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991.
根据已报道的植物鲨烯环氧酶(SE)基因特异性引物克隆竹节参SE基因.结果表明,克隆得到竹节参SE全长为1 632 bp,编码539个氨基酸,命名为PjSE.生物信息学分析指出,PjSE基因的氨基酸序列与人参属植物人参、三七、越南人参的同源性依次为99%、98%和98%.推测PjSE基因定位于线粒体(mTP)、叶绿体(cTP)和分泌途径(SP).PjSE基因存在保守结构域FAD结合位点,含4个跨膜结构域和7个motif结构位点.PjSE蛋白二级结构以无规则卷曲(Random coli)和α-螺旋(Alpha helix)为主要结构元件,延伸链(Extended strand)和β转角(Beta turn)分散于整个蛋白质中,百分比依次占40.82%、37.48%、15.77%、5.94%;该蛋白能折叠形成典型的三维结构. 相似文献
992.
为了研究鳖甲煎丸抑制肝癌细胞过程中lncRNA表达谱的变化及lncRNA-mRNA顺式调控在其中的机制,本研究通过CCK8方法检测鳖甲煎丸作用于SMMC-7721细胞后的增殖活性变化,经全细胞转录组学分析lncRNA的表达和特征后构建LncRNA-mRNA顺式调控网络.结果表明鳖甲煎丸含药血清作用肝癌细胞株后其增殖活性受到抑制.全细胞转录组学分析找到差异表达的172个LncRNA.构建lncRNA-mRNA顺式调控网络,对调控基因进行生存分析发现,SCRN1、PLEKHA1、HNRNPM、TMEM107、ETNK1、ISG20L2的表达与肝细胞癌患者生存率显著负相关(P<0.05).因此得出结论,LncRNA参与鳖甲煎丸抑制肝癌细胞增殖的过程,LncRNA-mRNA顺式调控是其分子机制之一. 相似文献
993.
楝酰胺类化合物存在于楝属植物中,因其独特的化学结构而具有杀虫、抗炎及抗癌的活性.目前研究发现,楝酰胺类化合物对多种癌症如肺癌、肾癌、胰腺癌、恶性外周神经鞘瘤等都具有独特的细胞凋亡作用,而对正常细胞无毒害作用.楝酰胺类化合物抗肿瘤的机制主要有:抑制癌细胞翻译起始、调控细胞周期、诱导肿瘤细胞凋亡、抑制细胞增殖、降低药物细胞毒性等.因此,楝酰胺及其衍生物作为潜在抗癌药物也有极大的应用前景,成为近年来的研究热点.本综述总结了楝属植物中的次生代谢产物-楝酰胺类化合物的发现过程、结构特征和抗癌活性,重点阐述了其在癌症中的作用机制.以期为楝酰胺类化合物的进一步研究和开发利用提供理论依据和研究思路,并对楝酰胺类化合物的应用前景进行了展望. 相似文献
994.
Zhai Wenjie Zhou Xiuman Zhai Mingxia Li Wanqiong Ran Yunhui Sun Yixuan Du Jiangfeng Zhao Wenshan Xing Lingxiao Qi Yuanming Gao Yanfeng 《中国科学:生命科学英文版》2021,64(4):548-562
The interaction of PD-1/PD-L1 allows tumor cells to escape from immune surveillance. Clinical success of the antibody drugs has proven that blockade of PD-1/PD-L1 pathway is a promising strategy for cancer immunotherapy. Here, we developed a cyclic peptide C8 by using Ph.D.-C7 C phage display technology. C8 showed high binding affinity with h PD-1 and could effectively interfere the interaction of PD-1/PD-L1. Furthermore, C8 could stimulate CD8+T cell activation in human peripheral blood mononuclear cells(PBMCs). We also observed that C8 could suppress tumor growth in CT26 and B16-OVA, as well as anti-PD-1 antibody resistant B16 mouse model. CD8+T cells infiltration significantly increased in tumor microenvironment, and IFN-γ secretion by CD8+T cells in draining lymph nodes also increased. Simultaneously, we exploited T cells depletion models and confirmed that C8 exerted anti-tumor effects via activating CD8+T cells dependent manner. The interaction model of C8 with h PD-1 was simulated and confirmed by alanine scanning. In conclusion, C8 shows anti-tumor capability by blockade of PD-1/PD-L1 interaction, and C8 may provide an alternative candidate for cancer immunotherapy. 相似文献
995.
正In 2013, tumor immunotherapy topped the list of the top ten scientific breakthroughs(Couzin-Frankel, 2013), and it was widely used in the treatment of lung cancer, kidney cancer,and melanoma(Routy et al., 2018). However, the response rate of patients to tumor immunotherapy varies, and usually,only a small percentage of patients respond well to treatment(Sambi et al., 2019). 相似文献
996.
Ran Chao Li Yu Ma Xufa Xie Yadong Xie Mingxu Zhang Yuting Zhou Wei Yang Yalin Zhang Zhen Zhou Li Wei Kaijian Zhou Zhigang 《中国科学:生命科学英文版》2021,64(9):1437-1448
Viral diseases cause serious economic loss in farmed animals industry. However, the efficacy of remedies for viral infection in farmed animals is limited, and treatment strategies are generally lacking for aquatic animals. Interactions of commensal microbiota and viral infection have been studied in recent years, demonstrating a third player in the interaction between hosts and viruses. Here, we discuss recent developments in the research of interactions between commensal bacteria and viral infection,including both promotion and inhibition effect of commensal bacteria on viral pathogenesis, as well as the impact of viral infection on commensal microbiota. The antiviral effect of commensal bacteria is mostly achieved through priming or regulation of the host immune responses, involving differential microbial components and host signaling pathways, and gives rise to various antiviral probiotics. Moreover, we summarize studies related to the interaction between commensal bacteria and viral infection in farmed animals, including pigs, chickens, fish and invertebrate species. Further studies in this area will deepen our understanding of antiviral immunity of farmed animals in the context of commensal microbiota, and promote the development of novel strategies for treatment of viral diseases in farmed animals. 相似文献
997.
998.
Huang Guangping Wang Xiao Hu Yibo Wu Qi Nie Yonggang Dong Jiuhong Ding Yun Yan Li Wei Fuwen 《中国科学:生命科学英文版》2021,64(1):88-95
Gut microbiota plays a critical role in host physiology and health. The coevolution between the host and its gut microbes facilitates animal adaptation to its specific ecological niche. Multiple factors such as host diet and phylogeny modulate the structure and function of gut microbiota. However, the relative contribution of each factor in shaping the structure of gut microbiota remains unclear. The giant(Ailuropoda melanoleuca) and red(Ailurus styani) pandas belong to different families of order Carnivora. They have evolved as obligate bamboo-feeders and can be used as a model system for studying the gut microbiome convergent evolution. Here, we compare the structure and function of gut microbiota of the two pandas with their carnivorous relatives using 16S rRNA and metagenome sequencing. We found that both panda species share more similarities in their gut microbiota structure with each other than each species shares with its carnivorous relatives. This indicates that the specialized herbivorous diet rather than host phylogeny is the dominant driver of gut microbiome convergence within Arctoidea.Metagenomic analysis revealed that the symbiotic gut microbiota of both pandas possesses a high level of starch and sucrose metabolism and vitamin B12 biosynthesis. These findings suggest a diet-driven convergence of gut microbiomes and provide new insight into host-microbiota coevolution of these endangered species. 相似文献
999.
1000.