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91.
An engineered human IgG1 antibody with longer serum half-life   总被引:1,自引:0,他引:1  
The serum half-life of IgG Abs is regulated by the neonatal Fc receptor (FcRn). By binding to FcRn in endosomes, IgG Abs are salvaged from lysosomal degradation and recycled to the circulation. Several studies have demonstrated a correlation between the binding affinity of IgG Abs to FcRn and their serum half-lives in mice, including engineered Ab fragments with longer serum half-lives. Our recent study extended this correlation to human IgG2 Ab variants in primates. In the current study, several human IgG1 mutants with increased binding affinity to human FcRn at pH 6.0 were generated that retained pH-dependent release. A pharmacokinetics study in rhesus monkeys of one of the IgG1 variants indicated that its serum half-life was approximately 2.5-fold longer than the wild-type Ab. Ag binding was unaffected by the Fc mutations, while several effector functions appeared to be minimally altered. These properties suggest that engineered Abs with longer serum half-lives may prove to be effective therapeutics in humans.  相似文献   
92.
濒危植物明党参与非濒危种峨参种子休眠和萌发比较   总被引:11,自引:1,他引:11  
研究了濒危植物明党参(Changium smyrnioides)与非濒危种峨参(Anthriscus sylvestris)种子贮存,打破休眠和萌发对水分和温度条件的要求。结果表明,在自然条件下,明党参种子有5个月的休眠期,人工低温(10℃左右)处理40天即可打破休眠;两种植物种子自然温度干燥处理不能打破休眠;两种植物的种子在自然温度变湿层积处理后萌发率最高,萌发持续时间也最长,其中明党参的萌发率地峨参,持续时间短于峨参;自然温度淹水处理大大降低了两种植物种子的萌发率,但明党参仍有7%的萌发率。明党参种子质量和发芽率不应是明党参濒危的直接原因,但因其具有种子产量低,幼苗数量少,存活率高的K-对策,当受到强烈干扰时,种群难以在短期内恢复,容易濒危。  相似文献   
93.
AiiA蛋白的可溶性表达及其抗菌活性研究   总被引:2,自引:0,他引:2  
AHLs是革兰氏阴性细菌在增殖过程中产生的一类信号分子,与其致病性密切相关。AiiA蛋白作为一种胞内解酯酶.能水解致病菌产生的AHb分子,使内酯环开环后不能再激活某些胞外酶的表达.从而极大地减弱了细菌的致病性。本研究从苏云金芽孢杆菌LLB15中分离编码aiiA基因的质粒DNA。用PCR方法克隆面讲基因,并利用pET载体构建6-His融合表达质粒pET29a-aiiA,转化E.coli BL21(DE3)菌株,并筛选得到E.coli BL21(DE3)-pET29a-aiiA工程菌。在20℃的低温和0.8mmol/LIPTG条件下。经25h的诱导表达,获得了54.4ug/mL可溶性AiiA蛋白。通过镍柱亲和层析,在国内外首次纯化了带6-His标记的AiiA蛋白。水解活性和抗病性检测表明,该蛋白能水解AHLs分子.对胡萝卜欧文氏软腐病菌具有较强的抗病作用。  相似文献   
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Although biological nitrogen removal via nitrite is recognized as one of the cost-effective and sustainable biological nitrogen removal processes, nitrite accumulation has proven difficult to achieve in continuous processes treating low-strength nitrogenous wastewater. Partial nitrification to nitrite was achieved and maintained in a lab-scale completely stirred tank reactor (CSTR) treating real domestic wastewater. During the start-up period, sludge with ammonia-oxidizing bacteria (AOB) but no nitrite-oxidizing bacteria (NOB) was obtained by batch operation with aeration time control. The nitrifying sludge with the dominance of AOB was then directly switched into continuous operation. It was demonstrated that partial nitrification to nitrite in the continuous system could be repeatedly and reliably achieved using this start-up strategy. The ratio of dissolved oxygen to ammonium loading rate (DO/ALR) was critical to maintain high ammonium removal efficiency and nitrite accumulation ratio. Over 85% of nitrite accumulation ratio and more than 95% of ammonium removal efficiency were achieved at DO/ALR ratios in an optimal range of 4.0–6.0 mg O2/g N d, even under the disturbances of ammonium loading rate. Microbial population shift was investigated, and fluorescence in situ hybridization analysis indicated that AOB were the dominant nitrifying bacteria over NOB when stable partial nitrification was established.  相似文献   
97.
Xu Y  Wu F  Tan L  Kong L  Xiong L  Deng J  Barbera AJ  Zheng L  Zhang H  Huang S  Min J  Nicholson T  Chen T  Xu G  Shi Y  Zhang K  Shi YG 《Molecular cell》2011,42(4):451-464
DNA methylation at the 5 position of cytosine (5mC) in the mammalian genome is a key epigenetic event critical for various cellular processes. The ten-eleven translocation (Tet) family of 5mC-hydroxylases, which convert 5mC to 5-hydroxymethylcytosine (5hmC), offers a way for dynamic regulation of DNA methylation. Here we report that Tet1 binds to unmodified C or 5mC- or 5hmC-modified CpG-rich DNA through its CXXC domain. Genome-wide mapping of Tet1 and 5hmC reveals mechanisms by which Tet1 controls 5hmC and 5mC levels in mouse embryonic stem cells (mESCs). We also uncover a comprehensive gene network influenced by Tet1. Collectively, our data suggest that Tet1 controls DNA methylation both by binding to CpG-rich regions to prevent unwanted DNA methyltransferase activity, and by converting 5mC to 5hmC through hydroxylase activity. This Tet1-mediated antagonism of CpG methylation imparts differential maintenance of DNA methylation status at Tet1 targets, ultimately contributing to mESC differentiation and the onset of embryonic development.  相似文献   
98.
A genetically engineered Pichia pastoris FPHY34 strain containing a 1.3 kb thermostable phytase gene (fphy) evolved by DNA shuffling was constructed and screened. Expression and purification conditions for the recombinant phytase were developed in this study. The effect of Pi on recombinant phytase expression and cell growth of P. pastoris FPHY34 was tested in shake flask culture. Optimization of carbon sources for cell growth and methanol feeding strategies for phytase expression in P. pastoris FPHY34 was carried out in a 50-L fermenter by fed-batch fermentation. The purification of phytase was investigated by micro-filtration and ultra-filtration followed by desalting, ion-exchange chromatography, and gel filtration in the ÄKTA system. It showed that the optimum inorganic phosphorus is 13.6 g L−1 and that glucose can be used as a substrate for P. pastoris cell growth instead of glycerol; the biomass yield of glycerol (YX/S) is slightly higher than that of glucose. Different profiles of lag phase and respiratory quotient (RQ) displayed between glucose and glycerol as the sole carbon source. The maximum phytase activity in per millimetre reached 2508 U mL−1 at a methanol feed rate of 3.0 mL L−1 h−1 after 80 h period of induction. A purification factor of 41.1 with a 32% yield was achieved after chromatographic purification. The specific enzyme activity was 80 U mg−1 and 3281 U mg−1 in that supernatant fraction and after gel filtration purification, respectively. The strain P. pastoris FPHY34 showed a promising application in phytase industrial production.  相似文献   
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100.
Cervical cancer is a serious threat to women’s health and is the third most common malignancy in women worldwide. Recent studies indicate that the long non-coding RNA CCAT1 plays a role in the malignant behavior of many tumors. However, the role of CCAT1 in cervical cancer is still unknown. Our aim is to evaluate the expression and investigate the regulatory role and potential mechanism of CCAT1 in cervical cancer. CCAT1 expression was measured by qRT-PCR. In addition, CCK-8 assays, colony formation assays, qRT-PCR assays, Transwell assays and xenograft experiments were performed to determine the role of CCAT1 in the proliferation and invasion in cervical cancer cells. The expression of CCAT1 in the cervical cancer tissues was higher than in the adjacent normal tissues. Overexpressing CCAT1 promoted cervical cancer cell proliferation, colony formation, and invasion in vitro. Elevated CCAT1 suppressed miR-181a expression, which was accompanied by an increased expression of MMP14 and HB-EGF. In contrast, knocking down CCAT1 resulted in increased expression of miR-181a, along with decreased expression of MMP14 and HB-EGF. Thus, CCAT1 is a key oncogenic lncRNA associated with cervical cancer and plays a role in promoting cervical cancer cell proliferation and invasion by regulating the miR-181a-5p/MMP14 axis.  相似文献   
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