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[背景]布鲁菌病是由布鲁菌感染引起的一种人兽共患传染病,对畜牧业发展和人类健康有着巨大的威胁。利用新型报告基因NanoLuc荧光素酶构建一种可以检测布鲁菌基因启动子活性的质粒,对于研究布鲁菌毒力基因的调控表达具有重要意义。[目的]制备NanoLuc荧光素酶多克隆抗体,构建一种基于NanoLuc荧光素酶报告布鲁菌基因启动子活性的质粒,并通过测定bcsp31基因启动子和virB启动子活性验证该方法的可行性。[方法]构建NanoLuc荧光素酶原核表达载体pET-Nluc,纯化蛋白免疫新西兰大白兔制备多克隆抗体;以广宿主质粒pBBR1MCS为骨架,构建质粒pNluc、pBcsp31-Nluc和pVirB-Nluc,通过电转化构建S2308(Nluc)、S2308(Bcsp31-Nluc)和S2308(VirB-Nluc)重组菌株,在体外培养条件下测定bcsp31基因启动子和virB启动子活性;比较分析virB启动子在胞内感染条件下和体外培养条件下的活性。[结果]通过原核表达获得NanoLuc荧光素酶重组蛋白,并制备得到效价高于1:100 000的多克隆抗体;成功构建pNluc、pBcsp31-Nluc和pVirB-Nluc质粒以及S2308(Nluc)、S2308(Bcsp31-Nluc)和S2308(VirB-Nluc)重组菌株;体外培养条件下测定bcsp31基因启动子和virB启动子活性,结果显示pNluc质粒可以精确报告其活性;测定virB启动子在胞内诱导条件下和体外培养条件下的活性,结果显示virB启动子活性在胞内感染条件下明显增强。[结论]构建了基于NanoLuc荧光素酶报告布鲁菌基因启动子活性的质粒,并验证其可以精确反映布鲁菌基因启动子活性,为研究布鲁菌毒力基因以及揭示其致病机制奠定了基础。  相似文献   
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Ligand-mediated endocytosis is a key autoregulatory mechanism governing the duration and intensity of signals emanating from cell surface receptors. Due to the mechanistic complexity of endocytosis and its emerging relevance in disease, simple methods capable of tracking this dynamic process in cells have become increasingly desirable. We have developed a bioluminescent reporter technology for real-time analysis of ligand-mediated receptor endocytosis using genetic fusions of NanoLuc luciferase with various G-protein-coupled receptors (GPCRs). This method is compatible with standard microplate formats, which should decrease work flows for high-throughput screens. This article also describes the application of this technology to endocytosis of epidermal growth factor receptor (EGFR), demonstrating potential applicability of the method beyond GPCRs.  相似文献   
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miRNAs, ~22nt small RNAs associated with Argonaute (AGO) proteins, are important negative regulators of gene expression in mammalian cells. However, mammalian maternal miRNAs show negligible repressive activity and the miRNA pathway is dispensable for oocytes and maternal‐to‐zygotic transition. The stoichiometric hypothesis proposed that this is caused by dilution of maternal miRNAs during oocyte growth. As the dilution affects miRNAs but not mRNAs, it creates unfavorable miRNA:mRNA stoichiometry for efficient repression of cognate mRNAs. Here, we report that porcine ssc‐miR‐205 and bovine bta‐miR‐10b are exceptional miRNAs, which resist the diluting effect of oocyte growth and can efficiently suppress gene expression. Additional analysis of ssc‐miR‐205 shows that it has higher stability, reduces expression of endogenous targets, and contributes to the porcine oocyte‐to‐embryo transition. Consistent with the stoichiometric hypothesis, our results show that the endogenous miRNA pathway in mammalian oocytes is intact and that maternal miRNAs can efficiently suppress gene expression when a favorable miRNA:mRNA stoichiometry is established.  相似文献   
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A split NanoLuc assay system consisting of two fragments, large N-terminal and small C-terminal regions (NanoBiT), was developed to investigate protein-protein interactions within living cells. Interestingly, the replacement of five amino acids among 11 C-terminal amino acids dramatically increased affinity against the large N-terminal fragment, LgBiT, and the complex had NanoLuc luciferase activity. In this study, we first applied this small fragment, HiBiT, to elucidate the expression of ATF4 protein by transient overexpression of HiBiT-tagged ATF4. According to the regulation of intrinsic ATF4 protein, stabilization of HiBiT-tagged ATF4 with a proteasome inhibitor, MG132, was observed by detecting luciferase activity in cell lysate and after SDS-PAGE and transfer onto a PVDF membrane. Next, we knocked-in the HiBiT-epitope tag into the ATF4 gene using the CRISPR/Cas9 system and rapidly selected positive clones by measuring luciferase activity in an aliquot of each cell suspension. Using a selected clone, we observed that the expression of HiBiT-tagged ATF4 in the selected cells varied in response to treatment with protein synthesis inhibitors or proteasome inhibitors and tunicamycin. Altogether, this novel HiBiT tag is a useful tool to evaluate the endogenous expression levels of proteins of interest.  相似文献   
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NanoLuc (NLuc)-furimazine bioluminescence system offers several advantages over established systems, including improved stability, smaller size, and >150-fold enhancement in bioluminescence. Herein, we designed and synthesized a series of bioluminescent substrates with varying at the C-6 position of furimazine for NLuc-furimazine bioluminescence system. Among all derivatives, compounds A6 and A11 provided excellent bioluminescence characteristics compared with furimazine in vitro and in vivo. We believe that these new NLuc substrates can broaden the application of NLuc bioluminescence techniques, especially in vivo bioluminescent imaging.  相似文献   
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Luciferases have been widely utilized as sensitive reporters to monitor gene expression and protein-protein interactions. Compared to firefly luciferase (Fluc), a recently developed luciferase, Nanoluciferase (NanoLuc or Nluc), has several superior properties such as a smaller size and stronger luminescence activity. We compared the reporter properties of Nluc and Fluc in rice (Oryza sativa). In both plant-based two-hybrid and split luc complementation (SLC) assays, Nluc activity was detected with higher sensitivity and specificity than that with Fluc. To apply Nluc to research involving the photoperiodic regulation of flowering, we made a knock-in rice plant in which the Nluc coding region was inserted in-frame with the OsMADS15 gene, a target of the rice florigen Hd3a. Strong Nluc activity in response to Hd3a, and in response to change in day length, was detected in rice protoplasts and in a single shoot apical meristem, respectively. Our results indicate that Nluc assay systems will be powerful tools to monitor gene expression and protein-protein interaction in plant research.  相似文献   
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