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81.
Regulators face the problem of ensuring that wetland functions that are lost due to permitting actions are restored via mitigation of those impacts. While there has been considerable study of wetland function, little of it has been directed toward the practical assessment of mitigation success. Development of quantitatively based rapid assessment methods would provide valuable assistance to the regulatory community. Regional and local goal setting, including a determination of whether strict in-kind restoration or restoration of habitat balance is preferable, is needed to ensure that the ecological health of the area is restored to the greatest extent possible. 相似文献
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83.
《Molecular & cellular proteomics : MCP》2020,19(6):1005-1016
Highlights
- •Brain membrane protein extraction.
- •Protein prenylation.
- •Prenyl peptide capture and characterization by LC-MS/MS.
- •HCD and EThcD peptide fragmentation.
84.
85.
Sealed, inside-out human red cell membrane vesicles, prepared by a modified method of Steck (Steck T.L. (1974) in Methods in Membrane Biology (Korn, E.D., ed.), Vol 2, pp. 245–281, Plenum Press, New York), accomplish an ATP and Mg2+-dependent uphill calcium uptake with a reproducible maximum rate of 12–15 nmol/mg vesicle protein per min under physiological conditions. This maximum rate is increased by about 60–70% in the presence of a heatstable cytoplasmic activator protein (calmodulin) obtained from red cells. Calcium efflux from inside-out vesicles is smaller than 0.01 nmol/mg vesicle protein per min at intravesicular calcium concentrations between 0.1 and 20.0 mM.In the presence of Mg2+, active calcium uptake is supported by ATP, ITP, or UTP, but not by ADP, AMP, or p-nitrophenyl phosphate. The optimum pH for the process is 7.4–7.6, and the activation energy is 19–20 kcal/mol, irrespective of the presence or absence of calmodulin. Calcium uptake in inside-out vesicles is unaffected by ouabain or oligomycin, but blocked by low concentrations of lanthanum, ruthenium red, quercetin and phloretin. K+ and Na+, when compared to choline+ or Li+, significantly increase active calcium uptake. This stimulation by K+ and Na+ is independent of that by calmodulin.Concentrated red cell cytoplasm activates calcium uptake at low soluble protein:membrane protein ratios, while a ‘deactivation’ of the transport occurs at high cytoplasm: membrane protein ratios. A heat-labile cytoplasmic protein fraction antagonizing calmodulin activation, can be separated by DEAE-Sephadex chromatography. Based on these findings the regulation of active calcium transport in human red cells is discussed. 相似文献
86.
摘要 目的:本研究通过对JNK信号通路的调控来探讨齐墩果酸( oleanolic acid,OA) 对食管癌细胞凋亡的影响。方法:对食管癌细胞EC109进行培养,以MTT法分析不同浓度齐墩果酸对食管癌细胞EC109的生长抑制作用,采用流式细胞术考察齐墩果酸对EC109细胞凋亡的影响,以Western blot实验检测JNK通路蛋白的表达情况。结果:不同浓度齐墩果酸作用Eca109细胞48 h后,均有显著的抑制作用(P<0.05),且随着齐墩果酸浓度的增加,对Eca109的抑制作用逐渐增强。与对照组相比,各浓度OA组的Eca109细胞的凋亡率分别为8.03±0.34 %,12.82±0.28 %,19.34±0.79 %和32.21±0.81 %,均显著增加(P<0.05),且随着OA浓度的增加,细胞凋亡率显著升高。与对照组相比,不同浓度OA组的P-JNK、Bak、Bax表达量均显著升高(P<0.05),Bcl-2表达量显著降低(P<0.05),JNK表达量无显著差异(P>0.05),对OA组(1.2 mmol/L)相比,OA组(2.4 mmol/L) Bak、Bax表达量均显著升高(P<0.05),Bcl-2表达量显著降低(P<0.05),P-JNK、JNK表达量无显著差异(P>0.05)。结论:齐墩果酸能通过对JNK信号通路的调控促进食管癌细胞的凋亡,且随着浓度的增强,细胞凋亡率显著升高。 相似文献
87.
中国是全球生物多样性最丰富的国家之一。最近40年, 中国的植物多样性保护取得了巨大成就, 实施了多项政策和法律, 尤其是《野生植物保护条例》和《国家重点保护野生植物名录》先后颁布, 奠定了中国植物保护的法律和政策框架, 就地保护和迁地保护网络基本形成。但与生态文明建设的要求相比, 野生植物保护依然存在许多不足。本文系统回顾了中国野生植物保护管理的政策和法律制度, 从就地保护、迁地保护、开发利用活动管理三方面分析了其优缺点并提出建议; 重点对修订《野生植物保护条例》进行讨论并提出建议, 包括修订野生植物和人工培植的定义、优化对开发利用活动的管理程序、加强国际法和国内法的衔接、细化优化罚则等。 相似文献
88.
89.
《Critical reviews in biochemistry and molecular biology》2013,48(6):609-619
AbstractCancer cells reprogram metabolism to maintain rapid proliferation under often stressful conditions. Glycolysis and glutaminolysis are two central pathways that fuel cancer metabolism. Allosteric regulation and metabolite driven post-translational modifications of key metabolic enzymes allow cancer cells glycolysis and glutaminolysis to respond to changes in nutrient availability and the tumor microenvironment. While increased aerobic glycolysis (the Warburg effect) has been a noted part of cancer metabolism for over 80 years, recent work has shown that the elevated levels of glycolytic intermediates are critical to cancer growth and metabolism due to their ability to feed into the anabolic pathways branching off glycolysis such as the pentose phosphate pathway and serine biosynthesis pathway. The key glycolytic enzymes phosphofructokinase-1 (PFK1), pyruvate kinase (PKM2) and phosphoglycerate mutase 1 (PGAM1) are regulated by upstream and downstream metabolites to balance glycolytic flux with flux through anabolic pathways. Glutamine regulation is tightly controlled by metabolic intermediates that allosterically inhibit and activate glutamate dehydrogenase, which fuels the tricarboxylic acid cycle by converting glutamine derived glutamate to α-ketoglutarate. The elucidation of these key allosteric regulatory hubs in cancer metabolism will be essential for understanding and predicting how cancer cells will respond to drugs that target metabolism. Additionally, identification of the structures involved in allosteric regulation will inform the design of anti-metabolism drugs which bypass the off-target effects of substrate mimics. Hence, this review aims to provide an overview of allosteric control of glycolysis and glutaminolysis. 相似文献
90.
《Journal of enzyme inhibition and medicinal chemistry》2013,28(3):229-236
AbstractWe studied the enzymic status of the tumour cell surface protease, guanidinobenzoatase (GB) in frozen sections of a human colonic tumour grown in nude mice and also in human colons. Active enzyme was demonstrated by the binding of a synthetic fluorescent probe for the active centre of guanidinobenzoatase (GB). It was observed that tissue derived inhibitors of GB blocked the binding of this fluorescent probe and that enzyme inhibitor complex formation could be controlled by lowering the pH of the medium with lactic acid. The presence of an inhibitor of GB in the mouse tumour extract was taken advantage of by making two fluorescent derivatives of this inhibitor; both of which located GB on colonic tumour cells in frozen sections of human colon. 相似文献