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Dov Borovsky

TitleAffiliate
InstitutionUniversity of Colorado Denver - Anschutz Medical Campus
DepartmentSOM-BioChem&Molecular Genetics

    Collapse Bibliographic 
    Collapse selected publications
    Publications listed below are automatically derived from MEDLINE/PubMed and other sources, which might result in incorrect or missing publications. Faculty can login to make corrections and additions.
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    1. Ramos JE, Jain RG, Powell CA, Dawson WO, Gowda S, Borovsky D, Shatters RG. Crowdsourced Identification of Potential Target Genes for CTV Induced Gene Silencing for Controlling the Citrus Greening Vector Diaphorina citri. Front Physiol. 2021; 12:571826. PMID: 33897443.
      View in: PubMed
    2. Borovsky D, Kim Y, Hoffmann KH. Editorial: The Role of Peptide Hormones in Insect Physiology, Biochemistry, and Molecular Biology Processes. Front Physiol. 2021; 12:644907. PMID: 33603680.
      View in: PubMed
    3. Borovsky D, Nauwelaers S, Shatters R. Biochemical and Molecular Characterization of Pichia pastoris Cells Expressing Multiple TMOF Genes (tmfA) for Mosquito Larval Control. Front Physiol. 2020; 11:527. PMID: 32528316.
      View in: PubMed
    4. N'do S, Bayili K, Bayili B, Namountougou M, Sanou R, Ouattara A, Dabiré RK, Malone D, Ouédraogo AG, Borovsky J, Borovsky D, Diabaté A. Effect of Bacillus thuringiensis var. israelensis Sugar Patches on Insecticide Resistant Anopheles gambiae s.l. Adults. J Med Entomol. 2019 09 03; 56(5):1312-1317. PMID: 31329914.
      View in: PubMed
    5. Borovsky D, Hancock RG, Rougé P, Powell CA, Shatters RG. Juvenile hormone affects the splicing of Culex quinquefasciatus early trypsin messenger RNA. Arch Insect Biochem Physiol. 2018 Nov; 99(3):e21506. PMID: 30176073.
      View in: PubMed
    6. Borovsky D, Nauewelaers S, Powell CA, Shatters RG. Cloning, genetic engineering and characterization of TMOF expressed in Saccharomyces cerevisiae to control larval mosquitoes. J Insect Physiol. 2018 04; 106(Pt 2):134-146. PMID: 28109905.
      View in: PubMed
    7. Mahmoud SB, Ramos JE, Shatters RG, Hall DG, Lapointe SL, Niedz RP, Rougé P, Cave RD, Borovsky D. Expression of Bacillus thuringiensis cytolytic toxin (Cyt2Ca1) in citrus roots to control Diaprepes abbreviatus larvae. Pestic Biochem Physiol. 2017 Mar; 136:1-11. PMID: 28187824.
      View in: PubMed
    8. Borovsky D, Sterner A, Powell CA. CLONING AND EXPRESSING TRYPSIN MODULATING OOSTATIC FACTOR IN Chlorella desiccata TO CONTROL MOSQUITO LARVAE. Arch Insect Biochem Physiol. 2016 Jan; 91(1):17-36. PMID: 26440910.
      View in: PubMed
    9. Van Ekert E, Shatters RG, Rougé P, Powell CA, Smagghe G, Borovsky D. Cloning and expressing a highly functional and substrate specific farnesoic acid o-methyltransferase from the Asian citrus psyllid (Diaphorina citri Kuwayama). FEBS Open Bio. 2015; 5:264-75. PMID: 25893162.
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    10. Ben-Mahmoud S, Ramos JE, Shatters RG, Rougé P, Powell CA, Smagghe G, Borovsky D. Cloning and characterization of a basic cysteine-like protease (cathepsin L1) expressed in the gut of larval Diaprepes abbreviatus L. (Coleoptera: Curculionidae). J Insect Physiol. 2015 Jan; 72:1-13. PMID: 25445662.
      View in: PubMed
    11. Van Ekert E, Powell CA, Shatters RG, Borovsky D. Control of larval and egg development in Aedes aegypti with RNA interference against juvenile hormone acid methyl transferase. J Insect Physiol. 2014 Nov; 70:143-50. PMID: 25111689.
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    12. Van Ekert E, Heylen K, Rougé P, Powell CA, Shatters RG, Smagghe G, Borovsky D. Aedes aegypti juvenile hormone acid methyl transferase, the ultimate enzyme in the biosynthetic pathway of juvenile hormone III, exhibits substrate control. J Insect Physiol. 2014 May; 64:62-73. PMID: 24657668.
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    13. Levi T, Ben-Dov E, Shahi P, Borovsky D, Zaritsky A. Growth and development of Aedes aegypti larvae at limiting food concentrations. Acta Trop. 2014 May; 133:42-4. PMID: 24524949.
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    14. Fan Y, Borovsky D, Hawkings C, Ortiz-Urquiza A, Keyhani NO. Exploiting host molecules to augment mycoinsecticide virulence. Nat Biotechnol. 2012 Jan 09; 30(1):35-7. PMID: 22231090.
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    15. Zaritsky A, Ben-Dov E, Borovsky D, Boussiba S, Einav M, Gindin G, Horowitz AR, Kolot M, Melnikov O, Mendel Z, Yagil E. Transgenic organisms expressing genes from Bacillus thuringiensis to combat insect pests. Bioeng Bugs. 2010 Sep-Oct; 1(5):341-4. PMID: 21326834.
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    16. Jones G, Jones D, Li X, Tang L, Ye L, Teal P, Riddiford L, Sandifer C, Borovsky D, Martin JR. Activities of natural methyl farnesoids on pupariation and metamorphosis of Drosophila melanogaster. J Insect Physiol. 2010 Oct; 56(10):1456-64. PMID: 20541556.
      View in: PubMed
    17. Lemeire E, Borovsky D, Van Camp J, Smagghe G. Effect of ace inhibitors and TMOF on growth, development, and trypsin activity of larval Spodoptera littoralis. Arch Insect Biochem Physiol. 2008 Dec; 69(4):199-208. PMID: 18949805.
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    18. Borovsky D, Rabindran S, Dawson WO, Powell CA, Iannotti DA, Morris TJ, Shabanowitz J, Hunt DF, DeBondt HL, DeLoof A. Expression of Aedes trypsin-modulating oostatic factor on the virion of TMV: A potential larvicide. Proc Natl Acad Sci U S A. 2006 Dec 12; 103(50):18963-8. PMID: 17148608.
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    19. Borovsky D, Meola SM. Biochemical and cytoimmunological evidence for the control of Aedes aegypti larval trypsin with Aea-TMOF. Arch Insect Biochem Physiol. 2004 Mar; 55(3):124-39. PMID: 14981657.
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    20. Borovsky D. Trypsin-modulating oostatic factor: a potential new larvicide for mosquito control. J Exp Biol. 2003 Nov; 206(Pt 21):3869-75. PMID: 14506222.
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    21. Borovsky D. Biosynthesis and control of mosquito gut proteases. IUBMB Life. 2003 Aug; 55(8):435-41. PMID: 14609198.
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    22. Nauen R, Sorge D, Sterner A, Borovsky D. TMOF-like factor controls the biosynthesis of serine proteases in the larval gut of Heliothis virescens. Arch Insect Biochem Physiol. 2001 Aug; 47(4):169-80. PMID: 11462221.
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    23. Gelman DB, Borovsky D. Aedes aegypti TMOF modulates ecdysteroid production by prothoracic glands of the gypsy moth, Lymantria dispar. Arch Insect Biochem Physiol. 2000 Oct; 45(2):60-8. PMID: 11093243.
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    24. Yan XH, De Bondt HL, Powell CC, Bullock RC, Borovsky D. Sequencing and characterization of the citrus weevil, Diaprepes abbreviatus, trypsin cDNA. Effect of Aedes trypsin modulating oostatic factor on trypsin biosynthesis. Eur J Biochem. 1999 Jun; 262(3):627-36. PMID: 10411621.
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    25. Chiou SJ, Vanden Broeck J, Janssen I, Borovsky D, Vandenbussche F, Simonet G, De Loof A. Cloning of the cDNA encoding Scg-SPRP, an unusual Ser-protease-related protein from vitellogenic female desert locusts (Schistocerca gregaria). Insect Biochem Mol Biol. 1998 Oct; 28(10):801-8. PMID: 9807226.
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    26. Borovsky D, Janssen I, Vanden Broeck J, Huybrechts R, Verhaert P, De Bondt HL, Bylemans D, De Loof A. Molecular sequencing and modeling of Neobellieria bullata trypsin. Evidence for translational control by Neobellieria trypsin-modulating oostatic factor. Eur J Biochem. 1996 Apr 01; 237(1):279-87. PMID: 8620885.
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    27. Borovsky D, Mahmood F. Feeding the mosquito Aedes aegypti with TMOF and its analogs; effect on trypsin biosynthesis and egg development. Regul Pept. 1995 Jun 27; 57(3):273-81. PMID: 7480877.
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    28. De Loof A, Bylemans D, Schoofs L, Janssen I, Spittaels K, Vanden Broeck J, Huybrechts R, Borovsky D, Hua YJ, Koolman J, et al. Folliculostatins, gonadotropins and a model for control of growth in the grey fleshfly, Neobellieria (sarcophaga) bullata. Insect Biochem Mol Biol. 1995 Jun; 25(6):661-7. PMID: 7627197.
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    29. Borovsky D, Carlson DA, Hancock RG, Rembold H, van Handel E. De novo biosynthesis of juvenile hormone III and I by the accessory glands of the male mosquito. Insect Biochem Mol Biol. 1994 May; 24(5):437-44. PMID: 8205141.
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    30. Borovsky D, Powell CA, Nayar JK, Blalock JE, Hayes TK. Characterization and localization of mosquito-gut receptors for trypsin modulating oostatic factor using a complementary peptide and immunocytochemistry. FASEB J. 1994 Mar 01; 8(3):350-5. PMID: 7908271.
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    31. Bylemans D, Borovsky D, Hunt DF, Shabanowitz J, Grauwels L, De Loof A. Sequencing and characterization of trypsin modulating oostatic factor (TMOF) from the ovaries of the grey fleshfly, Neobellieria (Sarcophaga) bullata. Regul Pept. 1994 Feb 03; 50(1):61-72. PMID: 8159807.
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    32. Borovsky D, Carlson DA, Griffin PR, Shabanowitz J, Hunt DF. Mass spectrometry and characterization of Aedes aegypti trypsin modulating oostatic factor (TMOF) and its analogs. Insect Biochem Mol Biol. 1993 Sep; 23(6):703-12. PMID: 8353526.
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    33. Mahmood F, Borovsky D. Biosynthesis of serine proteases in Lutzomyia anthophora (Diptera: Psychodidae). J Med Entomol. 1993 Jul; 30(4):683-8. PMID: 8360892.
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    34. Curto EV, Jarpe MA, Blalock JE, Borovsky D, Krishna NR. Solution structure of trypsin modulating oostatic factor is a left-handed helix. Biochem Biophys Res Commun. 1993 Jun 15; 193(2):688-93. PMID: 8512567.
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    35. Borovsky D, Carlson DA, Ujváry I. In vivo and in vitro biosynthesis and metabolism of methyl farnesoate, juvenile hormone III, and juvenile hormone III acid in the mosquito Aedes aegypti. J Med Entomol. 1992 Jul; 29(4):619-29. PMID: 1495071.
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    36. Mahmood F, Carlson DA, Borovsky D. Biosynthesis and metabolism of juvenile hormone III from methyl farnesoate by exposed corpora allata of Lutzomyia anthophora. J Med Entomol. 1992 May; 29(3):548-55. PMID: 1625305.
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    37. Mahmood F, Borovsky D. Biosynthesis of trypsinlike and chymotrypsinlike enzymes in immature Lutzomyia anthophora (Diptera: Psychodidae). J Med Entomol. 1992 May; 29(3):489-95. PMID: 1625298.
      View in: PubMed
    38. Borovsky D, Carlson DA. In vitro assay for the biosynthesis and metabolism of juvenile hormone by exposed corpora allata of Aedes aegypti (Diptera: Culicidae). J Med Entomol. 1992 Mar; 29(2):318-24. PMID: 1495050.
      View in: PubMed
    39. Borovsky D, Powell CA, Carlson DA. Development of specific RIA and ELISA to study trypsin modulating oostatic factor in mosquitoes. Arch Insect Biochem Physiol. 1992; 21(1):13-21. PMID: 1421442.
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    40. Borovsky D, Carlson DA, Griffin PR, Shabanowitz J, Hunt DF. Mosquito oostatic factor: a novel decapeptide modulating trypsin-like enzyme biosynthesis in the midgut. FASEB J. 1990 Sep; 4(12):3015-20. PMID: 2394318.
      View in: PubMed
    41. Borovsky D, Schlein Y. Trypsin and chymotrypsin-like enzymes of the sandfly Phlebotomus papatasi infected with Leishmania and their possible role in vector competence. Med Vet Entomol. 1987 Jul; 1(3):235-42. PMID: 2979536.
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    42. Borovsky D, Linley JR, Kagan J. Polycyclic aromatic compounds as phototoxic mosquito larvicides. J Am Mosq Control Assoc. 1987 Jun; 3(2):246-50. PMID: 2904948.
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