David E. Krantz, MD, PhD - Publications

Affiliations: 
Psychiatry University of California, Los Angeles, Los Angeles, CA 
Area:
Drosophila, Neurotransmitter transporters
Website:
http://faculty.neuroscience.ucla.edu/institution/personnel?personnel_id=8893

58 high-probability publications. We are testing a new system for linking publications to authors. You can help! If you notice any inaccuracies, please sign in and mark papers as correct or incorrect matches. If you identify any major omissions or other inaccuracies in the publication list, please let us know.

Year Citation  Score
2024 Bonanno SL, Sanfilippo P, Eamani A, Sampson MM, Kandagedon B, Li K, Burns GD, Makar ME, Zipursky SL, Krantz DE. Constitutive and conditional epitope-tagging of endogenous G protein coupled receptors in . The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. PMID 38937100 DOI: 10.1523/JNEUROSCI.2377-23.2024  0.585
2023 Bonanno SL, Sanfilippo P, Eamani A, Sampson MM, Binu K, Li K, Burns GD, Makar ME, Zipursky SL, Krantz DE. Constitutive and conditional epitope-tagging of endogenous G protein coupled receptors in . Biorxiv : the Preprint Server For Biology. PMID 38234787 DOI: 10.1101/2023.12.27.573472  0.578
2023 Asuncion JD, Eamani A, Rohrbach EW, Knapp EM, Deshpande SA, Bonanno SL, Murphy JE, Lawal HO, Krantz DE. Precise CRISPR-Cas9-mediated mutation of a membrane trafficking domain in the vesicular monoamine transporter gene. Current Research in Physiology. 6: 100101. PMID 37409154 DOI: 10.1016/j.crphys.2023.100101  0.812
2023 Bonanno SL, Krantz DE. Transcriptional changes in specific subsets of Drosophila neurons following inhibition of the serotonin transporter. Translational Psychiatry. 13: 226. PMID 37355701 DOI: 10.1038/s41398-023-02521-3  0.321
2023 Krantz D, Bonanno S. Transcriptional changes in specific subsets of Drosophila neurons following inhibition of the serotonin transporter. Research Square. PMID 36993644 DOI: 10.21203/rs.3.rs-2626506/v1  0.322
2020 Sampson MM, Myers Gschweng KM, Hardcastle BJ, Bonanno SL, Sizemore TR, Arnold RC, Gao F, Dacks AM, Frye MA, Krantz DE. Serotonergic modulation of visual neurons in Drosophila melanogaster. Plos Genetics. 16: e1009003. PMID 32866139 DOI: 10.1371/Journal.Pgen.1009003  0.513
2020 Harrigan J, Brambila DF, Meera P, Krantz DE, Schweizer FE. The environmental toxicant ziram enhances neurotransmitter release and increases neuronal excitability via the EAG family of potassium channels. Neurobiology of Disease. 143: 104977. PMID 32553709 DOI: 10.1016/J.Nbd.2020.104977  0.38
2020 Deshpande S, Freyberg Z, Lawal HO, Krantz DE. Vesicular neurotransmitter transporters in Drosophila melanogaster. Biochimica Et Biophysica Acta. Biomembranes. 183308. PMID 32305263 DOI: 10.1016/J.Bbamem.2020.183308  0.803
2017 Aguilar JI, Dunn M, Mingote S, Karam CS, Farino ZJ, Sonders MS, Choi SJ, Grygoruk A, Zhang Y, Cela C, Choi BJ, Flores J, Freyberg RJ, McCabe BD, Mosharov EV, ... Krantz DE, et al. Neuronal Depolarization Drives Increased Dopamine Synaptic Vesicle Loading via VGLUT. Neuron. PMID 28823729 DOI: 10.1016/J.Neuron.2017.07.038  0.823
2016 Freyberg Z, Sonders MS, Aguilar JI, Hiranita T, Karam CS, Flores J, Pizzo AB, Zhang Y, Farino ZJ, Chen A, Martin CA, Kopajtic TA, Fei H, Hu G, Lin YY, ... ... Krantz DE, et al. Mechanisms of amphetamine action illuminated through optical monitoring of dopamine synaptic vesicles in Drosophila brain. Nature Communications. 7: 10652. PMID 26879809 DOI: 10.1038/Ncomms10652  0.737
2015 Martin CA, Myers KM, Chen A, Martin NT, Barajas A, Schweizer FE, Krantz DE. Ziram, a pesticide associated with increased risk for Parkinson's disease, differentially affects the presynaptic function of aminergic and glutamatergic nerve terminals at the Drosophila neuromuscular junction. Experimental Neurology. PMID 26439313 DOI: 10.1016/J.Expneurol.2015.09.017  0.694
2015 Majdi S, Berglund EC, Dunevall J, Oleinick AI, Amatore C, Krantz DE, Ewing AG. Electrochemical Measurements of Optogenetically Stimulated Quantal Amine Release from Single Nerve Cell Varicosities in Drosophila Larvae. Angewandte Chemie (International Ed. in English). 54: 13609-12. PMID 26387683 DOI: 10.1002/Anie.201506743  0.365
2015 Wasserman SM, Aptekar JW, Lu P, Nguyen J, Wang AL, Keles MF, Grygoruk A, Krantz DE, Larsen C, Frye MA. Olfactory neuromodulation of motion vision circuitry in Drosophila. Current Biology : Cb. 25: 467-72. PMID 25619767 DOI: 10.1016/J.Cub.2014.12.012  0.776
2014 Martin CA, Barajas A, Lawless G, Lawal HO, Assani K, Lumintang YP, Nunez V, Krantz DE. Synergistic effects on dopamine cell death in a Drosophila model of chronic toxin exposure. Neurotoxicology. 44: 344-51. PMID 25160001 DOI: 10.1016/J.Neuro.2014.08.005  0.761
2014 Grygoruk A, Chen A, Martin CA, Lawal HO, Fei H, Gutierrez G, Biedermann T, Najibi R, Hadi R, Chouhan AK, Murphy NP, Schweizer FE, Macleod GT, Maidment NT, Krantz DE. The redistribution of Drosophila vesicular monoamine transporter mutants from synaptic vesicles to large dense-core vesicles impairs amine-dependent behaviors. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 34: 6924-37. PMID 24828646 DOI: 10.1523/Jneurosci.0694-14.2014  0.812
2014 Martin CA, Krantz DE. Drosophila melanogaster as a genetic model system to study neurotransmitter transporters. Neurochemistry International. 73: 71-88. PMID 24704795 DOI: 10.1016/J.Neuint.2014.03.015  0.663
2013 Lawal HO, Krantz DE. SLC18: Vesicular neurotransmitter transporters for monoamines and acetylcholine. Molecular Aspects of Medicine. 34: 360-72. PMID 23506877 DOI: 10.1016/J.Mam.2012.07.005  0.803
2013 Wu TH, Lu YN, Chuang CL, Wu CL, Chiang AS, Krantz DE, Chang HY. Loss of vesicular dopamine release precedes tauopathy in degenerative dopaminergic neurons in a Drosophila model expressing human tau. Acta Neuropathologica. 125: 711-25. PMID 23494099 DOI: 10.1007/S00401-013-1105-X  0.408
2013 Chen A, Ng F, Lebestky T, Grygoruk A, Djapri C, Lawal HO, Zaveri HA, Mehanzel F, Najibi R, Seidman G, Murphy NP, Kelly RL, Ackerson LC, Maidment NT, Jackson FR, ... Krantz DE, et al. Dispensable, redundant, complementary, and cooperative roles of dopamine, octopamine, and serotonin in Drosophila melanogaster. Genetics. 193: 159-76. PMID 23086220 DOI: 10.1534/Genetics.112.142042  0.804
2013 Grygoruk A, Chen A, Martin CR, Murphy NP, Maidment NT, Krantz DE. In Vivo Mutations in the Trafficking Domain of the Drosophila Vesicular Monoamine Transporter Disrupt Specific Amine-Dependent Behaviors Catecholamine Research in the 21st Century: Abstracts and Graphical Abstracts, 10th International Catecholamine Symposium, 2012. 39-40. DOI: 10.1016/B978-0-12-800044-1.00033-7  0.814
2011 Brooks ES, Greer CL, Romero-Calderón R, Serway CN, Grygoruk A, Haimovitz JM, Nguyen BT, Najibi R, Tabone CJ, de Belle JS, Krantz DE. A putative vesicular transporter expressed in Drosophila mushroom bodies that mediates sexual behavior may define a neurotransmitter system. Neuron. 72: 316-29. PMID 22017990 DOI: 10.1016/J.Neuron.2011.08.032  0.782
2010 Grygoruk A, Fei H, Daniels RW, Miller BR, Chen A, DiAntonio A, Krantz DE. Vesicular neurotransmitter transporter trafficking in vivo: moving from cells to flies. Fly. 4: 302-5. PMID 20855951 DOI: 10.4161/Fly.4.4.13305  0.838
2010 Lawal HO, Chang HY, Terrell AN, Brooks ES, Pulido D, Simon AF, Krantz DE. The Drosophila vesicular monoamine transporter reduces pesticide-induced loss of dopaminergic neurons. Neurobiology of Disease. 40: 102-12. PMID 20472063 DOI: 10.1016/J.Nbd.2010.05.008  0.812
2010 Fei H, Chow DM, Chen A, Romero-Calderón R, Ong WS, Ackerson LC, Maidment NT, Simpson JH, Frye MA, Krantz DE. Mutation of the Drosophila vesicular GABA transporter disrupts visual figure detection. The Journal of Experimental Biology. 213: 1717-30. PMID 20435823 DOI: 10.1242/Jeb.036053  0.654
2010 Bahadorani S, Cho J, Lo T, Contreras H, Lawal HO, Krantz DE, Bradley TJ, Walker DW. Neuronal expression of a single-subunit yeast NADH-ubiquinone oxidoreductase (Ndi1) extends Drosophila lifespan. Aging Cell. 9: 191-202. PMID 20089120 DOI: 10.1111/J.1474-9726.2010.00546.X  0.753
2010 Grygoruk A, Fei H, Daniels RW, Miller BR, Diantonio A, Krantz DE. A tyrosine-based motif localizes a Drosophila vesicular transporter to synaptic vesicles in vivo. The Journal of Biological Chemistry. 285: 6867-78. PMID 20053989 DOI: 10.1074/Jbc.M109.073064  0.83
2010 Cheli VT, Daniels RW, Godoy R, Hoyle DJ, Kandachar V, Starcevic M, Martinez-Agosto JA, Poole S, DiAntonio A, Lloyd VK, Chang HC, Krantz DE, Dell'Angelica EC. Genetic modifiers of abnormal organelle biogenesis in a Drosophila model of BLOC-1 deficiency. Human Molecular Genetics. 19: 861-78. PMID 20015953 DOI: 10.1093/Hmg/Ddp555  0.357
2009 Mosharov EV, Larsen KE, Kanter E, Phillips KA, Wilson K, Schmitz Y, Krantz DE, Kobayashi K, Edwards RH, Sulzer D. Interplay between cytosolic dopamine, calcium, and alpha-synuclein causes selective death of substantia nigra neurons. Neuron. 62: 218-29. PMID 19409267 DOI: 10.1016/J.Neuron.2009.01.033  0.488
2009 Simon AF, Daniels R, Romero-Calderón R, Grygoruk A, Chang HY, Najibi R, Shamouelian D, Salazar E, Solomon M, Ackerson LC, Maidment NT, Diantonio A, Krantz DE. Drosophila vesicular monoamine transporter mutants can adapt to reduced or eliminated vesicular stores of dopamine and serotonin. Genetics. 181: 525-41. PMID 19033154 DOI: 10.1534/Genetics.108.094110  0.821
2008 Romero-Calderón R, Uhlenbrock G, Borycz J, Simon AF, Grygoruk A, Yee SK, Shyer A, Ackerson LC, Maidment NT, Meinertzhagen IA, Hovemann BT, Krantz DE. A glial variant of the vesicular monoamine transporter is required to store histamine in the Drosophila visual system. Plos Genetics. 4: e1000245. PMID 18989452 DOI: 10.1371/Journal.Pgen.1000245  0.822
2008 Fei H, Grygoruk A, Brooks ES, Chen A, Krantz DE. Trafficking of vesicular neurotransmitter transporters. Traffic (Copenhagen, Denmark). 9: 1425-36. PMID 18507811 DOI: 10.1111/J.1600-0854.2008.00771.X  0.829
2007 Romero-Calderón R, Shome RM, Simon AF, Daniels RW, DiAntonio A, Krantz DE. A screen for neurotransmitter transporters expressed in the visual system of Drosophila melanogaster identifies three novel genes. Developmental Neurobiology. 67: 550-69. PMID 17443808 DOI: 10.1002/Dneu.20342  0.489
2007 Fei H, Karnezis T, Reimer RJ, Krantz DE. Membrane topology of the Drosophila vesicular glutamate transporter. Journal of Neurochemistry. 101: 1662-71. PMID 17394549 DOI: 10.1111/J.1471-4159.2007.04518.X  0.717
2007 Sang TK, Chang HY, Lawless GM, Ratnaparkhi A, Mee L, Ackerson LC, Maidment NT, Krantz DE, Jackson GR. A Drosophila model of mutant human parkin-induced toxicity demonstrates selective loss of dopaminergic neurons and dependence on cellular dopamine. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 27: 981-92. PMID 17267552 DOI: 10.1523/Jneurosci.4810-06.2007  0.631
2007 Falcón-Pérez JM, Romero-Calderón R, Brooks ES, Krantz DE, Dell'Angelica EC. The Drosophila pigmentation gene pink (p) encodes a homologue of human Hermansky-Pudlak syndrome 5 (HPS5). Traffic (Copenhagen, Denmark). 8: 154-68. PMID 17156100 DOI: 10.1111/J.1600-0854.2006.00514.X  0.593
2006 Simon AF, Liang DT, Krantz DE. Differential decline in behavioral performance of Drosophila melanogaster with age. Mechanisms of Ageing and Development. 127: 647-51. PMID 16616306 DOI: 10.1016/J.Mad.2006.02.006  0.31
2006 Park SK, George R, Cai Y, Chang HY, Krantz DE, Friggi-Grelin F, Birman S, Hirsh J. Cell-type-specific limitation on in vivo serotonin storage following ectopic expression of the Drosophila serotonin transporter, dSERT. Journal of Neurobiology. 66: 452-62. PMID 16470720 DOI: 10.1002/Neu.20222  0.401
2006 Krantz DE. Vesicular monogamy? Neuron. 49: 1-2. PMID 16387631 DOI: 10.1016/j.neuron.2005.12.013  0.458
2006 Romero-Calderón R, Krantz DE. Transport of polyamines in Drosophila S2 cells: kinetics, pharmacology and dependence on the plasma membrane proton gradient. The Biochemical Journal. 393: 583-9. PMID 16248856 DOI: 10.1042/Bj20050981  0.42
2006 Chang HY, Grygoruk A, Brooks ES, Ackerson LC, Maidment NT, Bainton RJ, Krantz DE. Overexpression of the Drosophila vesicular monoamine transporter increases motor activity and courtship but decreases the behavioral response to cocaine. Molecular Psychiatry. 11: 99-113. PMID 16189511 DOI: 10.1038/sj.mp.4001742  0.824
2006 Simon AF, Chang HY, Romero-Calderon R, Ackerson LC, Maidment NT, Krantz DE. Drosophila models of vesicular transport function Acta Biomedica De L'Ateneo Parmense. 77: 34-36.  0.327
2005 Greer CL, Grygoruk A, Patton DE, Ley B, Romero-Calderon R, Chang HY, Houshyar R, Bainton RJ, Diantonio A, Krantz DE. A splice variant of the Drosophila vesicular monoamine transporter contains a conserved trafficking domain and functions in the storage of dopamine, serotonin, and octopamine. Journal of Neurobiology. 64: 239-58. PMID 15849736 DOI: 10.1002/Neu.20146  0.831
2004 Daniels RW, Collins CA, Gelfand MV, Dant J, Brooks ES, Krantz DE, DiAntonio A. Increased expression of the Drosophila vesicular glutamate transporter leads to excess glutamate release and a compensatory decrease in quantal content. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 24: 10466-74. PMID 15548661 DOI: 10.1523/Jneurosci.3001-04.2004  0.683
2001 Krantz DE. Nerve terminals contacting a monoaminergic neuron. Molecular Psychiatry. 6: 255. PMID 11326289 DOI: 10.1038/Sj.Mp.4000877  0.311
2001 Waites CL, Mehta A, Tan PK, Thomas G, Edwards RH, Krantz DE. An acidic motif retains vesicular monoamine transporter 2 on large dense core vesicles. The Journal of Cell Biology. 152: 1159-68. PMID 11257117 DOI: 10.1083/Jcb.152.6.1159  0.743
2000 Sulzer D, Bogulavsky J, Larsen KE, Behr G, Karatekin E, Kleinman MH, Turro N, Krantz D, Edwards RH, Greene LA, Zecca L. Neuromelanin biosynthesis is driven by excess cytosolic catecholamines not accumulated by synaptic vesicles. Proceedings of the National Academy of Sciences of the United States of America. 97: 11869-74. PMID 11050221 DOI: 10.1073/Pnas.97.22.11869  0.532
2000 Pothos EN, Larsen KE, Krantz DE, Liu Y, Haycock JW, Setlik W, Gershon MD, Edwards RH, Sulzer D. Synaptic vesicle transporter expression regulates vesicle phenotype and quantal size. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 20: 7297-306. PMID 11007887 DOI: 10.1523/Jneurosci.20-19-07297.2000  0.634
2000 Krantz DE, Waites C, Oorschot V, Liu Y, Wilson RI, Tan PK, Klumperman J, Edwards RH. A phosphorylation site regulates sorting of the vesicular acetylcholine transporter to dense core vesicles. The Journal of Cell Biology. 149: 379-96. PMID 10769030 DOI: 10.1083/Jcb.149.2.379  0.797
1999 Liu Y, Krantz DE, Waites C, Edwards RH. Membrane trafficking of neurotransmitter transporters in the regulation of synaptic transmission. Trends in Cell Biology. 9: 356-63. PMID 10461189 DOI: 10.1016/S0962-8924(99)01605-0  0.79
1998 Tan PK, Waites C, Liu Y, Krantz DE, Edwards RH. A leucine-based motif mediates the endocytosis of vesicular monoamine and acetylcholine transporters. The Journal of Biological Chemistry. 273: 17351-60. PMID 9651318 DOI: 10.1074/Jbc.273.28.17351  0.774
1998 Jeng CJ, McCarroll SA, Martin TFJ, Floor E, Adams J, Krantz D, Butz S, Edwards R, Schweitzer ES. Thy-1 is a component common to multiple populations of synaptic vesicles Journal of Cell Biology. 140: 685-698. PMID 9456327 DOI: 10.1083/Jcb.140.3.685  0.574
1997 Krantz DE, Peter D, Liu Y, Edwards RH. Phosphorylation of a vesicular monoamine transporter by casein kinase II. The Journal of Biological Chemistry. 272: 6752-9. PMID 9045708 DOI: 10.1074/Jbc.272.10.6752  0.504
1996 Liu Y, Waites C, Krantz D, Tan P, Edwards RH. Molecular analysis of neurotransmitter transport into secretory vesicles. Cold Spring Harbor Symposia On Quantitative Biology. 61: 747-58. PMID 9246500  0.784
1996 Liu Y, Peter D, Merickel A, Krantz D, Finn JP, Edwards RH. A molecular analysis of vesicular amine transport. Behavioural Brain Research. 73: 51-8. PMID 8788477 DOI: 10.1016/0166-4328(96)00069-1  0.653
1996 Peter D, Jimenez J, Liu Y, Merickel A, Krantz D, Edwards RH. Drug interactions with vesicular amine transport. Nida Research Monograph. 161: 176-200. PMID 8784851  0.429
1990 Krantz DE, Zipursky SL. Drosophila chaoptin, a member of the leucine-rich repeat family, is a photoreceptor cell-specific adhesion molecule. The Embo Journal. 9: 1969-77. PMID 2189727 DOI: 10.1002/J.1460-2075.1990.Tb08325.X  0.582
1988 Reinke R, Krantz DE, Yen D, Zipursky SL. Chaoptin, a cell surface glycoprotein required for Drosophila photoreceptor cell morphogenesis, contains a repeat motif found in yeast and human. Cell. 52: 291-301. PMID 3124963 DOI: 10.1016/0092-8674(88)90518-1  0.598
1988 Van Vactor D, Krantz DE, Reinke R, Zipursky SL. Analysis of mutants in chaoptin, a photoreceptor cell-specific glycoprotein in Drosophila, reveals its role in cellular morphogenesis. Cell. 52: 281-90. PMID 2449286 DOI: 10.1016/0092-8674(88)90517-X  0.736
Show low-probability matches.