Articoli di riviste sul tema "Methylerythritol phosphate pathway (MEP pathway)"
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Banerjee, A., e T. D. Sharkey. "Methylerythritol 4-phosphate (MEP) pathway metabolic regulation". Nat. Prod. Rep. 31, n. 8 (2014): 1043–55. http://dx.doi.org/10.1039/c3np70124g.
Testo completoTesta, Charles A., e L. Jeffrey Johnson. "A Whole-Cell Phenotypic Screening Platform for Identifying Methylerythritol Phosphate Pathway-Selective Inhibitors as Novel Antibacterial Agents". Antimicrobial Agents and Chemotherapy 56, n. 9 (9 luglio 2012): 4906–13. http://dx.doi.org/10.1128/aac.00987-12.
Testo completoCassera, María B., Fabio C. Gozzo, Fabio L. D'Alexandri, Emilio F. Merino, Hernando A. del Portillo, Valnice J. Peres, Igor C. Almeida et al. "The Methylerythritol Phosphate Pathway Is Functionally Active in All Intraerythrocytic Stages ofPlasmodium falciparum". Journal of Biological Chemistry 279, n. 50 (27 settembre 2004): 51749–59. http://dx.doi.org/10.1074/jbc.m408360200.
Testo completoChen, Lijia, Hui Tong, Mingxuan Wang, Jianhua Zhu, Jiachen Zi, Liyan Song e Rongmin Yu. "Effect of Enzyme Inhibitors on Terpene Trilactones Biosynthesis and Gene Expression Profiling in Ginkgo biloba Cultured Cells". Natural Product Communications 10, n. 12 (dicembre 2015): 1934578X1501001. http://dx.doi.org/10.1177/1934578x1501001205.
Testo completoZeidler, J., J. Schwender, C. Mueller e H. K. Lichtenthaler. "The non-mevalonate isoprenoid biosynthesis of plants as a test system for drugs against malaria and pathogenic bacteria". Biochemical Society Transactions 28, n. 6 (1 dicembre 2000): 796–98. http://dx.doi.org/10.1042/bst0280796.
Testo completoKadian, Kavita, Yash Gupta, Harsh Vardhan Singh, Prakasha Kempaiah e Manmeet Rawat. "Apicoplast Metabolism: Parasite’s Achilles’ Heel". Current Topics in Medicinal Chemistry 18, n. 22 (10 gennaio 2019): 1987–97. http://dx.doi.org/10.2174/1568026619666181130134742.
Testo completoCornish, Rita M., John R. Roth e C. Dale Poulter. "Lethal Mutations in the Isoprenoid Pathway of Salmonella enterica". Journal of Bacteriology 188, n. 4 (15 febbraio 2006): 1444–50. http://dx.doi.org/10.1128/jb.188.4.1444-1450.2006.
Testo completoPérez-Gil, Jordi, e Manuel Rodríguez-Concepción. "Metabolic plasticity for isoprenoid biosynthesis in bacteria". Biochemical Journal 452, n. 1 (25 aprile 2013): 19–25. http://dx.doi.org/10.1042/bj20121899.
Testo completoBanerjee, Aparajita, Yan Wu, Rahul Banerjee, Yue Li, Honggao Yan e Thomas D. Sharkey. "Feedback Inhibition of Deoxy-d-xylulose-5-phosphate Synthase Regulates the Methylerythritol 4-Phosphate Pathway". Journal of Biological Chemistry 288, n. 23 (23 aprile 2013): 16926–36. http://dx.doi.org/10.1074/jbc.m113.464636.
Testo completoKilliny, Nabil. "Silencing Phytoene Desaturase Causes Alteration in Monoterpene Volatiles Belonging to the Methylerythritol Phosphate Pathway". Plants 11, n. 3 (20 gennaio 2022): 276. http://dx.doi.org/10.3390/plants11030276.
Testo completoChoi, Seoung-Ryoung, e Prabagaran Narayanasamy. "Investigating Novel IspE Inhibitors of the MEP Pathway in Mycobacterium". Microorganisms 12, n. 1 (21 dicembre 2023): 18. http://dx.doi.org/10.3390/microorganisms12010018.
Testo completoRohmer, M. "Mevalonate-independent methylerythritol phosphate pathway for isoprenoid biosynthesis. Elucidation and distribution". Pure and Applied Chemistry 75, n. 2-3 (1 gennaio 2003): 375–88. http://dx.doi.org/10.1351/pac200375020375.
Testo completoGonzález-Cabanelas, Diego, Erica Perreca, Johann M. Rohwer, Axel Schmidt, Tobias Engl, Bettina Raguschke, Jonathan Gershenzon e Louwrance P. Wright. "Deoxyxylulose 5-Phosphate Synthase Does Not Play a Major Role in Regulating the Methylerythritol 4-Phosphate Pathway in Poplar". International Journal of Molecular Sciences 25, n. 8 (10 aprile 2024): 4181. http://dx.doi.org/10.3390/ijms25084181.
Testo completoZhao, Yaru, Jianming Yang, Bo Qin, Yonghao Li, Yuanzhang Sun, Sizheng Su e Mo Xian. "Biosynthesis of isoprene in Escherichia coli via methylerythritol phosphate (MEP) pathway". Applied Microbiology and Biotechnology 90, n. 6 (6 aprile 2011): 1915–22. http://dx.doi.org/10.1007/s00253-011-3199-1.
Testo completoHenry, Laura K., Michael Gutensohn, Suzanne T. Thomas, Joseph P. Noel e Natalia Dudareva. "Orthologs of the archaeal isopentenyl phosphate kinase regulate terpenoid production in plants". Proceedings of the National Academy of Sciences 112, n. 32 (27 luglio 2015): 10050–55. http://dx.doi.org/10.1073/pnas.1504798112.
Testo completoPérez, Lucía, Rui Alves, Laura Perez-Fons, Alfonso Albacete, Gemma Farré, Erika Soto, Ester Vilaprinyó et al. "Multilevel interactions between native and ectopic isoprenoid pathways affect global metabolism in rice". Transgenic Research 31, n. 2 (24 febbraio 2022): 249–68. http://dx.doi.org/10.1007/s11248-022-00299-6.
Testo completoWang, Jin-Zheng, Yongxing Lei, Yanmei Xiao, Xiang He, Jiubo Liang, Jishan Jiang, Shangzhi Dong et al. "Uncovering the functional residues ofArabidopsisisoprenoid biosynthesis enzyme HDS". Proceedings of the National Academy of Sciences 117, n. 1 (26 dicembre 2019): 355–61. http://dx.doi.org/10.1073/pnas.1916434117.
Testo completoRohmer, Michel. "Diversity in isoprene unit biosynthesis: The methylerythritol phosphate pathway in bacteria and plastids". Pure and Applied Chemistry 79, n. 4 (1 gennaio 2007): 739–51. http://dx.doi.org/10.1351/pac200779040739.
Testo completoJin, Shi Kun, e Shou Jing Zhao. "Recent Advances in Study of Ginsenoside Biosynthetic Pathway in Panax ginseng". Advanced Materials Research 773 (settembre 2013): 368–73. http://dx.doi.org/10.4028/www.scientific.net/amr.773.368.
Testo completoRoth, Jared H., e Valerie C. A. Ward. "Production of Astaxanthin Using CBFD1/HFBD1 from Adonis aestivalis and the Isopentenol Utilization Pathway in Escherichia coli". Bioengineering 10, n. 9 (1 settembre 2023): 1033. http://dx.doi.org/10.3390/bioengineering10091033.
Testo completoNguyen, Anh Duc, Diep Ngoc Pham, Tin Hoang Trung Chau e Eun Yeol Lee. "Enhancing Sesquiterpenoid Production from Methane via Synergy of the Methylerythritol Phosphate Pathway and a Short-Cut Route to 1-Deoxy-D-xylulose 5-Phosphate in Methanotrophic Bacteria". Microorganisms 9, n. 6 (7 giugno 2021): 1236. http://dx.doi.org/10.3390/microorganisms9061236.
Testo completoGastaldo, Lipko, Motsch, Adam, Schaeffer e Rohmer. "Biosynthesis of Isoprene Units in Euphorbia lathyris Laticifers vs. Other Tissues: MVA and MEP Pathways, Compartmentation and Putative Endophytic Fungi Contribution". Molecules 24, n. 23 (26 novembre 2019): 4322. http://dx.doi.org/10.3390/molecules24234322.
Testo completoMueller, C., J. Schwender, J. Zeidler e H. K. Lichtenthaler. "Properties and inhibition of the first two enzymes of the non-mevalonate pathway of isoprenoid biosynthesis". Biochemical Society Transactions 28, n. 6 (1 dicembre 2000): 792–93. http://dx.doi.org/10.1042/bst0280792.
Testo completoRohmer, M. "The mevalonate-independent methylerythritol 4-phosphate (MEP) pathway for isoprenoid biosynthesis, including carotenoids". Pure and Applied Chemistry 71, n. 12 (1 gennaio 1999): 2279–84. http://dx.doi.org/10.1351/pac199971122279.
Testo completoPierce, Phillip G., Brian E. Hartnett, Tosha M. Laughlin, Joy M. Blain, Stephen J. Mayclin, Madison J. Bolejack, Janette B. Myers et al. "Crystal structure and biophysical characterization of IspD from Burkholderia thailandensis and Mycobacterium paratuberculosis". Acta Crystallographica Section F Structural Biology Communications 80, n. 2 (31 gennaio 2024): 43–51. http://dx.doi.org/10.1107/s2053230x24000621.
Testo completoNiu, Zhipeng, Shu Ye, Jiaojiao Liu, Mengyu Lyu, Lilan Xue, Muxiao Li, Congcong Lyu, Junlong Zhao e Bang Shen. "Two apicoplast dwelling glycolytic enzymes provide key substrates for metabolic pathways in the apicoplast and are critical for Toxoplasma growth". PLOS Pathogens 18, n. 11 (30 novembre 2022): e1011009. http://dx.doi.org/10.1371/journal.ppat.1011009.
Testo completoKnak, Talea, Mona A. Abdullaziz, Stefan Höfmann, Leandro A. Alves Avelar, Saskia Klein, Matthew Martin, Markus Fischer, Nobutada Tanaka e Thomas Kurz. "Over 40 Years of Fosmidomycin Drug Research: A Comprehensive Review and Future Opportunities". Pharmaceuticals 15, n. 12 (14 dicembre 2022): 1553. http://dx.doi.org/10.3390/ph15121553.
Testo completoVan Nguyen, Truong, So-Wun Kim, Cheol-Woo Min, Ravi Gupta, Gi-Hyun Lee, Jeong-Woo Jang, Divya Rathi et al. "Optimization of Protein Isolation and Label-Free Quantitative Proteomic Analysis in Four Different Tissues of Korean Ginseng". Plants 10, n. 7 (9 luglio 2021): 1409. http://dx.doi.org/10.3390/plants10071409.
Testo completoEoh, Hyungjin, Amanda C. Brown, Lori Buetow, William N. Hunter, Tanya Parish, Devinder Kaur, Patrick J. Brennan e Dean C. Crick. "Characterization of the Mycobacterium tuberculosis 4-Diphosphocytidyl-2-C-Methyl-d-Erythritol Synthase: Potential for Drug Development". Journal of Bacteriology 189, n. 24 (5 ottobre 2007): 8922–27. http://dx.doi.org/10.1128/jb.00925-07.
Testo completoHowe, Ruth, Megan Kelly, John Jimah, Dana Hodge e Audrey R. Odom. "Isoprenoid Biosynthesis Inhibition Disrupts Rab5 Localization and Food Vacuolar Integrity in Plasmodium falciparum". Eukaryotic Cell 12, n. 2 (7 dicembre 2012): 215–23. http://dx.doi.org/10.1128/ec.00073-12.
Testo completoArmstrong, Christopher M., David J. Meyers, Leah S. Imlay, Caren Freel Meyers e Audrey R. Odom. "Resistance to the Antimicrobial Agent Fosmidomycin and an FR900098 Prodrug through Mutations in the Deoxyxylulose Phosphate Reductoisomerase Gene (dxr)". Antimicrobial Agents and Chemotherapy 59, n. 9 (29 giugno 2015): 5511–19. http://dx.doi.org/10.1128/aac.00602-15.
Testo completoHOEFFLER, Jean-François, Andréa HEMMERLIN, Catherine GROSDEMANGE-BILLIARD, Thomas J. BACH e Michel ROHMER. "Isoprenoid biosynthesis in higher plants and in Escherichia coli: on the branching in the methylerythritol phosphate pathway and the independent biosynthesis of isopentenyl diphosphate and dimethylallyl diphosphate". Biochemical Journal 366, n. 2 (1 settembre 2002): 573–83. http://dx.doi.org/10.1042/bj20020337.
Testo completoZhu, Jianhua, Pu Wang, Minghua Qian, Chuxin Liang, Jiachen Zi e Rongmin Yu. "Effect of Levopimaradiene on Terpene Trilactones Biosynthesis and Gene Expression Profiling in Ginkgo biloba Cells". Natural Product Communications 12, n. 7 (luglio 2017): 1934578X1701200. http://dx.doi.org/10.1177/1934578x1701200701.
Testo completoHartmann, Michael, Andrea Hemmerlin, Elisabet Gas-Pascual, Esther Gerber, Denis Tritsch, Michel Rohmer e Thomas J. Bach. "The effect of MEP pathway and other inhibitors on the intracellular localization of a plasma membrane-targeted, isoprenylable GFP reporter protein in tobacco BY-2 cells". F1000Research 2 (12 agosto 2013): 170. http://dx.doi.org/10.12688/f1000research.2-170.v1.
Testo completoHartmann, Michael, Andrea Hemmerlin, Elisabet Gas-Pascual, Esther Gerber, Denis Tritsch, Michel Rohmer e Thomas J. Bach. "The effect of MEP pathway and other inhibitors on the intracellular localization of a plasma membrane-targeted, isoprenylable GFP reporter protein in tobacco BY-2 cells". F1000Research 2 (15 novembre 2013): 170. http://dx.doi.org/10.12688/f1000research.2-170.v2.
Testo completoLiu, Yu, Hui Zhang, Shivshankar Umashankar, Xu Liang, Hui Lee, Sanjay Swarup e Choon Ong. "Characterization of Plant Volatiles Reveals Distinct Metabolic Profiles and Pathways among 12 Brassicaceae Vegetables". Metabolites 8, n. 4 (14 dicembre 2018): 94. http://dx.doi.org/10.3390/metabo8040094.
Testo completoZhu, Peihuang, Yu Chen, Fan Wu, Miaojing Meng e Kongshu Ji. "Expression and promoter analysis of MEP pathway enzyme-encoding genes in Pinus massoniana Lamb". PeerJ 10 (12 aprile 2022): e13266. http://dx.doi.org/10.7717/peerj.13266.
Testo completoJezewski, Andrew J., Ann M. Guggisberg, Dana M. Hodge, Naomi Ghebremichael, Gavin Nicholas John, Lisa K. McLellan e Audrey Ragan Odom John. "GAPDH mediates drug resistance and metabolism in Plasmodium falciparum malaria parasites". PLOS Pathogens 18, n. 9 (14 settembre 2022): e1010803. http://dx.doi.org/10.1371/journal.ppat.1010803.
Testo completoLu, Zhifang, Biying Wang, Zhiyu Qiu, Ruiling Zhang, Jimin Zheng e Zongchao Jia. "YdfD, a Lysis Protein of the Qin Prophage, Is a Specific Inhibitor of the IspG-Catalyzed Step in the MEP Pathway of Escherichia coli". International Journal of Molecular Sciences 23, n. 3 (29 gennaio 2022): 1560. http://dx.doi.org/10.3390/ijms23031560.
Testo completoDong, Miaoyin, Jinjuan Li, Delong Yang, Mengfei Li e Jianhe Wei. "Biosynthesis and Pharmacological Activities of Flavonoids, Triterpene Saponins and Polysaccharides Derived from Astragalus membranaceus". Molecules 28, n. 13 (27 giugno 2023): 5018. http://dx.doi.org/10.3390/molecules28135018.
Testo completoDini, Irene, Roberta Marra, Pierpaolo Cavallo, Angela Pironti, Immacolata Sepe, Jacopo Troisi, Giovanni Scala, Pasquale Lombari e Francesco Vinale. "Trichoderma Strains and Metabolites Selectively Increase the Production of Volatile Organic Compounds (VOCs) in Olive Trees". Metabolites 11, n. 4 (31 marzo 2021): 213. http://dx.doi.org/10.3390/metabo11040213.
Testo completoCrispim, Marcell, Ignasi Bofill Verdaguer, Agustín Hernández, Thales Kronenberger, Àngel Fenollar, Lydia Fumiko Yamaguchi, María Pía Alberione et al. "Beyond the MEP Pathway: A novel kinase required for prenol utilization by malaria parasites". PLOS Pathogens 20, n. 1 (26 gennaio 2024): e1011557. http://dx.doi.org/10.1371/journal.ppat.1011557.
Testo completoGawriljuk, Victor Oliveira, Rick Oerlemans, Robin M. Gierse, Riya Jotwani, Anna K. H. Hirsch e Matthew R. Groves. "Structure of Mycobacterium tuberculosis 1-Deoxy-D-Xylulose 5-Phosphate Synthase in Complex with Butylacetylphosphonate". Crystals 13, n. 5 (27 aprile 2023): 737. http://dx.doi.org/10.3390/cryst13050737.
Testo completoLi, Yuchan, Jun Zhao, Hua Chen, Yanping Mao, Yuping Yang, Liang Feng, Chuanxin Mo, Lin Huang, Dabin Hou e Ma Yu. "Transcriptome Level Reveals the Triterpenoid Saponin Biosynthesis Pathway of Bupleurum falcatum L." Genes 13, n. 12 (29 novembre 2022): 2237. http://dx.doi.org/10.3390/genes13122237.
Testo completoSripinyowanich, Siriporn, Sahanat Petchsri, Pumipat Tongyoo, Taek-Kyun Lee, Sukchan Lee e Won Kyong Cho. "Comparative Transcriptomic Analysis of Genes in the 20-hydroxyecdysone Biosynthesis in the Fern Microsorum scolopendria Towards Challenges with Foliar Application of Chitosan". International Journal of Molecular Sciences 24, n. 3 (25 gennaio 2023): 2397. http://dx.doi.org/10.3390/ijms24032397.
Testo completoMahadi, Nursyah Fitri, Azman Abd Samad e Abdul Fatah A. Samad. "Identification of MiR398 and Its Regulatory Roles in Terpenoid Biosynthesis of Persicaria odorata". Malaysian Journal of Fundamental and Applied Sciences 20, n. 2 (24 aprile 2024): 401–11. http://dx.doi.org/10.11113/mjfas.v20n2.3248.
Testo completoGuggisberg, Ann M., Rachel E. Amthor e Audrey R. Odom. "Isoprenoid Biosynthesis in Plasmodium falciparum". Eukaryotic Cell 13, n. 11 (12 settembre 2014): 1348–59. http://dx.doi.org/10.1128/ec.00160-14.
Testo completoChen, Cathy, Philip Frasse, Dana Hodge, Brianne Roper e Audrey R. Odom John. "HAD2 Regulates Central Carbon Metabolism in Malaria Parasite P. falciparum". Journal of the Pediatric Infectious Diseases Society 12, Supplement_1 (1 novembre 2023): S14. http://dx.doi.org/10.1093/jpids/piad070.026.
Testo completoZhang, Yueya, Haifeng Yan, Yuan Li, Yuping Xiong, Meiyun Niu, Xinhua Zhang, Jaime A. Teixeira da Silva e Guohua Ma. "Molecular Cloning and Functional Analysis of 1-Deoxy-D-Xylulose 5-Phosphate Reductoisomerase from Santalum album". Genes 12, n. 5 (22 aprile 2021): 626. http://dx.doi.org/10.3390/genes12050626.
Testo completoPark, Jooyoung, Ann M. Guggisberg, Audrey R. Odom e Niraj H. Tolia. "Cap-domain closure enables diverse substrate recognition by the C2-type haloacid dehalogenase-like sugar phosphatasePlasmodium falciparumHAD1". Acta Crystallographica Section D Biological Crystallography 71, n. 9 (25 agosto 2015): 1824–34. http://dx.doi.org/10.1107/s1399004715012067.
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