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71.
植物防御反应中活性氧的产生和作用 总被引:15,自引:0,他引:15
活性氧在植物抗病性中起着重要的作用。本文将对其在防御反应中的产生和作用进行简要的论述。 相似文献
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妊娠肝内胆汁淤积症(Intrahepatic cholestasis of pregnancy, ICP)是发生在妊娠中晚期,以皮肤瘙瘁、黄疸、血清胆汁酸升高,伴轻度肝功能损害为特征的妊娠并发症,严重影响母儿健康。ICP的发病机制尚未完全阐明,但有研究表明在遗传易感性妇女中,性激素及其代谢产物导致胆汁酸代谢异常与本病的发生密切相关。现就目前国内外有关ICP发病机制的研究进展做一综述,一方面为探寻更深层次的机制提供理论基础,另一方面为临床治疗ICP提供思路和方法。 相似文献
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为探究金针菇的密码子偏好性,挖掘高表达基因的特征信息,以金针菇基因组及转录组数据为材料,分析金针菇的密码子偏好性及其影响因素,并对发育阶段高表达基因进行功能注释和顺式元件分析。分析表明,金针菇高表达基因表现出较强的密码子偏好性,且其偏好密码子多以胞嘧啶(C)结尾,此外在高表达基因中存在6种氨基酸的最优密码子较为保守。在进化过程中,金针菇高表达基因密码子偏好性受到自然选择压力的影响较大。功能注释分类表明,高表达基因多为核糖体通路相关的基因,与蛋白质翻译和生物合成相关。顺式元件分析表明,高表达基因启动子区域大多存在MeJA响应元件、ABA响应元件、光响应元件及MYB转录因子结合元件。研究结果可为提高金针菇异源表达效率和挖掘强启动子提供理论基础和思路。 相似文献
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目的:研究信号通路ELK-1/JNK/c-Fos在左归降糖解郁方(ZGJTJYF)对模拟糖尿病并发抑郁症(DD)环境下抗海马神经元凋亡中的作用。方法:原代培养海马神经元,加入高糖(150 mmol/L)+皮质酮(200μmol/L),构建DD体外细胞模型;将培养的海马神经元细胞随机分为5组:空白血清组、正常组、左归降糖解郁方含药血清组、阳性药(二甲双胍+氟西汀)含药血清组和模型组(每组3个复孔)。模型组和正常组给予等量培养液,其余组加入相应体积分数10%的相应血清,均干预18 h。分别采用Hoechst染色、高内涵细胞成像分析技术和RT-PCR技术分别检测海马神经元凋亡情况及检测凋亡相关ELK-1、JNK和c-Fos蛋白和基因的表达。结果:与空白组比较,模型组细胞凋亡明显,其海马神经元凋亡数量明显增多,ELK-1、JNK和c-Fos的mRNA及蛋白表达水平均显著升高(P<0.05);与模型组比较,左归降糖解郁方含药血清组和阳性药含药血清组大鼠海马神经元可见局部亮点明显减少,凋亡细胞数显著减少,ELK-1、JNK和c-Fos蛋白及mRNA表达均明显下调(P<0.05),且神经网络及树突连接情况得到明显改善。结论:左归降糖解郁方可以减低DD环境下海马神经元中Elk-1、JNK、c-fos表达而起到抗凋亡的效果。 相似文献
79.
Jia Xu Xinyu Guan Xiaodong Jia Hongyan Li Ruibing Chen Yinying Lu 《Molecular & cellular proteomics : MCP》2022,21(8):100255
Hepatocellular carcinoma (HCC) is the third most common cause of cancer-related death worldwide with limited therapeutic options. Comprehensive investigation of protein posttranslational modifications in HCC is still limited. Lysine acetylation is one of the most common types of posttranslational modification involved in many cellular processes and plays crucial roles in the regulation of cancer. In this study, we analyzed the proteome and K-acetylome in eight pairs of HCC tumors and normal adjacent tissues using a timsTOF Pro instrument. As a result, we identified 9219 K-acetylation sites in 2625 proteins, of which 1003 sites exhibited differential acetylation levels between tumors and normal adjacent tissues. Interestingly, many novel tumor-specific K-acetylation sites were characterized, for example, filamin A (K865), filamin B (K697), and cofilin (K19), suggesting altered activities of these cytoskeleton-modulating molecules, which may contribute to tumor metastasis. In addition, we observed an overall suppression of protein K-acetylation in HCC tumors, especially for enzymes from various metabolic pathways, for example, glycolysis, tricarboxylic acid cycle, and fatty acid metabolism. Moreover, the expression of deacetylase sirtuin 2 (SIRT2) was upregulated in HCC tumors, and its role of deacetylation in HCC cells was further explored by examining the impact of SIRT2 overexpression on the proteome and K-acetylome in Huh7 HCC cells. SIRT2 overexpression reduced K-acetylation of proteins involved in a wide range of cellular processes, including energy metabolism. Furthermore, cellular assays showed that overexpression of SIRT2 in HCC cells inhibited both glycolysis and oxidative phosphorylation. Taken together, our findings provide valuable information to better understand the roles of K-acetylation in HCC and to treat this disease by correcting the aberrant acetylation patterns. 相似文献
80.
Qian Chen Zhiqiang Li Shulin Liu Yunhua Chi Dongsheng Jia Taiyun Wei 《Microbial biotechnology》2022,15(4):1221-1234
Huanglongbing (HLB) is currently considered the most destructive disease of citrus worldwide. In the major citrus-growing areas in Asia and the US, the major causal agent of HLB is the bacterial pathogen Candidatus Liberibacter asiaticus (CLas). CLas is vectored by the Asian citrus psyllid, Diaphorina citri, in a persistent propagative manner. CLas cannot be cultured in vitro because of its unclear growth factors, leading to uncertainty in the infection mechanism of CLas at the cellular level in citrus and in D. citri. To characterize the detailed infection of CLas in the host and vector, the incidence of HLB was first investigated in citrus-growing fields in Fujian Province, China. It was found that the positive association of the level of CLas infection in the leaves correlated with the symptoms. Then antibodies against peptides of the outer membrane protein (OMP) of CLas were prepared and tested. The antibodies OMP-225, OMP-333 and OMP724 showed specificity to citrus plants in western blot analyses, whereas the antibodies OMP-47 and OMP-225 displayed specificity to the D. citri vector. The application of OMP-225 in the immunofluorescence assay indicated that CLas was located in and distributed throughout the phloem sieve cells of the leaf midribs and axile placenta of the fruit. CLas also infected the epithelial cells and visceral muscles of the alimentary canal of D. citri. The application of OMP-333 in immunoelectron microscopy indicated the round or oval CLas in the sieve cells of leaf midribs and axile placenta of fruit as well as in the epithelial cells and reticular tissue of D. citri alimentary canal. These results provide a reliable means for HLB detection, and enlighten a strategy via neutralizing OMP to control HLB. These findings also provide insight for the further investigation on CLas infection and pathogenesis, as well as CLas–vector interaction. 相似文献