The selective estrogen receptor modulator clomiphene inhibits sterol biosynthesis in Arabidopsis thaliana
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G. Goeminne | Jacob Pollier | D. Geelen | A. Goossens | T. Beeckman | Steffen Vanneste | E. Russinova | Q. Lu | Sandrien Desmet | Kjell De Vriese | Qing Wang
[1] W. D. Nes,et al. Pollen sterols are associated with phylogeny and environment but not with pollinator guilds , 2021, The New phytologist.
[2] Jacob Pollier,et al. Dissecting cholesterol and phytosterol biosynthesis via mutants and inhibitors. , 2020, Journal of experimental botany.
[3] A. Foroumadi,et al. History of the development of antifungal azoles: A review on structures, SAR, and mechanism of action. , 2020, Bioorganic chemistry.
[4] A. Soares,et al. Ecotoxicological effects of the azole antifungal agent clotrimazole on the macrophyte species Lemna minor and Lemna gibba. , 2020, Comparative biochemistry and physiology. Toxicology & pharmacology : CBP.
[5] P. Benfey,et al. RGF1 controls root meristem size through ROS signalling , 2019, Nature.
[6] Zonghua Wang,et al. A Chemical-Induced, Seed-Soaking Activation Procedure for Regulated Gene Expression in Rice , 2017, Front. Plant Sci..
[7] K. Mirnics,et al. The Effect of Small Molecules on Sterol Homeostasis: Measuring 7-Dehydrocholesterol in Dhcr7-Deficient Neuro2a Cells and Human Fibroblasts. , 2016, Journal of medicinal chemistry.
[8] D. Ohta,et al. Diversification of sterol methyltransferase enzymes in plants and a role for β-sitosterol in oriented cell plate formation and polarized growth. , 2015, The Plant journal : for cell and molecular biology.
[9] C. Schwechheimer,et al. Arabidopsis D6PK is a lipid domain-dependent mediator of root epidermal planar polarity , 2015, Nature Plants.
[10] A. Tyagi,et al. Role of phytosterols in drought stress tolerance in rice. , 2015, Plant physiology and biochemistry : PPB.
[11] Johannes E. Schindelin,et al. The ImageJ ecosystem: An open platform for biomedical image analysis , 2015, Molecular reproduction and development.
[12] H. Gallagher,et al. Clotrimazole as a pharmaceutical: past, present and future. , 2014, Journal of applied microbiology.
[13] C. Reuzeau,et al. From squalene to brassinolide: the steroid metabolic and signaling pathways across the plant kingdom. , 2013, Molecular plant.
[14] A. Murphy,et al. Sterols and sphingolipids differentially function in trafficking of the Arabidopsis ABCB19 auxin transporter. , 2013, The Plant journal : for cell and molecular biology.
[15] T. Hoshino,et al. Purification, kinetics, inhibitors and CD for recombinant β‐amyrin synthase from Euphorbia tirucalli L and functional analysis of the DCTA motif, which is highly conserved among oxidosqualene cyclases , 2013, The FEBS journal.
[16] W. Schwab,et al. Genetic Variation in Plant CYP51s Confers Resistance against Voriconazole, a Novel Inhibitor of Brassinosteroid-Dependent Sterol Biosynthesis , 2013, PloS one.
[17] S. Mongrand,et al. Lipids of plant membrane rafts. , 2012, Progress in lipid research.
[18] H. Brauch,et al. Genetic polymorphism of cytochrome P450 2D6 determines oestrogen receptor activity of the major infertility drug clomiphene via its active metabolites. , 2012, Human molecular genetics.
[19] K. Lindsey,et al. Analysis of Vascular Development in the hydra Sterol Biosynthetic Mutants of Arabidopsis , 2010, PloS one.
[20] G. Jürgens,et al. Endocytosis restricts Arabidopsis KNOLLE syntaxin to the cell division plane during late cytokinesis , 2009, The EMBO journal.
[21] M. Grebe,et al. Cellular processes relying on sterol function in plants. , 2009, Current opinion in plant biology.
[22] Yingjin Yuan,et al. Analysis of phospholipids, sterols, and fatty acids in Taxus chinensis var. mairei cells in response to shear stress , 2009, Biotechnology and applied biochemistry.
[23] S. Gribaldo,et al. Phylogenomics of Sterol Synthesis: Insights into the Origin, Evolution, and Diversity of a Key Eukaryotic Feature , 2009, Genome biology and evolution.
[24] M. Estelle,et al. Plant hormones are versatile chemical regulators of plant growth. , 2009, Nature chemical biology.
[25] Sebastian Y Bednarek,et al. Dynamics of Arabidopsis Dynamin-Related Protein 1C and a Clathrin Light Chain at the Plasma Membrane[W][OA] , 2008, The Plant Cell Online.
[26] Y. Ikeda,et al. Sterol-dependent endocytosis mediates post-cytokinetic acquisition of PIN2 auxin efflux carrier polarity , 2008, Nature Cell Biology.
[27] J. Vaisman,et al. Influence of brassinosteroids on initiation of the root gravitropic response in Pisum sativum seedlings , 2006, Biologia Plantarum.
[28] Klaus Palme,et al. A PINOID-Dependent Binary Switch in Apical-Basal PIN Polar Targeting Directs Auxin Efflux , 2004, Science.
[29] K. Lindsey,et al. Importance of plant sterols in pattern formation and hormone signalling. , 2003, Trends in plant science.
[30] H. Schaller. The role of sterols in plant growth and development. , 2003, Progress in lipid research.
[31] C. A. Kauffman,et al. Voriconazole: a new triazole antifungal agent. , 2003, Clinical infectious diseases : an official publication of the Infectious Diseases Society of America.
[32] A. Nakano,et al. Obtusifoliol 14alpha-demethylase (CYP51) antisense Arabidopsis shows slow growth and long life. , 2001, Biochemical and biophysical research communications.
[33] D. Kelly,et al. Plant sterol 14 alpha-demethylase affinity for azole fungicides. , 2001, Biochemical and biophysical research communications.
[34] M. Catterou,et al. Brassinosteroids, microtubules and cell elongation in Arabidopsis thaliana. I. Molecular, cellular and physiological characterization of the Arabidopsis bul1 mutant, defective in the Δ7-sterol-C5-desaturation step leading to brassinosteroid biosynthesis , 2001, Planta.
[35] N. Chua,et al. Technical advance: An estrogen receptor-based transactivator XVE mediates highly inducible gene expression in transgenic plants. , 2000, The Plant journal : for cell and molecular biology.
[36] S. Clouse. Plant development: A role for sterols in embryogenesis , 2000, Current Biology.
[37] G. Fink,et al. STEROL METHYLTRANSFERASE 1 Controls the Level of Cholesterol in Plants , 2000, Plant Cell.
[38] K. Feldmann,et al. An Arabidopsis Brassinosteroid-Dependent Mutant Is Blocked in Cell Elongation , 1998, Plant Cell.
[39] F. Böhme,et al. 24-Methylpollinastanone, related triterpenoids and sterols from Costus tonkinensis , 1997 .
[40] D. Guo,et al. Developmental regulation of sterol biosynthesis inZea mays , 1995, Lipids.
[41] H. Schaller,et al. In Vitro Selection of Calli Resistant to a Triazole Cytochrome-P-450-Obtusifoliol-14-Demethylase Inhibitor from Protoplasts of Nicotiana tabacum L. cv Xanthi. , 1990, Plant physiology.
[42] F. Karst,et al. In vivo effects of fenpropimorph on the yeast Saccharomyces cerevisiae and determination of the molecular basis of the antifungal property , 1990, Antimicrobial Agents and Chemotherapy.
[43] A. Rahier,et al. Interaction of triazole fungicides and plant growth regulators with microsomal cytochrome P-450-dependent obtusifoliol 14α-methyl demethylase , 1988 .
[44] T. Bach. Selected natural and synthetic enzyme inhibitors of sterol biosynthesis as molecular probes for in vivo studies concerning the regulation of plant growth , 1985 .
[45] S. Fujioka,et al. The E 3 Ubiquitin Ligase SCFTIR 1 / AFB and Membrane Sterols Play Key Roles in Auxin Regulation of Endocytosis , Recycling , and Plasma Membrane Accumulation of the Auxin Efflux Transporter PIN 2 in Arabidopsis thaliana , 2009 .
[46] O. Borsani,et al. Identification of the Arabidopsis dry 2 / sqe 1-5 mutant reveals a central role for sterols in drought tolerance and regulation of reactive oxygen species , 2009 .
[47] L. Goad,et al. Mass spectrometry of sterols , 1997 .
[48] A. Kerkenaar. Inhibition of the sterol delta 14-reductase and delta 8----delta 7-isomerase in fungi. , 1990, Biochemical Society transactions.
[49] A. Rahier,et al. Mechanism of inhibition of sterol biosynthesis enzymes by N-substituted morpholines† , 1987 .
[50] L. Cattel,et al. N-oxide as a potential function in the design of enzyme inhibitors. Application to 2,3-epoxysqualene-sterol cyclases , 1985 .