论UCA1通过miR-513a-3p/CYP1B1生物学轴促进人胃癌细胞的增殖和迁移。 展开更多
关键词 胃癌 尿路上皮癌胚抗原1 微小RNA-513a-3p 细胞色素p_(450)1b1
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Cytochrome b5 Reductase 1 Triggers Serial Reactions that Lead to Iron Uptake in Plants 被引量:1
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作者 Young Jun Oh Hanul Kim +8 位作者 Sung Hee Seo Bae Geun Hwang Yoon Seok Chang Junho Lee Dong Wook Lee Eun Ju Sohn Sang Joon Lee Youngsook Lee Inhwan Hwang 《Molecular Plant》 SCIE CAS CSCD 2016年第4期501-513,共13页
Rhizosphere acidification is essential for iron (Fe) uptake into plant roots. Plasma membrane (PM) H*-ATPases play key roles in rhizosphere acidification. However, it is not fully understood how PM H+-ATPase act... Rhizosphere acidification is essential for iron (Fe) uptake into plant roots. Plasma membrane (PM) H*-ATPases play key roles in rhizosphere acidification. However, it is not fully understood how PM H+-ATPase activity is regulated to enhance root Fe uptake under Fe-deficient conditions. Here, we present evidence that cytochrome b5 reductase 1 (CBR1) increases the levels of unsaturated fatty acids, which stimulate PM H+-ATPase activity and thus lead to rhizosphere acidification. CBRl-overexpressing (CBRI-OX) Arabidopsis thaliana plants had higher levels of unsaturated fatty acids (18:2 and 18:3), higher PM H*-ATPase activity, and lower rhizosphere pH than wild-type plants. By contrast, cbrl loss-of-function mutant plants showed lower levels of unsaturated fatty acids and lower PM H*-ATPase activity but higher rhizosphere pH. Reduced PM H*-ATPase activity in cbrl could be restored in vitro by addition of unsatu- rated fatty acids. Transcript levels of CBR1, fatty acids desaturase 2 (FAD2), and fatty acids desaturase 3 (FAD3) were increased under Fe-deficient conditions. We propose that CBR1 has a crucial role in increasing the levels of unsaturated fatty acids, which activate the PM H*-ATPase and thus reduce rhizosphere pH. This reaction cascade ultimately promotes root Fe uptake. 展开更多
关键词 cytochrome b5 reductase 1 (CbR1 unsaturated fatty acids iron (Fe) uptake H^+-atpase
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