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231.
The CLCA family of proteins consists of a growing number of structurally and functionally diverse members with distinct expression patterns in different tissues. Several CLCA homologs have been implicated in diseases with secretory dysfunctions in the respiratory and intestinal tracts. Here we present biochemical protein characterization and details on the cellular and subcellular expression pattern of the murine mCLCA6 using specific antibodies directed against the amino- and carboxy-terminal cleavage products of mCLCA6. Computational and biochemical characterizations revealed protein processing and structural elements shared with hCLCA2 including anchorage in the apical cell membrane by a transmembrane domain in the carboxy-terminal subunit. A systematic light- and electron-microscopic immunolocalization found mCLCA6 to be associated with the microvilli of non-goblet cell enterocytes in the murine small and large intestine but in no other tissues. The expression pattern was confirmed by quantitative RT-PCR following laser-capture microdissection of relevant tissues. Confocal laser scanning microscopy colocalized the mCLCA6 protein with the cystic fibrosis transmembrane conductance regulator CFTR at the apical surface of colonic crypt cells. Together with previously published functional data, the results support a direct or indirect role of mCLCA6 in transepithelial anion conductance in the mouse intestine.  相似文献   
232.
单功能过氧化氢酶是在生物界广泛分布的抗氧化酶.近年来,人们在对单功能过氧化氢酶一级结构与生化性质深入研究的基础上,针对十几种单功能过氧化氢酶的高度保守的空间结构开展了研究.认识了其活性中心的血红素及周围保守残基,发现了酶的许多特殊结构,如方向不同的血红素,增强酶抗氧化性的侧链残基的共价键和保证酶高效催化的分子内通道等.本文综述了单功能过氧化氢酶空间结构研究现状,概括了酶构象的基本特点,分析了关注和争议较多的酶血红素、肽链侧链共价键及酶分子内通道等重点问题.深入研究单功能过氧化氢酶空间结构是一挑战性的课题,它将推动酶蛋白高级结构形成和酶催化模式等基础理论研究.  相似文献   
233.
Mechanical strain is one of the important epigenetic factors that cause deformation and differentiation of skeletal muscles. This research was designed to investigate how myoblast deformation occurs after cyclic strain loading. Myoblasts were passaged three times and harvested; various cyclic strains (2.5kPa, 5kPa and 10kPa) were then loaded using a pulsatile mechanical system. The adaptive response of the myoblasts was observed at different time points (0.5h, 1h, 6h and 12h) post-loading. At the early stage of cyclic strain loading (<1h), almost no visible morphological changes were observed in the myoblasts. The actin cytoskeleton showed a disordered arrangement and a weak fluorescence expression; there was little expression of talin. At 6h and 12h post-loading, the myoblasts changed their orientation to parallel (in the 2.5kPa and 5kPa groups) or perpendicular (in the 10kPa group) to the direction of strain. Fluorescence expression of both the actin cytoskeleton and talin was significantly increased. The results suggest that cyclic strain has at least two ways to regulate adaptation of myoblasts: (1) by directly affecting actin cytoskeleton at an early stage post-loading to cause depolymerization; and (2) by later chemical signals transmitted from the extracellular side to intracellular side to initiate repolymerization.  相似文献   
234.
目的:利用异丙肾上腺素(ISO)诱导大鼠心肌缺血性损伤模型和心肌细胞损伤模型,并对其进行药物干预,探讨心肌ATP敏感性钾 通道(KATP通道)维持缺血性心肌电平衡的作用与机制。方法:在动物实验中,将雄性SD大鼠,随机分为5组,正常对照组大鼠皮下注射0.9% 氯化钠溶液,其余各组大鼠均皮下注射等量1 g ? L -1 ISO(qd),连续9 d,其间,在第7~9 d,除了正常对照组和模型组外,其他3组大鼠还 分别灌胃给予1.75 g ? L -1 普萘洛尔(PRO)2 mL ? kg -1 ? d -1 、5 g ? L -1 曲美他嗪(VAS)2 mL ? kg -1 ? d -1 或腹腔注射给予5 g ? L -1 二苯基碘(DPI) 1 mL ? kg -1 ? d -1 。在造模期间不同时间点,对各组大鼠进行心电图检查,并制备心肌标本,检测其中KATP通道亚基KIR6.2蛋白表达水平。 在细胞实验中,将H9C2心肌细胞分成对照组(不给药)、ISO组、ISO+ PRO组、ISO+DPI组和ISO+VAS组,后3组细胞均在1 μmol ? L -1 ISO加入前30 min,分别给予2 μmol ? L -1 PRO、10 μmol ? L -1 DPI和10 μmol ? L -1 VAS,且在加入ISO后,与ISO组细胞一样,再孵育1 和24 h,采用实时荧光定量 PCR法测定各组细胞中KATP通道亚基KIR6.2和SUR2A基因表达水平。结果:大鼠实验显示,与正常对照组相比, 模型组大鼠在造模的第3、7 d,心电图参数QTc明显缩短,心率加快(P <0.05),且心肌中KIR6.2蛋白表达明显增多(P <0.01),而造 模9 d后,其QTc明显延长(P <0.01),心率减慢(P <0.05),心肌中KIR6.2蛋白表达显著降低(P <0.01);ISO+ PRO、ISO+DPI 和ISO+VAS各组大鼠在持续3 d分别接受3种药物治疗后,其QTc较模型组明显缩短,心率升高,均趋于恢复正常水平。细胞实验显示, 与对照组相比,ISO组H9C2细胞经ISO孵育1 h后,KIR6.2和SUR2A的mRNA表达显著上调(P <0.05),而在ISO孵育24 h后, KIR6.2和SUR2A的mRNA表达显著下调( P <0.01);与ISO组相比,各给药组细胞经ISO孵育1 h后,KIR6.2和SUR2A的mRNA表 达均有不同程度下调,而在ISO孵育24 h后,KIR6.2和SUR2A的mRNA表达均显著上调(P <0.05或P <0.01)。结论:KATP通道对 维护缺血性心肌电平衡起重要作用。持续性激动β受体、氧化应激或能量供应不足等体内多条途径都会影响KATP通道的表达和功能,而保护 KATP通道功能,对于维持心电平衡,抑制心律失常基质形成,意义重大。  相似文献   
235.
Sudden cardiac death remains one of the most serious medical challenges in Western countries. Increasing evidence in recent years has demonstrated that the n-3 polyunsaturated fatty acids (PUFAs) can prevent fatal ventricular arrhythmias in experimental animals and probably in humans. Dietary supplement of fish oils or intravenous infusion of the n-3 PUFAs prevents ventricular fibrillation caused by ischemia/reperfusion. Similar antiarrhythmic effects of these fatty acids are also observed in cultured mammalian cardiomyocytes. Based on clinical observations and experimental studies in vitro and in vivo, several mechanisms have been postulated for the antiarrhythmic effect of the n-3 PUFAs. The data from our laboratory and others have shown that the n-3 PUFAs are able to affect the activities of cardiac ion channels. The modulation of channel activities, especially voltage-gated Na+ and L-type Ca2+ channels, by the n-3 fatty acids may explain, at least partially, the antiarrhythmic action. It is not clear, however, whether one or more than one mechanism involves the beneficial effect of the n-3 PUFAs on the heart. This article summarizes our recent studies on the specific effects of the n-3 PUFAs on cardiac ion channels. In addition, the effect of the n-3 PUFAs on the human hyperpolarization-activated cyclic-nucleotide-modulated channel is presented.  相似文献   
236.
Aah I is a 63-residue alpha-toxin isolated from the venom of the Buthidae scorpion Androctonus australis hector, which is considered to be the most dangerous species. We report here the first chemical synthesis of Aah I by the solid-phase method, using a Fmoc strategy. The synthetic toxin I (sAah I) was renatured in DMSO-Tris buffer, purified and subjected to thorough analysis and comparison with the natural toxin. The sAah I showed physico-chemical (CD spectrum, molecular mass, HPLC elution), biochemical (amino-acid composition, sequence), immunochemical and pharmacological properties similar to those of the natural toxin. The synthetic toxin was recognized by a conformation-dependent monoclonal anti-Aah I antibody, with an IC50 value close to that for the natural toxin. Following intracerebroventricular injection, the synthetic and the natural toxins were similarly lethal to mice. In voltage-clamp experiments, Na(v) 1.2 sodium channel inactivation was inhibited by the application of sAah I or of the natural toxin in a similar way. This work describes a simple protocol for the chemical synthesis of a scorpion alpha-toxin, making it possible to produce structural analogues in time.  相似文献   
237.
238.
钾离子通道是分布最为广泛、种类繁多的一类离子通道,因其生理功能的多样性,已成为许多疾病的药物作用靶点。近年来,许 多化学结构不同的药物均因钾离子通道阻滞引起的严重心肌毒性而被撤出市场,使得小分子药物的钾通道抑制活性筛选面临重大挑战。 介绍检测钾离子通道的小分子荧光探针的研究进展,并总结小分子荧光探针的作用机制,为今后小分子荧光探针的设计提供思路,使得 小分子荧光探针可以广泛应用于候选药物的高通量筛选、钾离子通道的活体成像与检测。  相似文献   
239.
滇池流域居民-农田混合区面源污染控制集成技术   总被引:4,自引:0,他引:4  
以滇池流域六甲乡金家村为研究对象,该区为城郊典型的居民-农田混合区,总面积14万m2,其中居民区面积为7.7万m2,常驻人口780口,区内有一家约120头的养猪场,一个具有9家洗涤企业的金家村工业园区,居民区和养殖、工业废水直接排向就近的90%种植韭菜的农田区。针对该区村庄-小企业-农田-养殖业呈复区分布,污染源复杂,雨污混流污染严重,污水管网建设滞后,化肥施用过量,沟渠湿地系统破碎等现状,研发出兼顾水质净化和农田排灌的居民-农田混合区面源污染控制集成技术,包括改良化粪池与组合基质床,生态支沟,生态干渠,A/O生物处理系统,复合人工湿地等污水处理技术,以及农田内部的节氮控磷技术,如精确施肥,施用硝化抑制剂抑制氮向水体迁移,垄沟内浮萍的氮磷滞留与养分循环利用。通过12个月的连续监测表明:在非降雨日负荷为500m3/d的工况下,改良化粪池与组合基质床对COD,TP,TN的去除率分别为61.3%,50.50%,44.4%;A/O生物处理系统对COD,TP,TN的去除率分别为65.8%,55.2%,55.2%;生态支沟由于进水量小浓度高,水力停留时间长,其对COD,TP,TN的去除率均比生态干渠的高,分别高29.0%,17.5%,28.4%;系统末端复合人工湿地对污染物质的去除效果分别为COD 50.6%,TP44.9%,TN36.4%。一年内依托集成技术建设的生态工程去除污染物的总量为COD 143.71t,TP2.43t和TN16.99t,对氮磷的去除量相当于一座负荷为350~620m3/d 的市政污水处理厂去除的量。经济效益分析得出,整个系统日耗电量18度,由一名工人即可管护。传统施肥减量20%+叶面肥,每年每公顷可减少氮肥投入约2400元,增加叶面肥投入约500元,减少收入约1300元,合计增收3200元。浮萍滞留与养分循环利用,每年每公顷韭菜地相当于少施用151kg尿素和93kg过磷酸钙的氮磷含量。施用DCD和元素硫,淋溶水中硝态氮的浓度降低了59.2%,测渗水中则降低了62.2%。可见,居民-农田混合区面源污染控制集成技术不但可以有效去除污染物,而且在保证产量的情况下,增加农民收益。技术适用于城市郊区、城乡结合部及广大农村等城市污水管网未覆盖地区推广使用,具有巨大的推广潜力。  相似文献   
240.
Reactive oxygen species (ROS) play an important role in physiological and pathological processes. In recent years, a feed-forward regulation of the ROS sources has been reported. The interactions between the main cellular sources of ROS, such as mitochondria and NADPH oxidases, however, remain obscure. This work summarizes the latest findings on the role of cross talk between mitochondria and NADPH oxidases in pathophysiological processes. Mitochondria have the highest levels of antioxidants in the cell and play an important role in the maintenance of cellular redox status, thereby acting as an ROS and redox sink and limiting NADPH oxidase activity. Mitochondria, however, are not only a target for ROS produced by NADPH oxidase but also a significant source of ROS, which under certain conditions may stimulate NADPH oxidases. This cross talk between mitochondria and NADPH oxidases, therefore, may represent a feed-forward vicious cycle of ROS production, which can be pharmacologically targeted under conditions of oxidative stress. It has been demonstrated that mitochondria-targeted antioxidants break this vicious cycle, inhibiting ROS production by mitochondria and reducing NADPH oxidase activity. This may provide a novel strategy for treatment of many pathological conditions including aging, atherosclerosis, diabetes, hypertension, and degenerative neurological disorders in which mitochondrial oxidative stress seems to play a role. It is conceivable that the use of mitochondria-targeted treatments would be effective in these conditions.  相似文献   
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