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51.
E3KARP mediates the association of ezrin and protein kinase A with the cystic fibrosis transmembrane conductance regulator in airway cells 总被引:1,自引:0,他引:1
Sun F Hug MJ Lewarchik CM Yun CH Bradbury NA Frizzell RA 《The Journal of biological chemistry》2000,275(38):29539-29546
Although it is generally recognized that cystic fibrosis transmembrane conductance regulator (CFTR) contains a PSD-95/Disc-large/ZO-1 (PDZ)-binding motif at its COOH terminus, the identity of the PDZ domain protein(s) that interact with CFTR is uncertain, and the functional impact of this interaction is not fully understood. By using human airway epithelial cells, we show that CFTR associates with Na(+)/H(+) exchanger (NHE) type 3 kinase A regulatory protein (E3KARP), an EBP50/NHE regulatory factor (NHERF)-related PDZ domain protein. The PDZ binding motif located at the COOH terminus of CFTR interacts preferentially with the second PDZ domain of E3KARP, with nanomolar affinity. In contrast to EBP50/NHERF, E3KARP is predominantly localized (>95%) in the membrane fractions of Calu-3 and T84 cells, where CFTR is located. Moreover, confocal immunofluorescence microscopy of polarized Calu-3 monolayers shows that E3KARP and CFTR are co-localized at the apical membrane domain. We also found that ezrin associates with E3KARP in vivo. Co-expression of CFTR with E3KARP and ezrin in Xenopus oocytes potentiated cAMP-stimulated CFTR Cl(-) currents. These results support the concept that E3KARP functions as a scaffold protein that links CFTR to ezrin. Since ezrin has been shown previously to function as a protein kinase A anchoring protein, we suggest that one function served by the interaction of E3KARP with both ezrin and CFTR is to localize protein kinase A in the vicinity of the R-domain of CFTR. Since ezrin is also an actin-binding protein, the formation of a CFTR.E3KARP.ezrin complex may be important also in stabilizing CFTR at the apical membrane domain of airway cells. 相似文献
52.
【目的】明确小蓬草Conyza canadensis ( L.) Cronq.精油的杀虫潜力及其活性成分。【方法】通过浸虫法和密闭熏蒸法测试了小蓬草精油对白纹伊蚊Aedes albopictus和致倦库蚊Culex pipiens quinquefasciatus幼虫及成蚊的毒杀活性, 并利用气相色谱 质谱联用仪(GC-MS)对精油的挥发性成分进行了定性分析。【结果】 小蓬草精油对白纹伊蚊1-4龄期幼虫及蛹的24 h LC50值分别为25.01, 45.88, 56.94, 64.60和346.23 μg/mL; 对致倦库蚊幼虫1-4龄期幼虫及蛹的24 h LC50值分别为9.16, 8.65, 32.12, 43.68和197.83 μg/mL。在剂量分别为48, 64, 80, 96, 112和128 μg/cm3时, 小蓬草精油对白纹伊蚊成蚊的KT50值分别为28.81, 22.31, 20.38, 17.05, 13.92和9.74 min; 对致倦库蚊的KT50值分别为34.90, 32.97, 23.97, 19.60, 15.20和10.34 min。 24 h熏蒸对白纹伊蚊和致倦库蚊成蚊的LC50值分别是75.46和99.19 μg/cm3。小蓬草精油的GC MS定性分析共分离鉴定出31种化合物, 其中单萜类物质6种, 倍半萜烯类物质17种, 含氧萜烯类6种。【结论】结果表明小蓬草精油对这两种蚊虫的毒杀活性较高, 具有深开发潜力。 相似文献
53.
新疆两盐湖可培养极端嗜盐菌组成及功能多样性研究 总被引:1,自引:0,他引:1
【目的】通过分析不同成盐类型盐湖中的极端嗜盐菌群落组成差异,探究可培养极端嗜盐菌的功能特性。【方法】采集新疆硫酸盐型盐湖七角井和碳酸盐型盐湖南湖的土壤样品,通过平板稀释涂布法分离极端嗜盐菌,经过形态学观察、特征分析获取代表菌株,通过耐盐性测定和16S rRNA基因序列测序等对代表菌株进行鉴定,并对极端嗜盐菌的蛋白酶、淀粉酶、纤维素酶和酯酶活性进行筛选,同时检测苯酚降解能力。【结果】本研究共获得1 679株极端嗜盐菌,代表菌株45株,隶属于5门14个属,古菌数量(70.58%)明显多于细菌,最优盐浓度生长范围为18.4%–20.0%。在属水平上,盐湖中优势类群为古菌的Haloterrigena属(32.94%)和Natrialba属(26.03%),以及细菌的Aquisalimonas属(9.85%)和Aliifodinibius属(8.10%)。两盐湖中,盐度较低的南湖物种丰富度高于七角井盐湖,古菌物种组成相似,均以Haloterrigena属为主;细菌群落组成有差异,南湖以Aquisalimonas属为主,而七角井以Aliifodinibius属为主。功能筛选表明,盐湖中80%的嗜盐... 相似文献
54.
正常情况下,染色质和染色体在细胞内呈高度致密状态,在光镜和透射电镜下常呈浓染的斑块状。由于方法学上的困难,至今对染色质乃至染色体的微细结构,仍缺乏清楚的了解。特别是关于染色质如何凝缩形成染色体方面,现仍存在有争论。扫描电镜的冷冻割断技术,曾被用于对游离细胞间期核染色质的观察,并取得了较好的 相似文献
55.
采用差示扫描量热仪(DSC)研究羟脯氨酸(Hyp)含量对胶原热稳定性的影响。以不同周龄BN大鼠皮肤为原料制备了胶原,分析制备胶原中Hyp的含量;采用DSC测定不同Hyp含量胶原的临界变性温度及焓变;采用圆二色光谱(CD)检测提取胶原的二级结构。结果表明,提取胶原在41.3℃发生三螺旋解聚,CD光谱分析结果表明,当样品经临界变性温度处理后,部分三螺旋结构转化为无规则线圈结构。胶原变性过程中所需热量与羟脯氨酸含量呈正相关,实验建立了胶原热变性过程中焓变与Hyp含量的关系。该研究表明胶原中脯氨酸羟基化修饰是影响胶原热稳定性的关键因素。 相似文献
56.
免疫毒素Luffin B-Ng76对人黑色素瘤细胞的体外抑制作用 总被引:7,自引:0,他引:7
用BlueSepharoseCL-6B凝胶亲和层析法从丝瓜籽中分离纯化了单链致核糖体失活蛋白(ribosomeinac-tivatingprotein,RIP)——lufinB。并将lufinB与抗人黑色素瘤细胞单抗Ng76制成了免疫毒素,命名为lufinB-Ng76,它对体外培养的黑色素瘤细胞M21有很强的抑制作用,IC50为2.5×10-11mol/L,毒性比游离的lufinB提高4000倍,而它对非靶的HeLa细胞的毒性较M21细胞低1200倍。结果提示lufinB用于制备免疫毒素具有良好的应用前景。 相似文献
57.
Zhang Z Li X Lv W Yang Y Gao H Yang J Shen Y Ning G 《Molecular endocrinology (Baltimore, Md.)》2008,22(1):186-195
Ginsenoside Re (Re), a compound derived from Panax ginseng, shows an antidiabetic effect. However, the molecular basis of its action remains unknown. We investigated insulin signaling and the antiinflammatory effect by Re in 3T3-L1 adipocytes and in high-fat diet (HFD) rats to dissect its anti-hyperglycemic mechanism. Glucose uptake was measured in 3T3-L1 cells and glucose infusion rate determined by clamp in HFD rats. The insulin signaling cascade, including insulin receptor (IR) beta-subunit, IR substrate-1, phosphatidylinositol 3-kinase, Akt and Akt substrate of 160 kDa, and glucose transporter-4 translocation are examined. Furthermore, c-Jun NH(2)-terminal kinase (JNK), MAPK, and nuclear factor (NF)-kappaB signaling cascades were also assessed. The results show Re increases glucose uptake in 3T3-L1 cells and glucose infusion rate in HFD rats. The activation of insulin signaling by Re is initiated at IR substrate-1 and further passes on through phosphatidylinositol 3-kinase and downstream signaling cascades. Moreover, Re demonstrates an impressive suppression of JNK and NF-kappaB activation and inhibitor of NF-kappaBalpha degradation. In conclusion, Re reduces insulin resistance in 3T3-L1 adipocytes and HFD rats through inhibition of JNK and NF-kappaB activation. 相似文献
58.
59.
Jong A Wu CH Prasadarao NV Kwon-Chung KJ Chang YC Ouyang Y Shackleford GM Huang SH 《Cellular microbiology》2008,10(9):1854-1865
Pathogenic fungus Cryptococcus neoformans has a predilection for the central nervous system causing devastating meningoencephalitis. Traversal of C. neoformans across the blood–brain barrier (BBB) is a crucial step in the pathogenesis of C. neoformans . Our previous studies have shown that the CPS1 gene is required for C. neoformans adherence to the surface protein CD44 of human brain microvascular endothelial cells (HBMEC), which constitute the BBB. In this report, we demonstrated that C. neoformans invasion of HBMEC was blocked in the presence of G109203X, a protein kinase C (PKC) inhibitor, and by overexpression of a dominant-negative form of PKCα in HBMEC. During C. neoformans infection, phosphorylation of PKCα was induced and the PKC enzymatic activity was detected in the HBMEC membrane fraction. Our results suggested that the PKCα isoform might play a crucial role during C. neoformans invasion. Immunofluorescence microscopic images showed that induced phospho-PKCα colocalized with β-actin on the membrane of HBMEC. In addition, cytochalasin D (an F-filament-disrupting agent) inhibited fungus invasion into HBMEC in a dose-dependent manner. Furthermore, blockage of PKCα function attenuated actin filament activity during C. neoformans invasion. These results suggest a significant role of PKCα and downstream actin filament activity during the fungal invasion into HBMEC. 相似文献
60.
Based on the survey of community plots, a quantitative analysis of endangered Acanthopanax senti-cosus communities in Dongling Mountain was performed with two way indicator species analysis (TWINSPAN), detrended correspondence analysis (DCA) and canonical correspondence analysis (CCA). The communities of A. senticosus were classified into 9 types by TWINSPAN and the results were validated by DCA. On the DCA graph, the first axis reflected the gradient of altitude and the second axis reflected the aspect and slope. Most of A. senticosus were distributed in the thick forests at a high altitude with little light. With the exception of being a dominant species of shrub layers in a few communities, A. senticosus has a relatively scarce distribution. In accordance with DCA, the results of CCA also show the trend that the distribution of A. senticosus communities varied along with the gradient change of environmental factors. Altitude and light are the main factors affecting A. senticosus growth. 相似文献