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51.
Zinc is an essential trace element with wide-ranging biological functions, whereas the Hedgehog (Hh) signaling pathway plays crucial roles in both development and disease. Here we show that there is a mechanistic link between zinc and Hh signaling. The upstream activator of Hh signaling, the Hh ligand, originates from Hh autoprocessing, which converts the Hh precursor protein to the Hh ligand. In an in vitro Hh autoprocessing assay we show that zinc inhibits Hh autoprocessing with a Ki of 2 μm. We then demonstrate that zinc inhibits Hh autoprocessing in a cellular environment with experiments in primary rat astrocyte culture. Solution NMR reveals that zinc binds the active site residues of the Hh autoprocessing domain to inhibit autoprocessing, and isothermal titration calorimetry provided the thermodynamics of the binding. In normal physiology, zinc likely acts as a negative regulator of Hh autoprocessing and inhibits the generation of Hh ligand and Hh signaling. In many diseases, zinc deficiency and elevated level of Hh ligand co-exist, including prostate cancer, lung cancer, ovarian cancer, and autism. Our data suggest a causal relationship between zinc deficiency and the overproduction of Hh ligand.  相似文献   
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Free radicals are associated with glioma tumors. Here, we report on the ability of an anticancer nitrone compound, OKN-007 [Oklahoma Nitrone 007; a disulfonyl derivative of α-phenyl-tert-butyl nitrone (PBN)] to decrease free radical levels in F98 rat gliomas using combined molecular magnetic resonance imaging (mMRI) and immunospin-trapping (IST) methodologies. Free radicals are trapped with the spin-trapping agent, 5,5-dimethyl-1-pyrroline N-oxide (DMPO), to form DMPO macromolecule radical adducts, and then further tagged by immunospin trapping by an antibody against DMPO adducts. In this study, we combined mMRI with a biotin–Gd-DTPA–albumin-based contrast agent for signal detection with the specificity of an antibody for DMPO nitrone adducts (anti-DMPO probe), to detect in vivo free radicals in OKN-007-treated rat F98 gliomas. OKN-007 was found to significantly decrease (P < 0.05) free radical levels detected with an anti-DMPO probe in treated animals compared to untreated rats. Immunoelectron microscopy was used with gold-labeled antibiotin to detect the anti-DMPO probe within the plasma membrane of F98 tumor cells from rats administered anti-DMPO in vivo. OKN-007 was also found to decrease nuclear factor erythroid 2-related factor 2, inducible nitric oxide synthase, 3-nitrotyrosine, and malondialdehyde in ex vivo F98 glioma tissues via immunohistochemistry, as well as decrease 3-nitrotyrosine and malondialdehyde adducts in vitro in F98 cells via ELISA. The results indicate that OKN-007 effectively decreases free radicals associated with glioma tumor growth. Furthermore, this method can potentially be applied toward other types of cancers for the in vivo detection of macromolecular free radicals and the assessment of antioxidants.  相似文献   
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Dysregulation of cytokine expression causes inflammatory diseases or chronic infection conditions. We have identified that Tat-activating regulatory DNA-binding protein-43 (TDP-43) is involved in cytokine RNA processing in order to promote an optimal immune response. The interaction of TDP-43 with spliceosomal components from the Cajal body leads to the formation of a novel sub-nuclear body called the Interleukin (IL)-6 and IL-10 Splicing Activating Compartment (InSAC). TDP-43 binds to the IL-6 and IL-10 RNAs in a sequence-dependent manner. In cell-based studies, we observed that lipopoly-saccharide (LPS) stimulation induces the formation of the InSAC through TDP-43 ubiquitination, thereby influencing the processing and expression levels of IL-6 RNA. Moreover, TDP-43 knockdown in vivo results in a decrease in IL-6 production and its RNA splicing and stability. Thus, these findings demonstrate that the InSAC is linked to the activation and modulation of the immune response. [BMB Reports 2015; 48(5): 239-240]  相似文献   
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The central focus of this article is to assess the dynamic effects of nuclear and renewable energy consumption on CO2 emissions, for a given level of income and energy consumption. We apply an autoregressive distributed lag (ARDL) approach to cointegration to U.S. data from 1960 to 2010. We find that nuclear energy consumption indeed reduces CO2 emissions in both the short- and long-run, while renewable energy consumption does only in the short-run. We also find that income increases CO2 emissions in the long-run after showing the environmental Kuznets curve (EKC) initially in the short-run. Finally, energy consumption is found to have a negative impact on reducing CO2 emissions in the short- and long-run.  相似文献   
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目的探讨HE4、NF-κBp65以及MMP-9的表达与上皮性卵巢肿瘤临床病理生物学行为的关系以及对患者预后的影响。方法应用免疫组化对80例卵巢上皮性癌、10例交界性上皮性肿瘤及10例良性上皮性肿瘤组织进行HE4、NF-κB p65及MMP-9蛋白的检测。结果 HE4、NF-κBp65及MMP-9蛋白的阳性表达率在卵巢癌组均高于交界性及良性肿瘤组(P〈0.05)。三个指标的表达与EOC的组织学分级、腹腔脏器及淋巴结转移以及PTNM临床分期有关(P〈0.05);在EOC中,NF-κBp65分别与HE4、MMP-9的表达呈正相关(r1=0.673,P〈0.05;r2=0.775,P〈0.05)。多因素分析,PTNM分期、MMP-9的表达是影响卵巢癌术后患者预后的独立因素(P〈0.05);HE4阳性组与阴性组5年生存率分别为12.7%和84.0%,MMP-9阳性组与阴性组5年生存率分别为8.7%和70.6%,差异均有统计学意义(P〈0.05)。结论 NF-κBp65可能通过上调HE4、MMP-9的表达促进EOC的浸润和转移,联合检测HE4、NF-κBp65以及MMP-9的表达可能作为预测和评价患者预后的生物学指标。  相似文献   
59.
目的探讨非对称性二甲基精氨酸(ADMA)上调大鼠主动脉诱导型一氧化氮合酶(iNOS)的表达是否是通过激活NF-κB实现的。方法 Wistar大鼠50只随机分为四组:①对照组(n=10):标准饲料喂养。②H组(n=12):高脂饲料喂养。③A+H组(n=14):予ADMA[0.2mg/kgd]灌胃,高脂饲料喂养。④P+A+H组(n=14):予吡咯烷二硫代氨基甲酸盐(pyrrolidine dithiocarbamate,PDTC)[40mg/kgd]腹腔注射、ADMA[0.2mg/kgd]灌胃、高脂饲料喂养。对照组、H组予等体积的生理盐水灌胃及腹腔注射、A+H组给予等体积的生理盐水腹腔注射。18周后麻醉大鼠、取主动脉。以实时荧光定量PCR和Westen blotting分别检测iNOS mRNA和蛋白表达,以电泳迁移率变动分析(EMSA)和增强化学发光法(ECL)检测NF-κB活性。结果①A+H组iNOS mRNA和蛋白表达量较对照组和H组增加(P<0.05),P+A+H组较A+H组iNOSmRNA和蛋白表达量降低(P<0.05)。②A+H组NF-κB活性较对照组和H组显著升高(P<0.05),P+A+H组NF-κB活性较A+H组明显降低(P<0.05)③相关分析:NF-κB活性与iNOS mRNA和蛋白表达量呈正相关(相关系数r分别为0.854、0.876,P<0.05)。结论 ADMA可能通过激活NF-κB途径上调iNOS表达,从而促进动脉粥样硬化的发生发展。  相似文献   
60.
Elevated parathyroid hormone-related protein (PTHrP) is responsible for humoral hypercalcemia of malignancy (HHM), which is of clinical significance in treatment of terminal patients with malignancies. Steroid hormones were known to cause suppression of PTHrP expression. However, detailed studies linking multiple steroid hormones to PTHrP expression are lacking. Here we studied PTHrP expression in response to steroid hormones in four cell lines with excessive PTHrP production. Our study established that steroid hormones negatively regulate PTHrP expression. Vitamin D receptor, estrogen receptor α, glucocorticoid receptor, and progesterone receptor, were required for repression of PTHrP expression by the cognate ligands. A notable exception was the androgen receptor, which was dispensable for suppression of PTHrP expression in androgen-treated cells. We propose a pathway(s) involving nuclear receptors to suppress PTHrP expression.  相似文献   
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