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31.
Although hydrogen peroxide (H2O2) and nitric oxide (NO) can act as an upstream signaling molecule to modulate the dynamic microtubule cytoskeleton during the defense responses to Verticillium dahliae (VD) toxins in Arabidopsis, it is not known the relationship between these two signaling molecules. Here, we show that VD-toxin-induced NO accumulation was dependent on prior H2O2 production, NO is downstream of H2O2 in the signaling process, and that H2O2 acted synergistically with NO to modulate the dynamic microtubule cytoskeleton responses to VD-toxins in Arabidopsis.  相似文献   
32.
Introduction and Aims: Elevated plasma levels of C-reactive protein (CRP) are closely associated with progressive renal injury in patients with chronic kidney disease (CKD). Here, we tested a hypothesis that CRP may promote renal fibrosis and inflammation via a TGF-β/Smad3-dependent mechanism.Methods: Role and mechanisms of TGF-β/Smad3 in CRP-induced renal fibrosis and inflammation were examined in a mouse model of unilateral ureteral obstruction (UUO) induced in CRP Tg/Smad3 KO mice and in a rat tubular epithelial cell line in which Smad3 gene is stably knocked down (S3KD-NRK52E).Results: We found that mice overexpressing the human CRP gene were largely promoted renal inflammation and fibrosis as evidenced by increasing IL-1β, TNF-α, MCP-1 expression, F4/80+ macrophages infiltration, and marked accumulation of α-smooth muscle actin (α-SMA), collagen I and fibronectin in the UUO kidney, which were blunted when Smad3 gene was deleted in CRPtg-Smad3KO. Mechanistically, we found that the protection of renal inflammation and fibrosis in the UUO kidney of CRPtg-Smad3KO mice was associated with the inactivation of CD32-NF-κB and TGF-β/Smad3 signaling.Conclusion: In conclusion, Smad3 deficiency protects against CRP-mediated renal inflammation and fibrosis in the UUO kidney by inactivating CD32-NF-κB and TGF-β/Smad3 signaling.  相似文献   
33.
Guo B  Chen Y  Lei Y  Zhang L  Zhou WY  Rabie AB  Zhao J 《Biomacromolecules》2011,12(4):1312-1321
From the point of better biocompatibility and sustainability, biobased shape memory polymers (SMPs) are highly desired. We used 1,3-propanediol, sebacic acid, and itaconic acid, which have been industrially produced via fermentation or extraction with large quantities as the main raw materials for the synthesis of biobased poly(propylene sebacate). Diethylene glycol was used to tailor the flexibility of the polyester. The resulted polyesters were found to be promising SMPs with excellent shape recovery and fixity (near 100% and independent of thermomechanical cycles). The switching temperature and recovery speed of the SMPs are tunable by controlling the composition of the polyesters and their curing extent. The continuously changed switching temperature ranging from 12 to 54 °C was realized. Such temperature range is typical for biomedical applications in the human body. The molecular and crystalline structures were explored to correlate to the shape memory behavior. The combination of potential biocompatibility and biodegradability of the biobased SMPs makes them suitable for fabricating biomedical devices.  相似文献   
34.
Li CY  Chu JY  Yu JK  Huang XQ  Liu XJ  Shi L  Che YC  Xie JY 《Cell research》2004,14(6):473-479
The splicing of many alternative exons in the precursor messenger RNA (pre-mRNA) is regulated by extracellular factors but the underlying molecular bases remain unclear. Here we report the differential regulation of Bcl-x pre-mRNA splicing by extracellular factors and their distinct requirements for pre-mRNA elements. In K562 leukemia cells, treatment with interleukin-6 (IL-6) or granulocyte-macrophage colony stimulating factor (GM-CSF) reduced the proportion of the Bcl-xL variant mRNA while treatment with 12-O-tetradecanoylphorbol 13-acetate (TPA) had no effect. In U251 glioma cells, however, TPA efficiently increased the Bcl-xL level. These regulations were also seen for a transfected splicing reporter mini-gene. Further analyses of deletion mutants indicate that nucleotides 1-176 of the downstream intron are required for the IL-6 effect, whereas additional nucleotides 177-284 are essential for the GM-CSF effect. As for the TPA effect, only nucleotides 1-76 are required in the downstream intron. Thus, IL-6, GM-CSF and TPA differentially regulate Bcl-x splicing and require specific intronic pre-mRNA sequences for their respective effects.  相似文献   
35.
从基因水平探讨蛋氨酸脑啡肽对小鼠CD4'T细胞mRNA转录的影响。6~8周龄BALB/c雌性小鼠体内、外不同浓度MEK刺激。采用RT-PCR技术检测mRNA,所得不同浓度MEK刺激的CD4+T细胞mRNA和β-actin条带密度比值作为相对表达强度,所得数据采用SPSS11.5软件进行统计分析。4mg/mLMEK体内刺激及10-9~10-12mol/mL的MEK体外刺激促进小鼠CD4'T细胞mRNA转录;10-1~10-8mol/mL的MEK抑制小鼠CD4+T细胞mRNA的转录。10-13~10-14mol/mL的MEK对小鼠CD4'T细胞mRNA的转录无明显变化。适量浓度的MEK体内、外刺激能促进小鼠CD4+T细胞mRNA转录的高效表达。  相似文献   
36.
37.
王岩 《应用生态学报》2003,14(2):237-240
将72尾杂交罗非鱼分别养在12个水槽内,每个水槽内养6尾大小不同的鱼(A、B、C、D、E、F),其中鱼A的初始体重为62.69±1.46g,B为56.48±1.30g,C为50.75±1.19g,D为35.56±1.18g,E为31.05±0.88g,F为27。35±0.95g(平均值±标准误).在4周实验中,实验鱼分别被停食或每天按体重1.5%、3.0%和饱食水平投喂.鱼的特定生长率(SGR)和食物效率(FE)先随食物水平增加而增加,当食物水平超过鱼体重的3.0%后,继续增加投喂量,SGR不再升高而FE明显下降.按体重1.5%投喂的鱼SGR和终体重个体间变异较大.对鱼A而言,食物水平超过体重1.5%后对其SGR无显著影响,但对鱼F而言,食物水平对SGR影响较大.结果表明,杂交罗非鱼的生长和个体生长分化与食物条件和初始体重有关,当食物水平超过体重的3.0%后,鱼的SGR较高,个体生长分化相对较轻.  相似文献   
38.
目的:探讨卵巢上皮癌中ING4 基因启动子的甲基化状态及其临床意义。方法:收集2005 年7 月至2012 年6 月哈尔滨医科 大学附属第一医院行全面分期手术并经病理检查确诊的150 例卵巢上皮癌组织标本,并以同期因子宫肌瘤或子宫腺肌症行子宫 全切除术或次全切除术并经病理检查确诊为正常卵巢组织的150 例标本作为对照组。采用甲基化特异性PCR(MSP)技术检测卵 巢上皮癌组织与正常卵巢组织中ING4 基因启动子的甲基化状态,蛋白印迹法检测ING4 蛋白的表达,并分析ING4 基因启动子 的甲基化状态与卵巢上皮癌临床病例特征的关系。结果:卵巢上皮癌组织中ING4 基因启动子的甲基化阳性率为42.7%(64/150), 明显高于正常卵巢组织(4%,6/150),差异有统计学意义(P<0.05)。ING4 基因启动子甲基化阳性的卵巢上皮癌组织中ING4蛋白 表达阴性或弱阳性;ING4 基因启动子甲基化阴性的卵巢上皮癌和正常卵巢组织中ING4 蛋白表达阳性;在64 例ING4 基因启动 子甲基化的卵巢上皮癌组织中,ING4 蛋白表达强度与ING4 基因启动子的甲基化程度呈负相关(r=-0.435,P<0.05)。卵巢上皮癌 组织中,ING4 基因甲基化的阳性率随着手术病理分期和组织学分级的增加而增加(P<0.05);卵巢透明细胞癌(55.6%,10/18)和卵 巢子宫内膜样癌(59.3%,16/27)中ING4 基因甲基化的阳性率显著高于浆液性囊腺癌(33.9%,20/59)和粘液性囊腺癌(39.1%, 18/46)(P<0.05);ING4基因启动子的甲基化状态与患者的年龄、有无腹水及淋巴结转移均无显著相关性(P>0.05)。结论:ING4 基 因启动子的甲基化可能促进了其在卵巢上皮癌组织中的表达失活,进而促进了卵巢上皮癌的生长和分化。  相似文献   
39.
40.
Heat shock protein 90 (Hsp90), whose inhibitors have shown promising activity in clinical trials, is an attractive anticancer target. In this work, we first explored the significant pharmacophore features needed for Hsp90 inhibitors by generating a 3D-QSAR pharmacophore model. It was then used to virtually screen the SPECS databases, identifying 17 hits. Compound S1 and S13 exhibited the most potent inhibitory activity against Hsp90, with IC50 value 1.61±0.28 μM and 2.83±0.67 μM, respectively. Binding patterns analysis of the two compounds with Hsp90 revealed reasonable interaction modes. Further evaluation showed that the compounds exhibited good anti-proliferative effects against a series of cancer cell lines with high expression level of Hsp90. Meanwhile, S13 induced cell apoptosis in a dose-dependent manner in different cell lines. Based on the consideration of binding affinities, physicochemical properties and toxicities, 24 derivatives of S13 were designed, leading to the more promising compound S40, which deserves further optimization.  相似文献   
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