Artículos de revistas sobre el tema "Low-abundance proteome"
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Zhang, Hui. "The Plasma Proteome: High Abundance versus Low Abundance". Expert Review of Proteomics 3, n.º 2 (abril de 2006): 175–78. http://dx.doi.org/10.1586/14789450.3.2.175.
Texto completoTaoufiq, Zacharie, Momchil Ninov, Alejandro Villar-Briones, Han-Ying Wang, Toshio Sasaki, Michael C. Roy, Francois Beauchain et al. "Hidden proteome of synaptic vesicles in the mammalian brain". Proceedings of the National Academy of Sciences 117, n.º 52 (21 de diciembre de 2020): 33586–96. http://dx.doi.org/10.1073/pnas.2011870117.
Texto completoGerszten, Robert E., Frank Accurso, Gordon R. Bernard, Richard M. Caprioli, Eric W. Klee, George G. Klee, Iftikhar Kullo et al. "Challenges in translating plasma proteomics from bench to bedside: update from the NHLBI Clinical Proteomics Programs". American Journal of Physiology-Lung Cellular and Molecular Physiology 295, n.º 1 (julio de 2008): L16—L22. http://dx.doi.org/10.1152/ajplung.00044.2008.
Texto completoShkrigunov, Timur, Pavel Pogodin, Victor Zgoda, Olesya Larina, Yulia Kisrieva, Maria Klimenko, Oleg Latyshkevich, Peter Klimenko, Andrey Lisitsa y Natalia Petushkova. "Protocol for Increasing the Sensitivity of MS-Based Protein Detection in Human Chorionic Villi". Current Issues in Molecular Biology 44, n.º 5 (9 de mayo de 2022): 2069–88. http://dx.doi.org/10.3390/cimb44050140.
Texto completoTang, Xiaoyue, Juan Li, Wei-gang Zhao, Haidan Sun, Zhengguang Guo, Li Jing, Zhufang She et al. "Comprehensive map and functional annotation of the mouse white adipose tissue proteome". PeerJ 7 (25 de julio de 2019): e7352. http://dx.doi.org/10.7717/peerj.7352.
Texto completoBaumann, Sven, Uta Ceglarek, Georg Martin Fiedler, Jan Lembcke, Alexander Leichtle y Joachim Thiery. "Standardized Approach to Proteome Profiling of Human Serum Based on Magnetic Bead Separation and Matrix-Assisted Laser Desorption/Ionization Time-of-Flight Mass Spectrometry". Clinical Chemistry 51, n.º 6 (1 de junio de 2005): 973–80. http://dx.doi.org/10.1373/clinchem.2004.047308.
Texto completoFonslow, Bryan R., Paulo C. Carvalho, Katrina Academia, Steve Freeby, Tao Xu, Aleksey Nakorchevsky, Aran Paulus y John R. Yates. "Improvements in Proteomic Metrics of Low Abundance Proteins through Proteome Equalization Using ProteoMiner Prior to MudPIT". Journal of Proteome Research 10, n.º 8 (5 de agosto de 2011): 3690–700. http://dx.doi.org/10.1021/pr200304u.
Texto completoDuport, Catherine, Ludivine Rousset, Béatrice Alpha-Bazin y Jean Armengaud. "Bacillus cereus Decreases NHE and CLO Exotoxin Synthesis to Maintain Appropriate Proteome Dynamics During Growth at Low Temperature". Toxins 12, n.º 10 (6 de octubre de 2020): 645. http://dx.doi.org/10.3390/toxins12100645.
Texto completoDeng, Ning, Zhenye Li, Chao Pan y Huilong Duan. "freeQuant: A Mass Spectrometry Label-Free Quantification Software Tool for Complex Proteome Analysis". Scientific World Journal 2015 (2015): 1–11. http://dx.doi.org/10.1155/2015/137076.
Texto completoLy, Tony, Aki Endo, Alejandro Brenes, Marek Gierlinski, Vackar Afzal, Andrea Pawellek y Angus I. Lamond. "Proteome-wide analysis of protein abundance and turnover remodelling during oncogenic transformation of human breast epithelial cells". Wellcome Open Research 3 (2 de mayo de 2018): 51. http://dx.doi.org/10.12688/wellcomeopenres.14392.1.
Texto completoMillioni, Renato, Serena Tolin, Lucia Puricelli, Stefano Sbrignadello, Gian Paolo Fadini, Paolo Tessari y Giorgio Arrigoni. "High Abundance Proteins Depletion vs Low Abundance Proteins Enrichment: Comparison of Methods to Reduce the Plasma Proteome Complexity". PLoS ONE 6, n.º 5 (4 de mayo de 2011): e19603. http://dx.doi.org/10.1371/journal.pone.0019603.
Texto completoWilliams, Katherine E., George A. Lemieux, Maria E. Hassis, Adam B. Olshen, Susan J. Fisher y Zena Werb. "Quantitative proteomic analyses of mammary organoids reveals distinct signatures after exposure to environmental chemicals". Proceedings of the National Academy of Sciences 113, n.º 10 (22 de febrero de 2016): E1343—E1351. http://dx.doi.org/10.1073/pnas.1600645113.
Texto completoWeeks, Amy M., James R. Byrnes, Irene Lui y James A. Wells. "Mapping proteolytic neo-N termini at the surface of living cells". Proceedings of the National Academy of Sciences 118, n.º 8 (3 de febrero de 2021): e2018809118. http://dx.doi.org/10.1073/pnas.2018809118.
Texto completoRothwell, Stephen W., Ofer Eidelman, Catherine Jozwik, Gregory Mueller, Merrily Poth, Pamela L. Zeitlin, William Guggino, David M. Jacobowitz, Meera Srivastava y Harvey B. Pollard. "Signalling Pathways Have Different Expression Profiles in Human Platelets Isolated from Men and Women." Blood 108, n.º 11 (16 de noviembre de 2006): 1519. http://dx.doi.org/10.1182/blood.v108.11.1519.1519.
Texto completoZoidakis, Jérôme, Ploumisti Dimitraki, Panagiotis Zerefos y Antonia Vlahou. "Application of Preparative Electrophoresis for Clinical Proteomics in Urine: Is it Feasible?" Journal of Medical Biochemistry 28, n.º 4 (1 de octubre de 2009): 268–73. http://dx.doi.org/10.2478/v10011-009-0027-6.
Texto completoJung, Ju-Young, Cheol Woo Min, So Wun Kim, Ravi Gupta, Woojong Jang, Kyong-Hwan Bang, Yu-Jin Kim, Ick-Hyun Jo y Sun Tae Kim. "Proteomic Analysis of Ginseng (Panax ginseng C. A. Meyer) Fluid Proteins under Salt Stress". Agronomy 12, n.º 9 (28 de agosto de 2022): 2048. http://dx.doi.org/10.3390/agronomy12092048.
Texto completoGygi, Steven P., Beate Rist, Timothy J. Griffin, Jimmy Eng y Ruedi Aebersold. "Proteome Analysis of Low-Abundance Proteins Using Multidimensional Chromatography and Isotope-Coded Affinity Tags". Journal of Proteome Research 1, n.º 1 (febrero de 2002): 47–54. http://dx.doi.org/10.1021/pr015509n.
Texto completoSaand, Mumtaz Ali, Jing Li, Yi Wu, Lixia Zhou, Hongxing Cao y Yaodong Yang. "Integrative Omics Analysis of Three Oil Palm Varieties Reveals (Tanzania × Ekona) TE as a Cold-Resistant Variety in Response to Low-Temperature Stress". International Journal of Molecular Sciences 23, n.º 23 (29 de noviembre de 2022): 14926. http://dx.doi.org/10.3390/ijms232314926.
Texto completoMin, Cheol Woo, Joonho Park, Jin Woo Bae, Ganesh Kumar Agrawal, Randeep Rakwal, Youngsoo Kim, Pingfang Yang, Sun Tae Kim y Ravi Gupta. "In-Depth Investigation of Low-Abundance Proteins in Matured and Filling Stages Seeds of Glycine max Employing a Combination of Protamine Sulfate Precipitation and TMT-Based Quantitative Proteomic Analysis". Cells 9, n.º 6 (22 de junio de 2020): 1517. http://dx.doi.org/10.3390/cells9061517.
Texto completoGegenfurtner, Katrin, Thomas Fröhlich, Florian Flenkenthaler, Miwako Kösters, Sébastien Fritz, Olivier Desnoës, Daniel Le Bourhis et al. "Genetic merit for fertility alters the bovine uterine luminal fluid proteome†". Biology of Reproduction 102, n.º 3 (30 de noviembre de 2019): 730–39. http://dx.doi.org/10.1093/biolre/ioz216.
Texto completoBoschetti, Egisto y Pier Giorgio Righetti. "Hexapeptide combinatorial ligand libraries: the march for the detection of the low-abundance proteome continues". BioTechniques 44, n.º 5 (abril de 2008): 663–65. http://dx.doi.org/10.2144/000112762.
Texto completoRighetti, Pier Giorgio y Egisto Boschetti. "Low-abundance plant protein enrichment with peptide libraries to enlarge proteome coverage and related applications". Plant Science 290 (enero de 2020): 110302. http://dx.doi.org/10.1016/j.plantsci.2019.110302.
Texto completoBargiela, Rafael, Karin Lanthaler, Colin M. Potter, Manuel Ferrer, Alexander F. Yakunin, Bela Paizs, Peter N. Golyshin y Olga V. Golyshina. "Proteome Cold-Shock Response in the Extremely Acidophilic Archaeon, Cuniculiplasma divulgatum". Microorganisms 8, n.º 5 (19 de mayo de 2020): 759. http://dx.doi.org/10.3390/microorganisms8050759.
Texto completoDasari, Surendra, Sean A. Newsom, Sarah E. Ehrlicher, Harrison D. Stierwalt y Matthew M. Robinson. "Remodeling of skeletal muscle mitochondrial proteome with high-fat diet involves greater changes to β-oxidation than electron transfer proteins in mice". American Journal of Physiology-Endocrinology and Metabolism 315, n.º 4 (1 de octubre de 2018): E425—E434. http://dx.doi.org/10.1152/ajpendo.00051.2018.
Texto completoSigner, Robert. "Proteostasis and Myeloid Stem Cell Production". Blood 134, Supplement_1 (13 de noviembre de 2019): SCI—42—SCI—42. http://dx.doi.org/10.1182/blood-2019-121085.
Texto completoAskeland, Anders, Anne Borup, Ole Østergaard, Jesper V. Olsen, Sigrid M. Lund, Gunna Christiansen, Søren R. Kristensen, Niels H. H. Heegaard y Shona Pedersen. "Mass-Spectrometry Based Proteome Comparison of Extracellular Vesicle Isolation Methods: Comparison of ME-kit, Size-Exclusion Chromatography, and High-Speed Centrifugation". Biomedicines 8, n.º 8 (25 de julio de 2020): 246. http://dx.doi.org/10.3390/biomedicines8080246.
Texto completoEl Rabey, Haddad A., Abdulrahman L. Al-Malki y Khalid O. Abulnaja. "Proteome Analysis of Date Palm (Phoenix dactylifera L.) under Severe Drought and Salt Stress". International Journal of Genomics 2016 (2016): 1–8. http://dx.doi.org/10.1155/2016/7840759.
Texto completoRighetti, Pier, Egisto Boschetti y Bernard Monsarrat. "The “Invisible Proteome”: How to Capture the Low-Abundance Proteins Via Combinatorial Ligand Libraries". Current Proteomics 4, n.º 4 (1 de diciembre de 2007): 198–208. http://dx.doi.org/10.2174/157016407783221277.
Texto completoHernández-Castellano, Lorenzo, André Almeida, Miguel Ventosa, Ana Coelho, Noemí Castro y Anastasio Argüello. "The effect of colostrum intake on blood plasma proteome profile in newborn lambs: low abundance proteins". BMC Veterinary Research 10, n.º 1 (2014): 85. http://dx.doi.org/10.1186/1746-6148-10-85.
Texto completoPedersen, Susanne K., Jenny L. Harry, Lucille Sebastian, Jasmine Baker, Mathew D. Traini, John T. McCarthy, Abi Manoharan et al. "Unseen Proteome: Mining Below the Tip of the Iceberg To Find Low Abundance and Membrane Proteins". Journal of Proteome Research 2, n.º 3 (junio de 2003): 303–11. http://dx.doi.org/10.1021/pr025588i.
Texto completoLu, Chih-Ming, Yu-Jen Wu, Cheng-Chi Chen, Jue-Liang Hsu, Jiing-Chuan Chen, Jeff Chen, Chun-Hsiung Huang y Ying-Chin Ko. "Identification of low-abundance proteins via fractionation of the urine proteome with weak anion exchange chromatography". Proteome Science 9, n.º 1 (2011): 17. http://dx.doi.org/10.1186/1477-5956-9-17.
Texto completoBantscheff, Marcus. "Egisto Boschetti and Pier Giorgio Righetti: Low-abundance proteome discovery: state of the art and protocols". Analytical and Bioanalytical Chemistry 406, n.º 9-10 (18 de febrero de 2014): 2221–22. http://dx.doi.org/10.1007/s00216-014-7645-7.
Texto completoKim, Hyunju, Kerry Shulze, Casey Rebholz, Gwen Sincerbeaux, Lee Shu-Fane Wu, Sarah Baker, James Yager et al. "Constructing a Plasma Nutriproteome for Population Assessment: Analytical Considerations". Current Developments in Nutrition 6, Supplement_1 (junio de 2022): 770. http://dx.doi.org/10.1093/cdn/nzac063.012.
Texto completoBhawal, Ruchika, Ann L. Oberg, Sheng Zhang y Manish Kohli. "Challenges and Opportunities in Clinical Applications of Blood-Based Proteomics in Cancer". Cancers 12, n.º 9 (27 de agosto de 2020): 2428. http://dx.doi.org/10.3390/cancers12092428.
Texto completoHelena Duarte Sagawa, Cíntia, Paulo A. Zaini, Renata de A. B. Assis, Houston Saxe, Michelle Salemi, Aaron Jacobson, Phillip A. Wilmarth, Brett S. Phinney y Abhaya M. Dandekar. "Deep Learning Neural Network Prediction Method Improves Proteome Profiling of Vascular Sap of Grapevines during Pierce’s Disease Development". Biology 9, n.º 9 (1 de septiembre de 2020): 261. http://dx.doi.org/10.3390/biology9090261.
Texto completoWang, Qi, Zhouxian Li, Jiahua Zhou, Yan Wang, Keyun Wang, Hongqiang Qin y Mingliang Ye. "Chemical Depletion of Histidine-Containing Peptides Allows Identification of More Low-Abundance Methylation Sites from Proteome Samples". Journal of Proteome Research 20, n.º 5 (8 de marzo de 2021): 2497–505. http://dx.doi.org/10.1021/acs.jproteome.0c00976.
Texto completoFreeby, S., K. Academia, T. Wehr, N. Liu y A. Paulus. "Enrichment of Interleukins and Low Abundance Proteins from Tissue Leakage in Serum Proteome Studies Using ProteoMiner Beads". Journal of Proteomics & Bioinformatics S2, n.º 01 (julio de 2008): 171. http://dx.doi.org/10.4172/jpb.s1000127.
Texto completoMerali, Salim, Carlos A. Barrero, Russell P. Bowler, Diane Er Chen, Gerard Criner, Alan Braverman, Samuel Litwin, Anthony Yeung y Steven G. Kelsen. "Analysis of the Plasma Proteome in COPD: Novel Low Abundance Proteins Reflect the Severity of Lung Remodeling". COPD: Journal of Chronic Obstructive Pulmonary Disease 11, n.º 2 (10 de octubre de 2013): 177–89. http://dx.doi.org/10.3109/15412555.2013.831063.
Texto completoKasthuri, Raj S., Lorraine B. Anderson, LeeAnn Higgins, Jorge Di Paola, Georges E. Rivard, Catherine P. M. Hayward y Nigel S. Key. "Proteomics in the Study of Qualitative Platelet Defects: Validation of the Approach in the Gray Platelet Syndrome and Quebec Platelet Disorder." Blood 110, n.º 11 (16 de noviembre de 2007): 3900. http://dx.doi.org/10.1182/blood.v110.11.3900.3900.
Texto completoGao, Mingxia, Chunhui Deng, Wenjia Yu, Yang Zhang, Pengyuan Yang y Xiangmin Zhang. "Large scale depletion of the high-abundance proteins and analysis of middle- and low-abundance proteins in human liver proteome by multidimensional liquid chromatography". PROTEOMICS 8, n.º 5 (marzo de 2008): 939–47. http://dx.doi.org/10.1002/pmic.200600099.
Texto completoLillis, Peter E., Christine T. Griffin y James C. Carolan. "The effect of temperature conditioning (9°C and 20°C) on the proteome of entomopathogenic nematode infective juveniles". PLOS ONE 17, n.º 4 (7 de abril de 2022): e0266164. http://dx.doi.org/10.1371/journal.pone.0266164.
Texto completoScuderi, Richard A., David B. Ebenstein, Ying-Wai Lam, Jana Kraft y Sabrina L. Greenwood. "Inclusion of grape marc in dairy cattle rations alters the bovine milk proteome". Journal of Dairy Research 86, n.º 2 (mayo de 2019): 154–61. http://dx.doi.org/10.1017/s0022029919000372.
Texto completoRiding, G. A., S. A. Lehnert, A. J. French y J. R. Hill. "264. Proteomic approaches to the study of conceptus fluids from first trimester bovine pregnancies". Reproduction, Fertility and Development 17, n.º 9 (2005): 108. http://dx.doi.org/10.1071/srb05abs264.
Texto completoRamakrishnan, Reshmi, Bert Houben, Frederic Rousseau y Joost Schymkowitz. "Differential proteostatic regulation of insoluble and abundant proteins". Bioinformatics 35, n.º 20 (23 de marzo de 2019): 4098–107. http://dx.doi.org/10.1093/bioinformatics/btz214.
Texto completoErnoult, Emilie, Anthony Bourreau, Erick Gamelin y Catherine Guette. "A Proteomic Approach for Plasma Biomarker Discovery with iTRAQ Labelling and OFFGEL Fractionation". Journal of Biomedicine and Biotechnology 2010 (2010): 1–8. http://dx.doi.org/10.1155/2010/927917.
Texto completoWilmes, Boris, Holger Kock, Susanne Glagla, Dirk Albrecht, Birgit Voigt, Stephanie Markert, Antje Gardebrecht et al. "Cytoplasmic and Periplasmic Proteomic Signatures of Exponentially Growing Cells of the Psychrophilic BacteriumPseudoalteromonas haloplanktisTAC125". Applied and Environmental Microbiology 77, n.º 4 (23 de diciembre de 2010): 1276–83. http://dx.doi.org/10.1128/aem.01750-10.
Texto completoPier Giorgio, Righetti y Boschetti Egisto. "Pillaging plucking plundering ransacking proteomes via CPLL technology". Open Journal of Proteomics and Genomics 8, n.º 1 (8 de febrero de 2023): 001–10. http://dx.doi.org/10.17352/ojpg.000012.
Texto completoStewart-McGuinness, Callum, Christopher I. Platt, Matiss Ozols, Brian Goh, Tamara W. Griffiths y Michael J. Sherratt. "Defining the Protease and Protease Inhibitor (P/PI) Proteomes of Healthy and Diseased Human Skin by Modified Systematic Review". Biomolecules 12, n.º 3 (20 de marzo de 2022): 475. http://dx.doi.org/10.3390/biom12030475.
Texto completoMashini, Amirhossein Gheitanchi, Clinton A. Oakley, Sandeep S. Beepat, Lifeng Peng, Arthur R. Grossman, Virginia M. Weis y Simon K. Davy. "The Influence of Symbiosis on the Proteome of the Exaiptasia Endosymbiont Breviolum minutum". Microorganisms 11, n.º 2 (22 de enero de 2023): 292. http://dx.doi.org/10.3390/microorganisms11020292.
Texto completoMulakala, Bharath, Katherine Smith, Miriam A. Snider, Mallory Honan, Ariel Ayers y Sabrina L. Greenwood. "PSIX-4 Rumen Microbial Meta-Proteome and Milk Whey Proteome in Holstein Cows fed with High Starch and low Fiber Diet". Journal of Animal Science 100, Supplement_3 (21 de septiembre de 2022): 365–66. http://dx.doi.org/10.1093/jas/skac247.667.
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