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Book
Plant Proteomic Research 2.0
Author:
ISBN: 3039210637 3039210629 Year: 2019 Publisher: MDPI - Multidisciplinary Digital Publishing Institute

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Abstract

Advancements in high-throughput “Omics” techniques have revolutionized plant molecular biology research. Proteomics offers one of the best options for the functional analysis of translated regions of the genome, generating a wealth of detailed information regarding the intrinsic mechanisms of plant stress responses. Various proteomic approaches are being exploited extensively for elucidating master regulator proteins which play key roles in stress perception and signaling, and these approaches largely involve gel-based and gel-free techniques, including both label-based and label-free protein quantification. Furthermore, post-translational modifications, subcellular localization, and protein–protein interactions provide deeper insight into protein molecular function. Their diverse applications contribute to the revelation of new insights into plant molecular responses to various biotic and abiotic stressors.

Keywords

14-3-3 proteins --- n/a --- targeted two-dimensional electrophoresis --- somatic embryogenesis --- nitrogen metabolism --- subtilase --- Sporisorium scitamineum --- non-orthodox seed --- antioxidant activity --- sweet potato plants infected by SPFMV --- photosynthesis --- B. acuminata petals --- chlorophyll deficiency --- seed proteomics --- imbibition --- pollination --- Sarpo Mira --- qRT-PCR --- holm oak --- tuber phosphoproteome --- isobaric tags for relative and absolute quantitation (iTRAQ) --- Quercus ilex --- nucleotide pyrophosphatase/phosphodiesterase --- lettuce --- ?-subunit --- protein phosphatase --- germination --- drought stress --- pyruvate biosynthesis --- weakening of carbon metabolism --- differential proteins --- heterotrimeric G protein --- organ --- LC-MS-based proteomics --- potato proteomics --- smut --- gel-free/label-free proteomics --- ? subunit --- shotgun proteomics --- 2D --- chloroplast --- proteome functional annotation --- Phalaenopsis --- Clematis terniflora DC. --- wheat --- Dn1-1 --- carbon metabolism --- physiological responses --- Zea mays --- phenylpropanoid biosynthesis --- ISR --- mass spectrometric analysis --- patatin --- leaf --- pea (Pisum sativum L.) --- maize --- ergosterol --- Camellia sinensis --- seed storage proteins --- silver nanoparticles --- elevated CO2 --- metacaspase --- SPV2 and SPVG --- SnRK1 --- MALDI-TOF/TOF --- (phospho)-proteomics --- leaf spot --- rice isogenic line --- wheat leaf rust --- pathway analysis --- phosphoproteome --- sugarcane --- senescence --- Oryza sativa L. --- Arabidopsis thaliana --- heat stress --- gene ontology --- innate immunity --- Pseudomonas syringae --- bolting --- chlorophylls --- shoot --- Simmondsia chinensis --- RT-qPCR --- stresses responses --- Solanum tuberosum --- seeds --- GC-TOF-MS --- sucrose --- proteome --- Puccinia recondita --- cultivar --- Zea mays L. --- secondary metabolism --- ROS --- Ricinus communis L. --- after-ripening --- cadmium --- Stagonospora nodorum --- virus induced gene silencing --- quantitative proteomics --- sweet potato plants non-infected by SPFMV --- affinity chromatography --- population variability --- GS3 --- fungal perception --- ammonium --- transcriptome profiling --- mass spectrometry analysis --- papain-like cysteine protease (PLCP) --- cold stress --- nitrate --- late blight disease --- early and late disease stages --- seed imbibition --- lesion mimic mutant --- protease --- proteome map --- seed dormancy --- petal --- 2-DE proteomics --- 2D DIGE --- root --- Phytophthora infestans --- differentially abundant proteins (DAPs) --- polyphenol oxidase --- degradome --- flavonoid --- 14-3-3 --- caspase-like --- proteomics --- RGG4 --- co-infection --- plasma membrane --- chlorotic mutation --- Medicago sativa --- RGG3 --- glycolysis --- barley --- 2-DE --- protein phosphorylation --- western blotting --- N utilization efficiency --- rice --- plant pathogenesis responses --- high temperature --- data-independent acquisition --- pattern recognition receptors --- vegetative storage proteins --- leaf cell wall proteome --- plant-derived smoke --- iTRAQ --- starch --- proteome profiling --- Morus

G protein pathways : part C : effector mechanisms
Authors: ---
ISBN: 1281011223 9786611011222 0080496938 012182246X Year: 2002 Publisher: New York, NY ; London : Academic Press,

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Abstract

This third volume in the trio covering G proteins, features integrated approaches to studying G proteins. Methods pertaining to signaling mechanisms are presented, including theoretical and modeling approaches, biochemistry and molecular biology, and cell biology and physiology. The techniques for studying the structure and function of G proteins are important not only to those with specific research interests in them, but also endocrinologists and pharmacologists conducting research on signaling mechanisms that are increasingly understood to interact with G proteins.

Keywords

Cell adhesion molecules. --- Cell receptors. --- G proteins. --- Membrane Glycoproteins --- Biochemical Processes --- Membrane Transport Proteins --- Enzymes and Coenzymes --- Cell Physiological Processes --- Carrier Proteins --- GTP Phosphohydrolases --- Intracellular Signaling Peptides and Proteins --- Membrane Proteins --- Cell Physiological Phenomena --- Proteins --- Biochemical Phenomena --- Chemicals and Drugs --- Peptides --- Chemical Processes --- Acid Anhydride Hydrolases --- Amino Acids, Peptides, and Proteins --- Chemical Phenomena --- Phenomena and Processes --- Hydrolases --- GTP-Binding Proteins --- Heterotrimeric GTP-Binding Proteins --- Ion Channels --- Enzymes --- Signal Transduction --- Human Anatomy & Physiology --- Health & Biological Sciences --- Animal Biochemistry --- Receptor Mediated Signal Transduction --- Signal Transduction Pathways --- Signal Transduction Systems --- Receptor-Mediated Signal Transduction --- Signal Pathways --- Pathway, Signal --- Pathway, Signal Transduction --- Pathways, Signal --- Pathways, Signal Transduction --- Receptor-Mediated Signal Transductions --- Signal Pathway --- Signal Transduction Pathway --- Signal Transduction System --- Signal Transduction, Receptor-Mediated --- Signal Transductions --- Signal Transductions, Receptor-Mediated --- System, Signal Transduction --- Systems, Signal Transduction --- Transduction, Signal --- Transductions, Signal --- Biocatalysts --- Ion Channel --- Ionic Channel --- Ionic Channels --- Membrane Channel --- Membrane Channels --- Channel, Ion --- Channel, Ionic --- Channel, Membrane --- Channels, Ion --- Channels, Ionic --- Channels, Membrane --- Heterotrimeric G-Proteins --- G-Proteins, Heterotrimeric --- GTP-Binding Proteins, Heterotrimeric --- Heterotrimeric G Proteins --- Heterotrimeric GTP Binding Proteins --- G-Protein --- GTP-Binding Protein --- GTP-Regulatory Protein --- Guanine Nucleotide Coupling Protein --- G-Proteins --- GTP-Regulatory Proteins --- Guanine Nucleotide Regulatory Proteins --- G Protein --- G Proteins --- GTP Binding Protein --- GTP Binding Proteins --- GTP Regulatory Protein --- GTP Regulatory Proteins --- Protein, GTP-Binding --- Protein, GTP-Regulatory --- Proteins, GTP-Binding --- Proteins, GTP-Regulatory --- Chemical Phenomenon --- Chemical Process --- Physical Chemistry Phenomena --- Physical Chemistry Process --- Physicochemical Phenomenon --- Physicochemical Process --- Chemical Concepts --- Physical Chemistry Concepts --- Physical Chemistry Processes --- Physicochemical Concepts --- Physicochemical Phenomena --- Physicochemical Processes --- Chemical Concept --- Chemistry Process, Physical --- Chemistry Processes, Physical --- Concept, Chemical --- Concept, Physical Chemistry --- Concept, Physicochemical --- Concepts, Chemical --- Concepts, Physical Chemistry --- Concepts, Physicochemical --- Phenomena, Chemical --- Phenomena, Physical Chemistry --- Phenomena, Physicochemical --- Phenomenon, Chemical --- Phenomenon, Physicochemical --- Physical Chemistry Concept --- Physicochemical Concept --- Process, Chemical --- Process, Physical Chemistry --- Process, Physicochemical --- Processes, Chemical --- Processes, Physical Chemistry --- Processes, Physicochemical --- Polypeptides --- Biochemical Concepts --- Biochemical Phenomenon --- Biochemical Process --- Phenomena, Biochemical --- Biochemical Concept --- Concept, Biochemical --- Concepts, Biochemical --- Phenomenon, Biochemical --- Process, Biochemical --- Processes, Biochemical --- Gene Products, Protein --- Gene Proteins --- Protein Gene Products --- Proteins, Gene --- Cell Physiological Phenomenon --- Cell Physiological Process --- Physiology, Cell --- Cell Physiology --- Phenomena, Cell Physiological --- Phenomenon, Cell Physiological --- Physiological Process, Cell --- Physiological Processes, Cell --- Process, Cell Physiological --- Processes, Cell Physiological --- Cells --- Integral Membrane Protein --- Membrane Protein --- Membrane-Associated Proteins --- Cell Membrane Proteins --- Cell Surface Proteins --- Integral Membrane Proteins --- Surface Proteins --- Membrane Associated Proteins --- Membrane Protein, Integral --- Membrane Proteins, Integral --- Protein, Integral Membrane --- Protein, Membrane --- Proteins, Cell Membrane --- Proteins, Cell Surface --- Proteins, Integral Membrane --- Proteins, Membrane --- Proteins, Membrane-Associated --- Proteins, Surface --- Intracellular Signaling Peptides --- Intracellular Signaling Proteins --- Peptides, Intracellular Signaling --- Proteins, Intracellular Signaling --- Signaling Peptides, Intracellular --- Signaling Proteins, Intracellular --- GTP Phosphohydrolase --- GTPase --- GTPases --- Guanosine Triphosphate Phosphohydrolases --- Guanosinetriphosphatases --- Phosphohydrolase, GTP --- Phosphohydrolases, GTP --- Phosphohydrolases, Guanosine Triphosphate --- Triphosphate Phosphohydrolases, Guanosine --- Binding Protein --- Binding Proteins --- Transport Proteins --- Protein, Binding --- Proteins, Binding --- Proteins, Carrier --- Proteins, Transport --- Coenzymes and Enzymes --- Cell Surface Glycoprotein --- Membrane Glycoprotein --- Surface Glycoprotein --- Cell Surface Glycoproteins --- Surface Glycoproteins --- Glycoprotein, Cell Surface --- Glycoprotein, Membrane --- Glycoprotein, Surface --- Glycoproteins, Cell Surface --- Glycoproteins, Membrane --- Glycoproteins, Surface --- Surface Glycoprotein, Cell --- Surface Glycoproteins, Cell --- Biological Pumps --- Metabolic Pumps --- Permeases --- Pump, Biologic --- Pump, Biological --- Pump, Metabolic --- Pumps, Biological --- Pumps, Metabolic --- Biological Pump --- Membrane Transporters --- Metabolic Pump --- Biologic Pump --- Transport Proteins, Membrane --- Transporters, Membrane --- physiology --- Anhydride Hydrolases, Acid --- Hydrolases, Acid Anhydride --- Cell Signaling --- Cell Communication --- Receptor-CD3 Complex, Antigen, T-Cell --- Receptor Cross-Talk --- Feedback, Physiological --- Gasotransmitters --- Molecular Mechanisms of Pharmacological Action --- Molecular Biology --- Cell Membrane --- Membranes --- Protein Binding --- Receptors, Transferrin --- Protein Translocation Systems --- Biological Transport --- Bacterial Secretion Systems --- Biocatalyst --- Enzyme --- Heterotrimeric G Protein --- G Protein, Heterotrimeric --- Protein, Heterotrimeric G --- Hydrolase --- Peptide --- Polypeptide --- Protein --- Cell Membrane Protein --- Cell Surface Protein --- Membrane-Associated Protein --- Surface Protein --- Membrane Associated Protein --- Membrane Protein, Cell --- Protein, Cell Membrane --- Protein, Cell Surface --- Protein, Membrane-Associated --- Protein, Surface --- Surface Protein, Cell --- Carrier Protein --- Transport Protein --- Protein, Carrier --- Protein, Transport --- Membrane Transport Protein --- Membrane Transporter --- Permease --- Protein, Membrane Transport --- Transport Protein, Membrane --- Transporter, Membrane --- Gtp-binding proteins --- Signal transduction

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