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11.
目的 研究miR-129-5p通过靶定胸苷酸合成酶(TYMS)调控结肠癌细胞对5-氟尿嘧啶(5-Fu)敏感性的分子机制.方法 构建结肠癌耐药细胞株LoVo/5-Fu,并用实时荧光定量聚合酶链反应(PCR)检测miR-129-5p的表达水平.流式细胞术和MTT毒性实验检测过表达miR-129-5p对LoVo/5-Fu凋亡和半数致死剂量(IC50)的影响.构建TYMS 3'UTR区荧光素酶报告载体,验证miR-129-5p对TYMS的靶向调控作用.Western Blot检测转染miR-129-5p后LoVo/5-Fu细胞中TYMS的蛋白表达.在LoVo/5-Fu内转染miR-129-5P siRNA,抑制其表达,检测LoVo/5-Fu细胞的IC50和凋亡.结果 过表达miR-129-5p后,LoVo/5-Fu细胞用5-Fu处理后凋亡增加,IC50降低.荧光素酶活性检测表明miR-129-5p能够抑制TYMS的荧光素酶活性.在LoVo/5-Fu细胞中miR-129-5p与TYMS的表达呈负相关.敲减TYMS后,LoVo/5-Fu细胞用5-Fu处理后凋亡增加,IC50降低.结论 MiR-129-5p能够通过靶定TYMS而增加结肠癌细胞对5-Fu的敏感性.  相似文献   
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Interferon (IFN)-γ is indispensable in the resolution of cutaneous leishmaniasis (CL), while the Th2 cytokines IL-4, IL-10, and IL-13 mediate susceptibility. A recent study found that miR155, which promotes CD4+ Th1 response and IFN-γ production, is dispensable in the control of Leishmania donovani infection. Here, the role of miR155 in CL caused by L. major was investigated using miR155-deficient (miR155−/−) mice. Infection was controlled significantly quicker in the miR155−/− mice than in their wild-type (WT) counterparts, indicating that miR155 contributes to the pathogenesis of CL. Faster resolution of infection in miR155−/− mice was associated with increased levels of Th1-associated IL-12 and IFN-γ and reduced production of Th2- associated IL-4, IL-10, and IL-13. Concentrations of IFN-γ+CD8+ T cells and natural killer cells in draining lymph nodes were significantly higher in the L. major−infected miR155−/− mice than in the infected WT mice, as indicated by flow-cytometry. After in vitro IFN-γ stimulation, nitric oxide and IL-12 production were increased, IL-10 production was decreased, and parasite clearance was enhanced in L. major−infected miR155−/− DCs compared to those in WT DCs. Furthermore, IFN-γ production from activated miR155−/− T cells was significantly enhanced in L. major−infected miR155−/− DCs. Together, these findings demonstrate that miR155 promotes susceptibility to CL caused by L. major by promoting Th2 response and inhibiting DC function.

Leishmania are obligate intracellular protozoans that infect phagocytes and cause a spectrum of clinical diseases such as cutaneous leishmaniasis (CL) and visceral leishmaniasis. Common in the tropical and subtropical regions, leishmaniasis affects over 1 billion people worldwide, with an incidence of up to 1 million cases per year.1 CL is the most common type of Leishmania infection, manifesting as localized skin lesions that can become chronic, leading to significant tissue destruction and disfigurement.2,3 It is well documented that the induction of a Th1 response and interferon (IFN)-γ are indispensable in the resolution of CL caused by Leishmania major,4 whereas disease progression is associated with the induction of a Th2 response and the production of cytokines such as IL-4 and IL-10.5 Establishing a disease-resolving response in the host is largely dependent on the ability to mount an appropriate Th1 immune response.4 Crucial in this response is the stimulation and activation of DCs that direct T-cell proliferation and differentiation toward IFN-γ–producing Th1 cells.6,7 In addition to activating of phagocytic cells, IFN-γ induces the production of reactive nitrogen species, specifically nitric oxide (NO), leading to enhanced parasite clearance.4miR155 is a recognized regulator of immune cell function and immune response. miR155 enhances macrophage and DC activation and induces inflammatory response,8,9 and up-regulation of miR155 in CD4+ T cells promotes preferential Th1 differentiation and IFN-γ production10 by suppressing the expression of suppressor of cytokine signaling (SOCS)-1.11, 12, 13, 14 Conversely, miR155 gene–deficient mice exhibit diminished levels of Th1/Th17 cells, macrophages, and DCs.15 miR155 has also been shown to play a role in regulating effector Th2 response.16, 17, 18 Collectively, these findings suggest that miR155 regulates both Th1 and Th2 responses, which control the outcome of CL caused by L. major. Therefore, the role of miR155 in immunity to L. major using miR155−/− mice was investigated in the present study. The findings show that miR155 is not required for the induction of a Th1 response and IFN-γ in L. major infection. Rather, miR155 plays a disease-exacerbating role in CL by attenuating DC function and Th1 response and promoting Th2 response.  相似文献   
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The induction of ventricular arrhythmia in patients with a history of malignant ventricular arrhythmia by programmed electrical stimulation (PES) is associated with a poor prognosis. However, the incidence and significance of inducible arrhythmia in patients with stable coronary artery disease (CAD) who do not have a history of serious arrhythmia are unknown. We studied 32 such patients (31 men, mean age 55 years) with PES at the time of cardiac catheterization. Fourteen patients (Group I) manifested greater than or equal to 3 extraventricular responses when challenged with 1 to 3 propagated right ventricular extrastimuli during ventricular pacing. Twelve (86%) of these 14 had evidence of left ventricular dysfunction (LVD), defined by a global ejection fraction of less than 50% or regional wall motion abnormalities. The remaining 18 patients (Group II) manifested less than or equal to 2 responses to extrastimulation. Only 4 (22%) of these 18 had LVD. Proximal 3-vessel CAD was more frequent in Group I patients (10 of 14, 71%) than in Group II (7 of 18, 39%). Only 5 patients (4 from Group I and 1 from Group II) demonstrated complex arrhythmia during exercise testing or ambulatory monitoring. The induction of extraventricular responses during PES may serve as an independent marker of electrical instability in the coronary population and is a much more common finding in those with LVD.  相似文献   
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A polymorphism at codon 129 of the prion protein gene has been shown to confer genetic susceptibility to prion diseases, and to influence the epidemic course of variant Creutzfeldt--Jakob disease. We employed a PCR-endonuclease digestion-based assay to investigate this genetic trait in Brazil, and then compared our results to previously published data from several European and Asian countries.Financial Support: Fundacao de Amparo a Pesquisa do Estado de São Paulo -- FAPESP  相似文献   
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K A Skau 《Muscle & nerve》1990,13(4):321-325
The tetrameric form of acetylcholinesterase (AChE) in ReJ/129 dystrophic mice was demonstrated to be absent from endplate-poor regions of skeletal muscle but present in endplate-rich regions. Skeletal muscle secreted normal amounts of this form of AChE. Visceral organs had normal amounts and distribution of the AChE molecular forms. These results suggest that the AChE defect in dystrophic mice is limited to skeletal muscle, and the defect does not reflect an abnormality of AChE synthesis but probably reflects an inability to incorporate the enzyme into skeletal muscle membranes.  相似文献   
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