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121.
nisZ启动子结构与功能的研究 总被引:1,自引:0,他引:1
应用βGlucuronidase基因(gusA)作为报告基因,通过定点突变方法分别缺失nisZ编码区上游两个启动子结构(promoter1和promoter2)中的一个,发现只有靠近编码区的promoter2是nisZ启动子诱导表达所必需。将promoter2中10区及其上游的一个碱基突变为乳酸菌中典型的组成型启动子的10区结构,该改变使nisZ启动子诱导功能下降;将promoter2的10区和35区的间隔区由20个碱基缺失突变为17个碱基,则nisZ启动子失去诱导功能。据此认为该间隔区的结构与nisZ启动子的诱导表达密切相关。 相似文献
122.
Sun Y Li T Chen H Zhang K Zheng K Mu Y Yan G Li W Shen J Luo G 《The Journal of biological chemistry》2004,279(36):37235-37240
Glutathione peroxidase (GPX) is one of the most crucial antioxidant enzymes in a variety of organisms. Here we described a new strategy for generating a novel GPX mimic by combination of a phage-displayed random 15-mer peptide library followed by computer-aided rational design and chemical mutation. The novel GPX mimic is a homodimer consisting of a 15-mer selenopeptide with an appropriate catalytic center, a specific binding site for substrates, and high catalytic efficiency. Its steady state kinetics was also studied, and the values of k(cat)/K(m)(GSH) and k(cat)/ K(mH(2)O(2)) were found to be similar to that of native GPX and the highest among the existing GPX mimics. Moreover, the novel GPX mimic was confirmed to have a strong antioxidant ability to inhibit lipid peroxidation by measuring the content of malondialdehyde, cell viability, and lactate dehydrogenase activity. Importantly, the novel GPX mimic can penetrate into the cell membrane because of its small molecular size. These characteristics endue the novel mimic with potential perspective for pharmaceutical applications. 相似文献
123.
Mingyu Lv Jiawen Wang Jingyao Zhang Biao Zhang Xiaodan Wang Yingzi Zhu Tao Zuo Donglai Liu Xiaojun Li Jiaxin Wu Haihong Zhang Bin Yu Hui Wu Xinghong Zhao Wei Kong Xianghui Yu 《PloS one》2014,9(10)
BST-2 blocks the particle release of various enveloped viruses including HIV-1, and this antiviral activity is dependent on the topological arrangement of its four structural domains. Several functions of the cytoplasmic tail (CT) of BST-2 have been previously discussed, but the exact role of this domain remains to be clearly defined. In this study, we investigated the impact of truncation and commonly-used tags addition into the CT region of human BST-2 on its intracellular trafficking and signaling as well as its anti-HIV-1 function. The CT-truncated BST-2 exhibited potent inhibition on Vpu-defective HIV-1 and even wild-type HIV-1. However, the N-terminal HA-tagged CT-truncated BST-2 retained little antiviral activity and dramatically differed from its original protein in the cell surface level and intracellular localization. Further, we showed that the replacement of the CT domain with a hydrophobic tag altered BST-2 function possibly by preventing its normal vesicular trafficking. Notably, we demonstrated that a positive charged motif “KRXK” in the conjunctive region between the cytotail and the transmembrane domain which is conserved in primate BST-2 is important for the protein trafficking and the antiviral function. These results suggest that although the CT of BST-2 is not essential for its antiviral activity, the composition of residues in this region may play important roles in its normal trafficking which subsequently affected its function. These observations provide additional implications for the structure-function model of BST-2. 相似文献
124.
西南岩溶地区黄荆和檵木叶片结构对其生态环境的响应 总被引:3,自引:0,他引:3
应用常规石蜡切片法对生长于桂林毛村岩溶区和非岩溶区的黄荆(Vitex negundo)和檵木(Loropetalumchinense)的解剖特征进行了比较研究,并对两区的黄荆叶片表皮形态进行了扫描电镜观察.结果显示:(1)两地的黄荆叶片背面均有浓密的绒毛,但致密程度有差异,岩溶区黄荆叶片的气孔深藏于绒毛间隙,这种结构可减少水分蒸发,降低因岩溶干旱带来的水分缺失.(2)岩溶区黄荆和檵木的叶片厚度、上下表皮厚度、栅栏组织的厚度以及栅栏组织的致密程度均大于非岩溶区,这些特征有利于减少水分蒸腾.(3)岩溶区黄荆和檵木叶片的维管组织发达程度高于非岩溶区,有利于在蒸腾减小的情况下促进水分运输和营养元素的迁移,说明2种植物叶片结构特征在不同生境区的改变是其长期在岩溶区干旱环境条件下形成的适应性变化. 相似文献
125.
126.
Xin Liao Wei Zhan Jiandong Zhang Zhongsheng Cheng Lianghe Li Tian Tian Lei Yu Rui Li 《Journal of cellular biochemistry》2020,121(10):4295-4309
Colorectal cancer is one of the most common and leading malignancies globally. Long noncoding RNAs (lncRNAs) function as potentially critical regulator in colorectal cancer. LINC01234, a novel lncRNA in tumor biology, regulates the progression of various tumors. However, the tumorigenic mechanism of LINC01234 in colorectal cancer is still unclear. This study was performed with the aim to prospectively investigate clinical significance, effect, and mechanism of lncRNA LINC01234 in colorectal cancer. First, we found that LINC01234, localized in the cytoplasm, was increased in both colorectal cancer cell lines and tissues. Subsequent functional assays suggested LINC01234 knockdown suppressed cell proliferation, migration, and invasion of colorectal cancer cells, while blocked cell cycle and induced cell apoptosis. Moreover, we identified that miR-1284 was target of LINC01234, we further demonstrated a negative correlation with LINC01234 in colorectal cancer tissues and cells. Furthermore, miR-1284 targeted and suppressed tumor necrosis factor receptor–associated factor 6 (TRAF6). Loss-of-function assay revealed that LINC01234 silencing suppressed colorectal cancer progression through inhibition of miR-1284. In vivo subcutaneous xenotransplanted tumor model indicated LINC01234 knockdown inhibited in vivo tumorigenic ability of colorectal cancer via downregulation of TRAF6. Collectively, this study clarified the biological significance of LINC01234/miR-1284/TRAF6 axis in colorectal cancer progression, providing insights into LINC01234 as novel potential therapeutic target for colorectal cancer therapeutic from bench to clinic. 相似文献
127.
青藏公路对高原鼠兔种内遗传分化的影响 总被引:5,自引:0,他引:5
研究采用7个微卫星标记分析在青海省西大滩区域,位于青藏公路两侧的4个高原鼠兔(Ochotona curzoniae)种群的遗传变异情况。分别采用软件TFPGA和GENE POP3.4计算各种群间的Nei’s标准遗传距离,基因分化系数(Fst)等参数,并对遗传距离进行UPGMA聚类分析。研究结果表明,公路同侧种群间平均遗传距离和基因分化系数分别为0.0808和0.0541;异侧种群间平均遗传距离和基因分化系数分别为0.1037和0.0705,公路东侧和西侧的两个种群分别聚为一类。青藏公路对分布于公路两侧的高原鼠兔种群间的基因交流产生了一定的阻隔效应,并导致种群间出现了一定程度的遗传分化。 相似文献
128.
A lack of selectable markers was a hindrance in investigating gene function in Metarhizium robertsii. A reliable Agrobacterium-mediated transformation system based on the use of chlorimuron ethyl as the selectable marker was developed which could serve as a useful tool to inactivate genes involved in insect pathogenicity. 相似文献
129.
130.