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1.
Mesenchymal stem cells (MSCs) are non-hematopoietic cells with multi-lineage potential, which makes them attractive targets for regenerative medicine applications. Efficient gene transfer into MSCs is essential for basic research in developmental biology and for therapeutic applications involving gene-modification in regenerative medicine. Adenovirus vectors (Advs) can efficiently and transiently introduce an exogenous gene into many cell types via their primary receptors, the coxsackievirus and adenovirus receptors (CARs), but not into MSCs, which lack CAR expression. To overcome this problem, an Adv coated with cationic polymer polyethyleneimine (PEI) was developed. In this study, we demonstrated that PEI coating with an optimal ratio can enhance adenoviral transduction of MSCs without cytotoxicity. We also investigated the physicochemical properties and internalization mechanisms of the PEI-coated Adv. These results could help to evaluate the potentiality of the PEI-coated Adv as a prototype vector for efficient and safe transduction into MSCs.  相似文献   
2.
Our previous study reported that cerebrosides from traditional Chinese medicine Baifuzi directly interact with the STREX domain of BKCa channels, which in turn results in the therapeutic effect of Baifuzi on ischemic stroke. However, it is not known how cerebrosides in the plasma membrane could interact with the STREX domain that is in the cytoplasmic side. Using patch-clamp technique, effects of different cerebrosides on the BKCa channel were studied by measuring single channel currents in CHO cells expressing wild type or mutated BKCa channels. Palmitoylation of the STREX domain was removed either by site-directed mutagenesis or pharmacological inhibition. Removal of palmitoylation sites at C646 and C647 by mutating the residues to Ala abolished the ability of cerebrosides to activate the BKCa channel. In contrast, the mutation neither changed the single channel conductance nor voltage sensitivity of the channel. Both palmitoylation inhibitors tunicamycin and palmitic acid analog 2-bromopalmitate attenuated the activation of the BKCa channel by cerebrosides. Furthermore, confocal images on STREX-EGFP fragments demonstrated that STREX fragments no longer associated with the plasma membrane when the palmitoylation was removed or blocked. These findings suggest that palmitoylation of the STREX domain is necessary for cerebrosides to activate the BKCa channel and provide insight into the mechanism of how Baifuzi could exert therapeutic effect on ischemic stroke.  相似文献   
3.
A series of novel 2-methoxy-phenyl dimethyl-carbamate derivatives were designed, synthesized and evaluated as site-activated MTDLs based on rivastigmine and curcumin. Most of them exhibited good to excellent AChE and BuChE inhibitory activities with sub-micromolar IC50 values. Among all the compounds, 6a demonstrated the most potent AChE inhibition with IC50 value of 0.097 μM, which is about 20-fold than that of rivastigmine. In addition, the three selected compounds 5a, 6a and 6e demonstrated inhibitory activity against Aβ self-aggregation similar to cucurmin in TEM assay, which is obviously different from the weak activity of rivastigmine. Moreover, the hydrolysate of 6a (compound 7) also showed potent ABTS+ scavenging and moderate copper ion chelating activity in vitro.  相似文献   
4.
N6-methyladenosine (m6A) is the most prevalent internal mRNA modification in eukaryotes. Loss of m6A demethylase FTO increases m6A levels and inhibits adipogenesis of preadipocytes. However, its underlying mechanism remains elusive. Here, we demonstrated that silencing FTO inhibited adipogenesis of preadipocytes through impairing cell cycle progression at the early stage of adipogenesis. FTO knockdown markedly decreased the expression of CCNA2 and CDK2, crucial cell cycle regulators, leading to delayed entry of MDI-induced cells into G2 phase. Furthermore, the m6A levels of CCNA2 and CDK2 mRNA were significantly upregulated following FTO knockdown. m6A-binding protein YTHDF2 recognized and decayed methylated mRNAs of CCNA2 and CDK2, leading to decreased protein expression, thereby prolonging cell cycle progression and suppressing adipogenesis. Our work unravels that FTO regulates adipogenesis by controlling cell cycle progression in an m6A-YTHDF2 dependent manner, which provides insights into critical roles of m6A methylation in adipogenesis.  相似文献   
5.
【目的】波罗的海希瓦氏菌(Shewanella baltica)是冷藏海产鱼类的特定腐败菌。研究群体感应信号AI-2/Lux S对鱼源S.baltica生物被膜和致腐的调控作用。【方法】扩增SB11分离株的lux S基因,用自杀性质粒构建lux S基因缺失株,通过结晶紫染色、珠涡流法、显微镜观察和HPLC,比较分析野生株与缺失株△lux S在4°C和28°C下生物被膜形成、粘附能力、泳动性和致腐产物的差异。【结果】S.baltica SB11中扩增获得lux S基因,生物信息学分析显示Lux S蛋白由169个氨基酸构成,含有保守的His-Thr-Leu-Glu-His(HTLEH)模体和关键氨基酸位点,蛋白三维空间结构与其他细菌相似。与野生株相比,△lux S缺失株上清荧光信号散失,但不影响生长,生物被膜形成期和成熟期的含量显著低于野生株,在4°C培养96 h和28°C培养24 h被膜分别减少20.1%和27.9%。缺失株在不锈钢片的粘附能力明显减弱,其中在4°C培养72 h和28°C培养24 h后的粘附量比野生株分别减少6.48%和6.57%。荧光显微镜观察发现,野生株能快速粘附于玻璃片,聚集形成大量生物被膜,而△lux S仅形成平坦稀疏的被膜,粘附细菌降低,CLSM证实野生株和△lux S的成熟被膜厚度分别为68.95μm和36.44μm。并且,△lux S株在4°C和28°C下泳动性均显著强于野生株。然而,野生株和△lux S株三甲胺和腐胺积累无差异。【结论】鱼源S.baltica中Lux S蛋白保守,AI-2/Lux S参与被膜、粘附能力及泳动性等多种生物被膜形成相关的调控作用,然而不是该菌致腐能力的功能性群体感应信号。  相似文献   
6.
7.
厌氧氨氧化体的组成、结构与功能   总被引:2,自引:1,他引:1  
厌氧氨氧化(Anammox)是微生物和环境领域的研究热点之一。厌氧氨氧化菌(AnAOB)是Anammox的功能载体。不同于大部分原核微生物,AnAOB具有独特的细胞器——厌氧氨氧化体,它是进行Anammox代谢的场所。研究厌氧氨氧化体有助于探明厌氧氨氧化菌的代谢特性。本文综述了厌氧氨氧化体的组成、结构与功能,以期为从事Anammox研究的同行提供参考。  相似文献   
8.
磷酸泛酰巯基乙胺基转移酶(PPTase)催化脂肪酸合酶(FAS)、聚酮合酶(PKS)和非核糖体肽合成酶(NRPS)中载体蛋白从脱辅基形态转化为全辅基形态,对脂肪酸、PKS产物和NRPS产物的生物合成起着不可或缺的作用。本文介绍并总结了链霉菌PPTase对载体蛋白底物选择性的最新研究进展:Ⅲ型PPTase特异性催化同一个多肽链中ACP的辅基化;Ⅱ型PPTase倾向于催化Ⅰ型PKS中ACP和NRPS中PCP的辅基化;Ⅰ型PPTase倾向于催化Ⅱ型PKS中ACP和Ⅱ型FAS中ACP的辅基化;编码基因位于基因簇内的Ⅰ型/Ⅱ型PPTase倾向于催化编码基因位于同基因簇内的PKS/NRPS中ACP/PCP的辅基化;这些研究结果为阐明并改造链霉菌辅基化网络以提高特定次级代谢产物的产量提供了参考和借鉴。  相似文献   
9.
传统以达标排放为核心目标的废水处理工艺往往以高能耗、高物耗换取污染物削减,形成了"减排污染物、增排温室气体"的尴尬局面,并不符合可持续发展理念。作为一种新型的膜处理技术,膜生物膜法可利用无泡曝气的方式将气态电子供体(甲烷、氢气)或受体(氧气)提供给附着在膜表面的微生物,从而驱动水体中的污染物去除,并产生一些极具回收潜力的物质,最终实现污染物削减、节能减排及资源回收三大目标的有机整合。本文系统介绍了膜生物膜的传质过程及其去除污染物的微观机制,探讨了膜生物膜法在水处理资源回收方面的研究前景,梳理了膜生物膜反应器在水污染控制方面的实验研究和中试应用现状,并总结了膜生物膜法面临的挑战及发展趋势。  相似文献   
10.
Yin XR  Shi YN  Min T  Luo ZR  Yao YC  Xu Q  Ferguson I  Chen KS 《Planta》2012,235(5):895-906
Thirteen ethylene signaling related genes were isolated and studied during ripening of non-astringent ‘Yangfeng’ and astringent ‘Mopan’ persimmon fruit. Some of these genes were characterized as ethylene responsive. Treatments, including ethylene and CO2, had different effects on persimmon ripening, but overlapping roles in astringency removal, such as increasing the reduction in levels of soluble tannins. DkERS1, DkETR2, and DkERF8, may participate in persimmon fruit ripening and softening. The expression patterns of DkETR2, DkERF4, and DkERF5 had significant correlations with decreases in soluble tannins in ‘Mopan’ persimmon fruit, suggesting that these genes might be key components in persimmon fruit astringency removal and be the linkage between different treatments, while DkERF1 and DkERF6 may be specifically involved in CO2 induced astringency removal. The possible roles of ethylene signaling genes in persimmon fruit astringency removal are discussed.  相似文献   
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