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961.
S Fabijanski  M Pellegrini 《Gene》1982,18(3):267-276
A Drosophila genomic DNA library in the vector Charon 4 was screened using cDNA derived from the small (6S-12S) poly(A)+ mRNA of 2-6-h-old Drosophila embryos. This fraction of mRNA is enriched for ribosomal protein-coding sequences. The selected recombinants were hybridized to total mRNA under conditions which allowed for isolation of homologous mRNAs. The mRNA from these RNA/DNA hybrids was eluted and translated in vitro. The translation products were analyzed by one- and two-dimensional electrophoresis with authentic ribosomal proteins as standards. One cloned DNA segment was found to contain a ribosomal protein gene, and a sequence which hybridizes strongly to at least 5 other ribosomal protein mRNAs.  相似文献   
962.
NaCl胁迫对甘薯叶片叶绿体超微结构及一些酶活性的影响   总被引:4,自引:0,他引:4  
随NaCl 胁迫浓度的提高,甘薯叶片叶绿体数目逐渐减少, 类囊体膜片层松散、扭曲、破裂并逐渐解体, 叶绿素含量下降。与此同时,H2O2 、MDA 含量增加, ASP、SOD 活性表现出先上升后下降的趋势。耐盐品种在NaCl 胁迫下能维持较强的H2O2 清除能力和较低的MDA 水平  相似文献   
963.
硫化氢(hydrogen sulfide, H_2S)被认为是第三种气体信号分子,在许多生理及病理生理情况下发挥重要的调节作用。然而,在硫化氢对自噬的作用这一方面仍有一些争论。许多信号通路参与硫化氢的促自噬作用,例如AMPK/mTOR、LKB1/STRAD/MO25以及MiR-30c信号通路。同时,也有许多信号通路在硫化氢的抗自噬作用中发挥重要作用,例如SR-A、PI3K/SGK1/GSK3β、PI3K/AKT/mTOR、Nrf2-ROS-AMPK、AMPK/mTOR以及JNK1信号通路。在治疗人类疾病时,可以设计研发新型硫化氢相关药物,通过调节自噬增加疗效。本文主要讨论硫化氢在其介导的自噬信号通路中的作用。  相似文献   
964.
Five new germacrane sesquiterpene lactones, petrophins A–E (15), were isolated from the whole herbs of Salvia petrophila. The structures were established using spectroscopic analysis (1D and 2D NMR, HR-ESI-MS) and compatible with values in the literature. These sesquiterpenes are unusual with an endocyclic double bond in the γ-lactone ring. All the isolated compounds were evaluated for their inhibitory effects on the LPS-induced nitric oxide production using murine macro-phage RAW264.7 cells.  相似文献   
965.
966.
In the last 25 years, the mining sector has become an important field of investigation and controversy for anthropologists. As an object, the ‘mine’ itself poses specific problems that make it particularly fertile ground for the exploration of inextricably linked theoretical, methodological, ethical, and political issues. In this paper, I explore the issue of the positionality of anthropologists within the mining arena. The analysis of positionality is taken beyond an individual perspective focusing on ethics, engagement and responsibility, to additionally include discussions of networking, alliance-building and institutionalising processes. I shall begin by dealing with the problems posed by the anthropology of mining and the various perspectives that respond to it. In the second section, I narrow the focus to the case of New Caledonia. In the third section, I present the context and challenges associated with the discussed cases. I portray the cases in question and, in particular, the new arena represented by the National Centre for Technological Research (CNRT) ‘Nickel and its Environment’, an agency established in 2008 to fund research on nickel in New Caledonia. The analysis in terms of a ‘hybrid’ forum of this arena will be complemented by the consideration of the social demand for the anthropology of mining. In the concluding section, the paper outlines options for further research while stressing the need for a balanced, ‘symmetrical’ approach of the multiple actors’ agendas constitutive of the mining arena.  相似文献   
967.
Decoding health and disease phenotypes is one of the fundamental objectives in biomedicine. Whereas high-throughput omics approaches are available, it is evident that any single omics approach might not be adequate to capture the complexity of phenotypes. Therefore, integrated multi-omics approaches have been used to unravel genotype–phenotype relationships such as global regulatory mechanisms and complex metabolic networks in different eukaryotic organisms. Some of the progress and challenges associated with integrated omics studies have been reviewed previously in comprehensive studies. In this work, we highlight and review the progress, challenges and advantages associated with emerging approaches, integrating gene expression and protein-protein interaction networks to unravel network-based functional features. This includes identifying disease related genes, gene prioritization, clustering protein interactions, developing the modules, extract active subnetworks and static protein complexes or dynamic/temporal protein complexes. We also discuss how these approaches contribute to our understanding of the biology of complex traits and diseases. This article is part of a Special Issue entitled: Cardiac adaptations to obesity, diabetes and insulin resistance, edited by Professors Jan F.C. Glatz, Jason R.B. Dyck and Christine Des Rosiers.  相似文献   
968.
Marine algae are one of the most important sources of high-value compounds such as polar lipids, omega-3 fatty acids, photosynthetic pigments, or secondary metabolites with interesting features for different niche markets. Acetabularia acetabulum is a macroscopic green single-celled alga, with a single nucleus hosted in the rhizoid. This alga is one of the most studied dasycladalean species and represents an important model system in cell biology studies. However, its lipidome and pigment profile have been overlooked. Total lipid extracts were analyzed using hydrophilic interaction liquid chromatography-high resolution mass spectrometry (HILIC-HRMS), tandem mass spectrometry (MS/MS), and high-performance liquid chromatography (HPLC). The antioxidant capacity of lipid extracts was tested using DPPH and ABTS assays. Lipidomics identified 16 polar lipid classes, corresponding to glycolipids, betaine lipids, phospholipids, and sphingolipids, with a total of 191 lipid species, some of them recognized by their bioactivities. The most abundant polar lipids were glycolipids. Lipid classes less studied in algae were identified, such as diacylglyceryl-carboxyhydroxymethylcholine (DGCC) or hexosylceramide (HexCer). The pigment profile of A. acetabulum comprised carotenoids (17.19%), namely cis-neoxanthin, violaxanthin, lutein and β,β-carotene, and chlorophylls a and b (82.81%). A. acetabulum lipid extracts showed high antioxidant activity promoting a 50% inhibition (IC50) with concentrations of 57.91 ± 1.20 μg · mL−1 (438.18 ± 8.95 μmol Trolox · g−1 lipid) in DPPH and 20.55 ± 0.60 μg · mL−1 in ABTS assays (918.56 ± 27.55 μmol Trolox · g−1 lipid). This study demonstrates the potential of A. acetabulum as a source of natural bioactive molecules and antioxidant compounds.  相似文献   
969.
Purified chloroplasts from leaves of Spinacia oleracea L. (spinach) incorporated glycerol 3-phosphate into diacylglycerol, monoacylglycerol, phosphatidylglycerol, phosphatidic acid, and lysophosphatidic acid. The omission of ATP or CTP, CoA or illumination decreased the incorporation markedly. The fraction of incorporated glycerol 3-phosphate found in phosphatidylglycerol was greatly reduced by the omission of bicarbonate, acetate, and ATP, or in darkness, low-osmolarity medium, or high magnesium ion concentration (10 mM). Incorporation of glycerol 3-phosphate into lipid and specifically into phosphatidylglycerol was optimal at a Mg2+CTP ratio of 1, whereas the optimal ratio for Mg2+ATP was closer to 2. The Mg2+CTP gave lower total incorporation but a higher fraction of incorporation in phosphatidylglycerol. Triton X-100 inhibited incorporation of glycerol 3-phosphate into lipid, especially into phosphatidylglycerol.  相似文献   
970.
This discussion, prepared for the Protein Society's symposium honoring the 100th anniversary of Kaj Linderstrøm-Lang, shows how hydrogen exchange approaches initially conceived and implemented by Lang and his colleagues some 50 years ago are contributing to current progress in structural biology. Examples are chosen from the active protein folding field. Hydrogen exchange methods now make it possible to define the structure of protein folding intermediates in various contexts: as tenuous molten globule forms at equilibrium under destabilizing conditions, in kinetic intermediates that exist for less than one second, and as infinitesimally populated excited state forms under native conditions. More generally, similar methods now find broad application in studies of protein structure, energetics, and interactions. This article considers the rise of these capabilities from their inception at the Carlsberg Labs to their contemporary role as a significant tool of modern structural biology.  相似文献   
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