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1.
Drug delivery to the brain for the treatment of pathologies with a CNS component is a significant clinical challenge. P‐glycoprotein (PgP), a drug efflux pump in the endothelial cell membrane, is a major factor in preventing therapeutics from crossing the blood‐brain barrier (BBB). Identifying PgP regulatory mechanisms is key to developing agents to modulate PgP activity. Previously, we found that PgP trafficking was altered concomitant with increased PgP activity and disassembly of high molecular weight PgP‐containing complexes during acute peripheral inflammatory pain. These data suggest that PgP activity is post‐translationally regulated at the BBB. The goal of the current study was to identify proteins that co‐localize with PgP in rat brain microvessel endothelial cell membrane microdomains and use the data to suggest potential regulatory mechanisms. Using new density gradients of microvessel homogenates, we identified two unique pools (1,2) of PgP in membrane fractions. Caveolar constituents, caveolin1, cavin1, and cavin2, co‐localized with PgP in these fractions indicating the two pools contained caveolae. A chaperone (Hsc71), protein disulfide isomerase and endosomal/lysosomal sorting proteins (Rab5, Rab11a) also co‐fractionated with PgP in the gradients. These data suggest signaling pathways with a potential role in post‐translational regulation of PgP activity at the BBB.

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A novel cloning vector that can be used to identify recombinant Escherichia coli colonies by activation of the green fluorescent protein gene (GFP) was constructed. Screening using the vector does not require special reagents. The recombinant plasmid activates GFP, and the rate of false-positive results is low.  相似文献   
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Signal peptides are short peptides located at the N-terminus of secreted proteins. They characteristically have three domains; a basic region at the N-terminus (n-region), a central hydrophobic core (h-region) and a carboxy-terminal cleavage region (c-region). Although hundreds of different signal peptides have been identified, it has not been completely understood how their features enable signal peptides to influence protein expression. Antibody-derived signal peptides are often used to prepare recombinant antibodies expressed by eukaryotic cells, especially Chinese hamster ovary (CHO) cells. However, when prokaryotic Escherichia coli (E. coli) are utilized in drug discovery processes, such as for phage display selection or antibody humanization, signal peptides have been selected separately due to the differences in the expression systems between the species. In this study, we successfully established a signal peptide that enables a functional antibody to be expressed in both prokaryotic and eukaryotic cells by focusing on the importance of having an Ala residue in the c-region of the signal sequence. We found that changing Ser to Ala at only two positions significantly augmented the anti-HER2 antigen binding fragment (Fab) expression in E. coli. In addition, this altered signal peptide also retained the ability to express functional anti-HER2 antibody in CHO cells. Taken together, the present findings indicate that the signal peptide can promote functional antibody expression in both prokaryotic E. coli and eukaryotic CHO cells. This finding will contribute to the understanding of signal peptides and accelerate therapeutic antibody research.  相似文献   
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We have analyzed the cell wall of the radio-resistant bacterium Deinococcus radiodurans. Unexpectedly, the bacterial envelope appears to be organized in different complexes of high molecular weight. Each complex is composed of several proteins, most of which are coded by genes of unknown function and the majority are constituents of the inner/outer membrane system. One of the most abundant complexes is constituted by the gene DR_0774. This protein is a type of secretin which is a known subunit of the homo-oligomeric channel that represents the main bulk of the type IV piliation family. Finally, a minor component of the pink envelope consists of several inner-membrane proteins. The implications of these findings are discussed.  相似文献   
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Novel synthetic mimics of antimicrobial peptides have been developed to exhibit structural properties and antimicrobial activity similar to those of natural antimicrobial peptides (AMPs) of the innate immune system. These molecules have a number of potential advantages over conventional antibiotics, including reduced bacterial resistance, cost-effective preparation, and customizable designs. In this study, we investigate a family of nylon-3 polymer-based antimicrobials. By combining vesicle dye leakage, bacterial permeation, and bactericidal assays with small-angle X-ray scattering (SAXS), we find that these polymers are capable of two interdependent mechanisms of action: permeation of bacterial membranes and binding to intracellular targets such as DNA, with the latter necessarily dependent on the former. We systemically examine polymer-induced membrane deformation modes across a range of lipid compositions that mimic both bacteria and mammalian cell membranes. The results show that the polymers' ability to generate negative Gaussian curvature (NGC), a topological requirement for membrane permeation and cellular entry, in model Escherichia coli membranes correlates with their ability to permeate membranes without complete membrane disruption and kill E. coli cells. Our findings suggest that these polymers operate with a concentration-dependent mechanism of action: at low concentrations permeation and DNA binding occur without membrane disruption, while at high concentrations complete disruption of the membrane occurs. This article is part of a Special Issue entitled: Interfacially Active Peptides and Proteins. Guest Editors: William C. Wimley and Kalina Hristova.  相似文献   
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肝癌是全世界最常见的恶性肿瘤之一,而经导管肝动脉化疗栓塞(TACE)是治疗不能手术的中晚期肝癌的标准手段。从给 药方式上而言,相对于静脉系统化疗及单纯的肝动脉灌注,肝动脉化疗栓塞术,尤其是进行明胶海绵补充栓塞,可明显改善物代 谢动力学参数,既减少外周药物浓度和非靶器官毒性,又能增加局部药物浓度从而增强药物的治疗效果。从剂型上而言,阿霉素 碘化油乳剂能明显降低血药峰值浓度,并能选择性分布于肝脏肿瘤内,达到靶向治疗肝癌的目的。加用明胶海绵补充栓塞,上述 作用会更加明显。肝动脉化疗药微囊栓塞也能取得较明显的物代谢动力学优势,缓释、增加局部浓度、延长作用时间和减轻药物 不良反应。无论外周血药峰值浓度(Cmax)还是曲线下面积(AUC),载药洗脱微球(DEB)栓塞均显著低于阿霉素碘化油乳剂栓塞, 从而取得比传统的化疗栓塞更好的肝癌治疗效果。对不同给药方式及载药剂型的物代谢动力学研究,将对不断提高TACE的疗 效和安全性有重要意义。  相似文献   
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目的:探讨P物质(substance P,SP)在子宫内膜异位症(endometriosis,EM)中的表达及其意义。方法:采用免疫组织化学法检测2012年10月至2013年4月在哈尔滨医科大学附属第一医院经腹腔镜及病理证实的EM患者异位子宫内膜组织20例,与其配对的在位子宫内膜组织10例以及因非EM(子宫肌瘤)行腹腔镜下子宫全切术或肌瘤核除患者的正常子宫内膜组织20例中SP的表达情况,并分析和比较术中盆腔粘连发生情况。结果:SP在EM患者的异位子宫内膜、在位子宫内膜及非EM患者的正常子宫内膜的阳性表达率分别为75%、80%、20%,异位子宫内膜和在位子宫内膜比较无显著性差别(P=1.0),但均高于非EM患者的正常子宫内膜,差异均有统计学意义(P=0.002,P=0.004);EM组盆腔粘连的阳性率高于非EM组,EM患者异位子宫内膜中SP阳性组盆腔粘连阳性率高于SP阴性组,差异均有统计学意义(P=0.001,P=0.032),非EM患者正常子宫内膜中SP阳性组盆腔粘连阳性率与SP阴性组相比,差异不具有统计学意义(P=0.061)。结论:SP在EM的异位子宫内膜和在位子宫内膜中的表达上调,并与EM合并盆腔粘连有关,其具体机制尚有待进一步的研究。  相似文献   
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