Biology Department Faculty

Charles Hoffman

Professor & Department Chair

Department

Biology

Research

My laboratory conducts molecular genetic and chemical genetic research using the fission yeastÌýSchizosaccharomyces pombe.ÌýInitially, we studied how extracellular glucose triggers repression of transcription of theÌýÆ’bp1Ìýgene. Combining classical yeast genetics with molecular biology, we identified genes required for both repression and derepression ofÌýÆ’bp1Ìýtranscription, including almost all of the genes of the cyclic AMP (cAMP) signaling pathway including the Git2 adenylyl cyclase that produces cAMP. Additional studies showed a role for the Cgs2 phosphodiesterase that hydrolyzes cAMP to AMP. In addition, we identified control elements upstream from theÌýfbp1Ìýpromoter that are bound by transcriptional activators.

Our work with theÌýS. pombeÌýcAMP pathway allowed us to develop small molecule screening platforms in which we express proteins from mammals or pathogens involved in cyclic nucleotide metabolism. Cells that express theÌýÆ’bp1-ura4Ìýreporter can be used in high throughput screens (HTSs) to identify compounds that inhibit cyclic nucleotide phosphodiesterases (PDEs). PDEs are important drug targets and the compounds we identify could be developed into drugs to treat a variety of conditions including some types of cancer, as well as a large number of inflammatory and neurological diseases and even HIV infection. We have completed HTSs for PDE4, PDE7, PDE8, and PDE11 inhibitors. The compounds identified in these screens are remarkable with respect to their biological activity in mammalian cell-based assays given that they had not yet been subjected to medicinal chemistry to enhance their physicochemical and pharmacokinetic properties. This work led to the discovery of four selective PDE11 inhibitors, including BC11-38, that is commercially available for use in studying the role of PDE11 in biological processes. Currently, we are collaborating with a medicinal chemist and a neuroscientist to develop brain-permeable PDE11 inhibitors with the potential to treat age-related cognitive decline.

Cells that express either theÌýÆ’bp1-GFPÌýorÌýÆ’bp1-luciferase reporter can be used to detect inhibitors of mammalian adenylyl cyclases or the human GNAS Gα that stimulates the transmembrane cyclases. Our strain collection includes strains expressing each of the 10 mammalian adenylyl cyclases as well as wild-type and mutationally-activated forms of the human GNAS Gα. A recent screen of ~125,000 compounds carried out at the NCATS (National Center for Advancing Translational Sciences) screening facility identified a collection of potential adenylyl cyclase inhibitors that are cell permeable. Further characterization of these compounds is underway.

Most recently, we returned to the PDE world with a focus on PDEs from parasites or related organisms, including the blood flukeÌýSchistosoma mansoni, the model organism nematodeÌýCaenorhabditis elegans, and the apicomplexan parasitesÌýToxoplasma gondii,ÌýCryptosporidium parvum, andÌýPlasmodium falciparum. Our collection of inhibitors from the screens against mammalian PDEs are being used to identify ones that are also effective against these parasite PDEs. The goal of this research is to determine whether inhibition of specific PDEs from these organisms might have a therapeutic benefit to treat infections, thus warranting high throughput screens for more effective and selective inhibitors of a specific parasitic PDE that could be developed into drugs.

Selected Publications

  • Tsuruta Y, Senmatsu S, Hana Oe H, Hoffman CS, Hirota K (2024). Metabolic stress-induced long ncRNA transcription governs the formation of meiotic DNA breaks in the fission yeast fbp1 gene.Ìý PLoS One. 2024. In press.
  • Mahmood SU, Lozano Gonzalez M, Tummalapalli S, Eberhard J, Ly J,ÌýHoffman CS, Kelly MP, Gordon J, Colussi D, Childers W, Rotella DP. (2023). . J Med Chem2023 Nov 9;66(21):14597-14608.Ìýdoi: 10.1021/acs.jmedchem.3c01088.ÌýEpub 2023 Oct 20
  • Lera-Ramírez M, Bähler J, Mata J, Rutherford K, Hoffman CS, Lambert S, Oliferenko S, Martin SG, Gould KL, Du LL, Sabatinos SA, Forsburg SL, Nielsen O, Nurse P, Wood V. (2023). Genetics. 2023 Sep 27:iyad143.doi: 10.1093/genetics/iyad143.
  • Hoffman C.S. (2022) ÌýFront. Pharmacol. 12:833156. doi: 10.3389/fphar.2021.833156Ìý
  • Domin, M. and Hoffman C.S. (2022). .ÌýMethods in Molecular Biology: cAMP Signaling. Springer Humana Press
  • Koda W, Senmatsu S, Abe T, Hoffman CS, Hirota K. (2021). ÌýNucleic Acids Res. 2021 Sep 6:gkab758. doi: 10.1093/nar/gkab758.Ìý
  • Senmatsu, S, Asada, R, Oda, A, Hoffman, CS, Ohta, K, Hirota, K (2021).ÌýÌýCommun Biol Mar 5;4(1):295. doi: 10.1038/s42003-021-01798-8.
  • Eberhard, J; Hoffman, CS (2021). cAMP export by the fission yeastÌýSchizosaccharomycesÌýpombe. microPublication Biology.Ìý.
  • Munday JC, Kunz S, Kalejaiye TD, Siderius M, Schroeder S, Paape D, Alghamdi AH, Abbasi Z, Huang SX, Donachie AM, William S, Sabra AN, Sterk GJ, Botros SS, Brown DG,ÌýHoffman CS, Leurs R, de Koning HP. (2020).ÌýÌýPLoS Negl Trop Dis. 2020 Jul 30;14(7):e0008447. doi: 10.1371/journal.pntd.0008447. eCollection 2020 Jul.
  • Gabriele VR, Shvonski A, Hoffman CS, Giersig M, Herczynski A, Naughton MJ, Kempa K. (2020). Phys. Rev. B Jun;101(6-1):062415. doi: 10.1103/PhysRevE.101.062415.
  • Getz RA, Kwak G, Cornell S, Mbugua S, Eberhard J, Huang SX, Abbasi Z, de Medeiros AS, Thomas R, Bukowski B, Dranchak PK, Inglese J, Hoffman CS. (2019). Cell Signal. Apr 24;60:114-121. doi: 10.1016/j.cellsig.2019.04.010.
  • Senmatsu S, Asada R, Abe T, Hoffman CS, Ohta K, Hirota K.Ìý (2019). lncRNA transcriptional initiation induces chromatin remodeling within a limited range in the fission yeastÌýfbp1Ìýpromoter. .
  • Umeda M, Tsunekawa C, Senmatsu S, Asada R, Abe T, Ohta K, Hoffman CS, Hirota K. (2018). Histone-chaperone Asf1 is required for the establishment of repressive chromatin inÌýSchizosaccharomyces pombe fbp1Ìýgene repression.
  • Asada, R, Umeda, M, Adachi, A, Senmatsu, S, Abe, T, Iwasaki, H, Ohta, K, Hoffman, C, Hirota, K. (2017). .ÌýÌý2017 Sep 19;45(16):9361-9371. doi: 10.1093/nar/gkx555
  • Adachi A, Senmatsu S, Asada R, Abe T, Hoffman CS, Ohta K, Hirota K. (2017). . Genes Genet Syst. 2017 Jun 30. doi: 10.1266/ggs.17-00018.
  • Medeiros, A.S., Wyman, A., Alaamery, M., Allain, C., Ivey, F.D., Wang, L., Le, H., Morken, J., Habara, A., Le, C., Cui, S., Lerner, A., Hoffman, C.S.Ìý(2017).Ìý. Cellular Signalling. 40:73-80. doi:Ìýhttps://doi.org/10.1016/j.cellsig.2017.08.011
  • Fantes P.A. and Hoffman C.S. (2016). . Genetics, 203:621-9. doi: 10.1534/genetics.116.189407
  • Takemata N, Oda A, Yamada T, Galipon J, Miyoshi T, Suzuki Y, Sugano S, Hoffman CS, Hirota K, Ohta K. (2016). . Nucleic Acids Res.Ìý44:5174-89. doi: 10.1093/nar/gkw142
  • Xu C, Wyman AR, Alaamery MA, Argueta SA, Ivey FD, Meyers JA, Lerner A, Burdo TH, Connolly T, Hoffman CS, Chiles TC. (2016). . Int Immunopharmacol. 2016 Sep;38:223-32. doi: 10.1016/j.intimp.2016.06.004
  • Hoffman, C.S., Wood, V. and Fantes P.A (2015) 2015 Oct;201(2):403-23. doi: 10.1534/genetics.115.181503.
  • de Medeiros A.S. and Hoffman C.S. (2015) . Methods Mol Biol. 2015;1294:181-90. doi: 10.1007/978-1-4939-2537-7_14.
  • de Medeiros A.S., Kwak G., Vanderhooft J., Rivera S., Gottlieb R., and Hoffman C.S. (2015) Methods Mol Biol.1263:77-91. doi: 10.1007/978-1-4939-2269-7_6.
  • Asada R, Takemata N,ÌýHoffman CS, Ohta K, Hirota K. (2014)Ìý.ÌýMol Cell Biol. pii: MCB.00924-14. [Epub ahead of print]ÌýPMID:25535331
  • Mudge D.K., Yang F., Currie B.M., Kim J.M., Yeda K., Bashyakarla V.K., Ivey F.D., and Hoffman C.S. (2014). . Eukaryot Cell. 2014 Feb;13(2):202-8. doi: 10.1128/EC.00277-13.
  • Demirbas, D., Wyman, A.R., Shimizu-Albergine, M., Cakici, O., Beavo, J.A., and Hoffman, C.S. (2013). . PLoS One. 2013;8(8):e71279. doi: 10.1371/journal.pone.0071279.
  • de Medeiros, A.S., Magee, A., Nelson, K., Friedberg, L., Trocka, K., and Hoffman, C.S. (2013). . Biochem Soc Trans. 2013 Dec 1;41(6):1692-5. doi: 10.1042/BST20130159.
  • Ceyhan O., Birsoy K., and Hoffman C.S. 2012. , Chemistry & Biology, 19:155-163.
  • Mudge D.K., Hoffman C.A., Lubinski T.J., and Hoffman C.S. 2012. , Current Genetics, 58: 59-64.
  • Didem Demirbas, Ozge Ceyhan, Arlene R. Wyman and Charles S. Hoffman 2011. , Handbook of Experimental Pharmacology (Houslay, Francis, and Conti eds.) Phosphodiesterases as Drug Targets 2011 (204): 135-149.
  • Demirbas, D., Ceyhan, O., Wyman, A.R., Ivey, F.D., Allain, C., Wang, L.,Ìý Sharuk, M.N., Francis, S.H., and Hoffman, C.S. 2011. . Cellular Signalling. 23(3):594-601. PubMed
  • Ivey, F.D., Taglia, F.X., Yang, F., Lander, M.M., Kelly, D.A., and Hoffman, C.S. 2010. . Eukaryotic Cell 9: 626–633. PubMed
  • Alaamery, M.A., Wyman, A.R., Ivey, F.D., Allain, C., Demirbas, D., Wang, L., Ceyhan, O., and Hoffman, C.S. 2010. . Journal of Biomolecular Screening 15:359–367. PubMed
  • Roux, A.E., Leroux, A., Alaamery, M.A., Hoffman, C.S., Chartrand, P., Ferbeyre, G., and Rokeach, L.A. 2009. . PLoS GeneticsÌý5(3): e1000408. PubMed
  • Hirota, K., Miyoshi, T., Kugou, K., Hoffman, C.S., Shibata, T., and Ohta, K. 2008. . Nature 456: 130–134. PubMed
  • Leem, Y.-E., Ripmaster, T., Kelly, F., Ebina, H., Heincelman, M., Zhang, K., Grewal, S.I.S., Hoffman, C. S., and Levin, H. L. 2008. . Molecular Cell 30: 98–107. PubMed
  • Alaamery, M.A., and Hoffman, C.S. 2008. . Genetics 178: 1927–36.
  • Ivey, F.D., Wang, L., Demirbas, D., Allain, C., Hoffman, C.S. 2008. . Journal of Biomolecular Screening 13: 62–71. PubMed
  • Hoffman, C.S. 2007. . Science's STKE 370: 3. PubMed
  • Kao, R.S., Morreale, E., Wang, L., Ivey, F.D., Hoffman, C.S. 2006. . Genetics 173: 49–61. PubMed
  • Hoffman, R.L., and Hoffman, C.S. 2006. . Current Genetics 49: 414–420.
  • PubMedWang, L., Griffiths, K., Zhang, Y.H., Ivey, F.D., Hoffman, C.S. 2005. . Genetics 171: 1523–1533. PubMed
  • Ivey, F.D., and Hoffman, C.S. 2005. . Proceedings of the National Academy of Sciences of the USA 102: 6108–6113. PubMed
  • Hoffman, C.S. 2005. . Eukaryotic Cell 4: 495–503.
  • Hoffman, C.S. 2005. . Biochemical Society Transactions 33: 257–60. PubMed
  • Stiefel, J., Wang L., Kelly, D.A., Janoo, R.T., Seitz, J., Whitehall, S.K., Hoffman, C.S. 2004. . Eukaryotic Cell 3: 610–9. PubMed
  • Wang, L., Kao, R., Ivey, F.D., Hoffman, C.S. 2004. . Methods 33: 199–205. PubMed
  • Hirota, K., Hasemi, T., Yamada, T., Mizuno, K.I., Hoffman, C.S., Shibata, T., Ohta, K. 2004. . Nucleic Acids Research 32: 855–62. PubMed
  • Hirota, K., Hoffman, C.S., Shibata, T., Ohta, K. 2003. . Genetics 165: 505–15. PubMed
  • Yang, P., Du, H., Hoffman, C.S., Marcus, S. 2003. . Molecular Genetics and Genomics 269: 116–25. PubMed
  • Greenall, A., Hadcroft, A.P., Malakasi, P., Jones, N., Morgan, B.A., Hoffman, C.S., Whitehall, S.K. 2002. . Molecular Biology of the Cell 13: 2977–89. PubMed
  • Schadick, K., Fourcade, H.M., Boumenot, P., Seitz, J.J., Morrell, J.L., Chang, L., Gould, K.L., Partridge, J.F., Allshire, R.C., Kitagawa, K., Hieter, P., and Hoffman, C.S. 2002. . Eukaryotic Cell 1: 558–567. PubMed
  • Ivey, F.D., and Hoffman, C.S. 2002. . Developmental Cell 3: 154–155. PubMed
  • Kelly, D.A., and Hoffman, C.S. 2002. . Biotechniques 33: 978–982. PubMed
  • Takagi, T., Cho, E.-J., Janoo, R.T.K., Polodny, V., Takase, Y., Keogh, M.-C., Woo, S., Fresco-Cohen, L.D., Hoffman, C.S., and Buratowski, S. 2002. . Eukaryotic Cell 1: 448–457. PubMed
  • Landry, S., and Hoffman, C.S. 2001. . Genetics 157: 1159–1168.
  • Janoo, R.T.K., Neely, L.A., Braun, B.R., Whitehall, S.K., and Hoffman, C.S. 2001. . Genetics 157: 1205–1215.
  • Neely, L.A., and Hoffman, C.S. 2000. . Molecular and Cellular Biology 20: 6426–6434.
  • Welton, R.M., and Hoffman, C.S. 2000. . Genetics 156: 513–521.
  • Landry, S., Pettit, M.T., Apolinario, E., and Hoffman, C.S. 2000. . Genetics 154: 1463–1471.
  • Hoffman, C.S., and Welton, R. 2000. . Biotechniques 28: 532–6, 538, 540.
  • Dal Santo, P., Blanchard, B., and Hoffman, C.S. 1996. . Journal of Cell Science 109: 1919–1925.
  • Jin, M., Fujita, M., Culley, B.M., Apolinario, E., Yamamoto, M., Maundrell, K., and Hoffman, C.S. 1995. . Genetics 140: 457–467.
  • Nocero, M., Isshiki, T., Yamamoto, M., and Hoffman, C.S. 1994. . Genetics 138: 39–45.
  • Hoffman, C.S., and Winston, F. 1991. . Genes and Development 5: 561–571.

The Paparazzi of Pombe

Check out my photo album of the .

I also have Photo Albums for:

  • Ìýheld in Edinburgh in September 1999.
  • held in Kyoto in March 2002
  • held in Worcester, Mass. in July 2003
  • held in San Diego in August 2004
  • held in Miami, FL in November 2005
  • held in Copenhagen in June 2007

Along with Facebook groups for the , the , the (°¬¿ÉÖ±²¥ USA 2011; this group includes photo albums from all of the previous international meetings),Ìýand theÌýÌý(London 2013), theÌýÌý(Kobe 2015), the (Banff 2017), and the Tenth International Fission Yeast Meeting (Barcelona 2019).

If you have any pictures that you would like to add to these albums, please email them to me or directly add pictures to the Facebook groups.

For other pombe informaton on the web, the best place to start is .