Publications

Publications

  • 39. Assignment of chlorophyll d in the ChlD1 site of the electron transfer chain of far-red light acclimated photosystem II supported by MCCE binding calculations

    Gisriel, C.*†, Ranepura, G.*, Brudvig, G., Gunner, M. (2024) BBA Bioenergetics. 1865 (4) 149496. DOI: 10.1016/j.bbabio.2024.149496

  • 38. Mutation-induced shift of the photosystem II active site reveals insight into conserved water channels

    Flesher, D.*, Liu, J., Wang, J., Gisriel, C., Yang, K., Batista, V., Debus, R.†, Brudvig, G.† (2024) Journal of Biological Chemistry, 300 (7) 107475. DOI: 10.1016/j.jbc.2024.107475

  • 37. The structural basis for light harvesting in organisms producing phycobiliproteins

    Bryant, D.*†, Gisriel, C. (2024) The Plant Cell, In press. DOI: 10.1093/plcell/koae126

  • 36. Recent structural discoveries of photosystems I and II acclimated to absorb far-red light

    Gisriel, C.*† (2024) BBA Bioenergetics, 1865 (3) 149032 (BBA Rising Stars Issue). DOI: 10.1016/j.bbabio.2024.149032

  • 35. Structure of the antenna complex expressed during far-red light photoacclimation in Synechococcus sp. PCC 7335

    Gisriel, C.*, Shen, G., Brudvig, G., Bryant, D.† (2023) Journal of Biological Chemistry, 300 (2) 105590 (Editor’s Pick). DOI: 10.1016/j/jbc.2023.105590

  • 34. Computing the relative affinity of chlorophylls a and b to light-harvesting complex II

    Ranepura, G.*, Mao, J., Vermaas, J., Wang, J., Gisriel, C., Rongmei, W., Ortiz-Soto, J., Uddin, M., Muhamed, A., Brudvig, G., Gunner, M.† (2023) Journal of Physical Chemistry B, 127 (51) 10974-10986. DOI: 10.1021/acs.jpcb.3c06273

  • 33. Molecular diversity and evolution of far-red light-acclimated photosystem I

    Gisriel, C.*†, Bryant, D., Brudvig, G., Cardona, T.† (2023) Frontiers in Plant Science, 14. DOI: 10.3389/fpls.2023.1289199

  • 32. Two-dimensional electronic spectroscopy of the far-red-light photosystem II reaction center

    Silori, Y.*, Willow, R., Nguyen, H., Shen, G., Song, Y., Gisriel, C., Brudvig, G., Bryant, D., Ogilvie, J.† (2023) Journal of Physical Chemistry Letters, 14, 10300-10308. DOI: 10.1021/acs.jpclett.3c02604

  • 31. Structural comparison of allophycocyanin variants reveals the molecular basis for their spectral differences

    Gisriel, C.*, Elias, E.*, Shen, G., Soulier, N., Brudvig, W., Croce, R.†, Bryant, D.† (2023) Photosynthesis Research, In press. DOI: 10.1007/s11120-023-01048-4

  • 30. A quantitative assessment of (bacterio)chlorophyll assignments in the cryo-EM structure of the Chloracidobacterium thermophilum reaction center

    Gisriel, C.*, Flesher, D.*, Long, Z., Liu, J., Wang, J., Bryant, D., Batista, V., Brudvig, G.† (2023) Photosynthesis Research, In press. DOI: 10.1007/s11120-023-01047-5

  • 29. The cards you have been dealt: How an intertidal green macroalga absorbs blue-green light

    Gisriel, C.*† (2023) Structure, 31 (10) 1145-1147. DOI: 10.1016/j.str.2023.08.017

  • 28. Helical allophycocyanin nanotubes absorb far-red light in a thermophilic cyanobacterium

    Gisriel, C.*†, Elias, E., Shen, G., Soulier, N., Flesher, D., Gunner, M., Brudvig, G.†, Croce, R.†, Bryant, D.† (2023) Science Advances, 9 (12). DOI: 10.1126/sciadv.adg0251

  • 27. Structure of a dimeric photosystem II complex from a cyanobacterium acclimated to far-red light

    Gisriel, C.*†, Shen, G., Flesher, D., Kurashov, V., Golbeck, J., Brudvig, G., Amin, M., Bryant, D.† (2023) Journal of Biological Chemistry, 299 (1) 102815. DOI: 10.1016/j.jbc.2022.102815

  • 26. How to correct relative voxel scale factors for calculations of vector-difference Fourier maps in cryo-EM

    Wang, J.*†, Liu, J., Gisriel, C., Wu, S., Maschietto, F., Flesher, D., Lolis, E., Lili, G., Brudvig, G., Xiong, Y., Batista, V. (2022) Journal of Structural Biology, 214 (4) 107902. DOI: 10.1016/j.jsb.2022.107902

  • 25. Molecular evolution of far-red light-acclimated photosystem II

    Gisriel, C.*, Cardona, T.*, Bryant, D., Brudvig, G.† (2022) Microorganisms, 10 (7) 1270. DOI: 10.3390/microorganisms10071270

  • 24. Glycerol binding at the narrow channel of photosystem II stabilizes the low-spin S2 state of the oxygen-evolving complex

    Flesher, D.*, Liu, J.*, Wiwczar, J.*, Reiss, K., Yang, K., Wang, J., Askerka, M., Gisriel, C., Batista, V., Brudvig, G.† (2022) Photosynthesis Research, 152 (2) 167-175. DOI: 10.1007/s11120-022-00911-0

  • 23. Comparison of PsbQ and Psb27 in photosystem II provides insight into their roles

    Gisriel, C.*, Brudvig, G.† (2022) Photosynthesis Research, 152 (2) 177-191. DOI: 10.1007/s11120-021-00888-2

  • 22. Changes in supramolecular organisation of cyanobacterial thylakoid membrane complexes in response to far-red light photoacclimation

    MacGregor-Chatwin, C.*, Nürnberg, D.*, Jackson, P.*, Vasilev, C., Hitchcock, A., Ho, M-Y., Shen, G., Gisriel, C., Wood, W., Mahbub, M., Selinger, M., Johnson, M., Dickman, M., Rutherford, W., Bryant, D., Hunter, N.† (2022) Science Advances, 8 (6). DOI: 10.1126/sciadv.abj4437

  • 21. Structure of a monomeric photosystem II core complex from a cyanobacterium acclimated to far-red light reveals the functions of chlorophylls d and f

    Gisriel, C.*, Shen, G., Ho, M-Y., Kurashov, V., Flesher, D., Wang, J., Armstrong, W., Golbeck, J., Gunner, M., Vinyard, D., Debus, R., Brudvig, G.†, Bryant, D.† (2022) Journal of Biological Chemistry, 298 (1) 101424. DOI: 10.1016/j.jbc.2021.101424

  • 20. Structure of photosystem I-ferredoxin complex from a marine cyanobacterium provides insights into far-red light photoacclimation

    Gisriel, C.*, Flesher, D.*, Shen, G., Wang, J., Ho, M-Y., Brudvig, G.†, Bryant, D.† (2022) Journal of Biological Chemistry, 298 (1) 101408. DOI: 10.1016/j.jbc.2021.101408

  • 19. High-resolution cryo-EM structure of photosystem II from the mesophilic cyanobacterium, Synechocystis sp. PCC 6803

    Gisriel, C.*, Wang, J., Liu, J., Flesher, D., Reiss, K., Huang, H-L., Yang, K., Armstrong, W., Gunner, M., Batista, V., Debus, R., Brudvig, G.† (2022) Proceedings of the National Academy of Sciences U.S.A., 119 (1) e2116765118. DOI: 10.1073/pnas.2116765118

  • 18. The PshX subunit of the photochemical reaction center from Heliobacterium modesticaldum acts as a low-energy antenna

    Orf, G.*, Gisriel, C., Granstrom, J., Baker, P., Redding, K.† (2022) Photosynthesis Research, 151 (1) 11-30. DOI: 10.1007/s11120-021-00871-x

  • 17. Heterogeneous composition of oxygen-evolving complexes in crystal structures of dark-adapted photosystem II

    Wang, J.*†, Gisriel, C., Reiss, K., Huang, H-L., Armstrong, W., Brudvig, G., Batista, V. (2021) Biochemistry, 60 (45) 3374-3384. DOI: 10.1021/acs.biochem.1c00611

  • 16. Quantitative assessment of chlorophyll types in cryo-EM maps of photosystem I acclimated to far-red light

    Gisriel, C.*†, Huang, H-L.*, Reiss, K., Flesher, D., Batista, V., Bryant, D., Brudvig, G., Wang, J. (2021) BBA Advances, 1, 100019. DOI: 10.1016/j.bbadva.2021.100019

  • 15. Recent advances in the structural diversity of reaction centers

    Gisriel, C.*†, Azai, C., Cardona, T. (2021) Photosynthesis Research, 149 (3), 329-343. DOI: 10.1007/s11120-021-00857-9

  • 14. Interfacing photosystem I reaction centers with a porous antimony-doped tin oxide electrode to perform light-driven redox chemistry

    Singh, A.*, Mandal, S., Chen, Shaojiang, Liu, M., Gisriel, C., Carey, A., Yan, H., Seo, D-K., Lin, S., Woodbury, N. W.† (2021) ACS Applied Electronic Materials, 3 (5), 2087-2096. DOI: 10.1021/acsaelm.1c00101

  • 13. Breaking the red-limit: Efficient trapping of long-wavelength excitations in chlorophyll f-containing Photosystem I

    Tros, M.*, Mascoli, V.*, Shen, G., Ho, M-Y., Bersanini, L., Gisriel, C., Bryant, D., Croce, R.† (2021) Chem, 7 (1), 155-173. DOI: 10.1016/j.chempr.2020.10.024

  • 12. Methods for Crystallization and Structural Determination of M-T7 Protein from Myxoma Virus

    Gisriel, C.*, Fromme, P., Martin-Garcia, J.† (2021) in: “Viruses as Therapeutics”, Volume 2225 on Methods in Molecular Biology (Alexandra Lucas, eds. in chief Henry Rodgers and Vishnu Prakash) Springer Nature, New York, New York, pp. 125-162. DOI: 10.1007/978-1-0716-1012-1

  • 11. Cryo-EM structure of monomeric Photosystem II from Synechocystis sp. PCC 6803 lacking the water-oxidation complex

    Gisriel, C.*, Zhou, K., Huang, H-L., Debus, R., Xiong, Y., Brudvig, G.† (2020) Joule, 4 (10), 2131-2148. DOI: 10.1016/j.joule.2020.07.016

  • 10. Identification of a Na+-binding site near the oxygen-evolving complex of spinach photosystem II

    Wang, J.*†, Perez-Cruet, J., Huang, H-L., Reiss, K., Gisriel, C., Banerjee, G., Kaur, D., Ghosh, I., Dziarski, A., Gunner, M., Batista, V., Brudvig, G.† (2020). Biochemistry, 59 (30), 2823–2831. DOI: 10.1021/acs.biochem.0c00303

  • 9. Opportunities and challenges for assigning cofactors in cryo-EM density maps of chlorophyll-containing proteins

    Gisriel, C.*†, Wang, J., Brudvig, G., Bryant, D. (2020). Communications Biology, 3 (408). DOI: 10.1038/s42003-020-01139-1

  • 8. The structure of Photosystem I acclimated to far-red light illuminates an ecologically important acclimation process in photosynthesis

    Gisriel, C.*, Shen, G., Kurashov, V., Ho, M-Y., Zhang, S., Williams, D., Golbeck, J., Fromme, P., Bryant, D.† (2020). Science Advances, 6 (6). DOI: 10.1126/sciadv.aay6415

  • 7. Gordon Research Conference 2019: From the biophysics of natural and artificial photosynthesis to bioenergy conversion

    Kaur, D.*, Gisriel, C.†, Burnap, R., Fromme, P., Govindjee, G.† (2019). Current Plant Biology, 22,100129. DOI: 10.1016/j.cpb.2019.100129

  • 6. Membrane protein megahertz crystallography at the European XFEL

    Gisriel, C.*, Coe, J.*, Letrun, R., Yefanov, O., Luna-Chavez, C., Stander, N., Lisova, S., Mariani, V., Kuhn, M., Aplin, S., Grant, T., Dörner, K., Sato, T., Echelmeier, A., Cruz Villarreal, J., Hunter, M., Wiedorn, M., Knoska, J., Mazalova, V., Roy-Chowdhury, S., Yang, J.-H., Jones, A., Bean, R., Bielecki, J., Kim, Y., Mills, G., Weinhausen, B., Meza, J., Al-Qudami, N., Bajt, S., Brehm, G., Botha, S., Boukhelef, D., Brockhauser, S., Bruce, B., Coleman, M., Danilevski, C., Discianno, E., Dobson, Z., Fangohr, H., Martin-Garcia, J., Gevorkov, Y., Hauf, S., Hosseinizadeh, A., Januschek, F., Ketawala, G., Kupitz, C., Maia, L., Manetti, M., Messerschmidt, M., Michelat, T., Mondal, J., Ourmazd, A., Previtali, G., Sarrou, I., Schön, S., Schwander, P., Shelby, M., Silenzi, A., Sztuk-Dambietz, J., Szuba, J., Turcato, M., White, T., Wrona, K., Xu, C., Abdellatif, M., Zook, J., Spence, J., Chapman, H., Barty, A., Kirian, R., Frank, M., Ros, A., Schmidt, M., Fromme, R., Mancuso, A., Fromme, P.†, Zatsepin, N.† (2019). Nature Communications, 10 (1), 5021. DOI: 10.1038/s41467-019-12955-3

  • 5. Evolution of photosynthetic reaction centers: insights from the structure of the heliobacterial reaction center

    Orf, G.*, Gisriel, C.*, Redding, K.† (2018). Photosynthesis Research, 138 (1), 11-37. DOI: 10.1007/s11120-018-0503-2

  • 4. Gordon Research Conference on photosynthesis: Photosynthetic plasticity from the environment to synthetic systems

    Gisriel, C.*, Saroussi, A., Ramundo, S., Fromme, P., Govindjee, G.† (2017). Photosynthesis Research, 136 (3), 393-405. DOI: 10.1007/s11120-017-0472-x

  • 3. Structure of a symmetric photosynthetic reaction center–photosystem

    Gisriel, C.*, Sarrou, I., Ferlez, B., Golbeck, J., Redding, K., Fromme, R.† (2017). Science, 357 (6355), 1021-1025. DOI: 10.1126/science.aan5611

  • 2. Evaluating the role of a multi-heme cytochrome c in electron transfer from an electrode surface to Heliobacterium modesticaldum

    Herrera-Theut, K.*, Gisriel, C., Laureanti, J., Orf, G., Baker, P., Jones, A., Redding, K.† (2017). The FASEB Journal, 31, 913.13-913.13

  • 1. Thermodynamics of the electron acceptors in Heliobacterium modesticaldum: An exemplar of an early homodimeric type I photosynthetic reaction center

    Ferlez, B.*, Cowgill, J., Dong, W., Gisriel, C., Lin, S., Flores, M., Walters, K., Cetnar, D., Redding, K.†, Golbeck, J.† (2016). Biochemistry, 55(16), 2358-2370. DOI: 10.1021/acs.biochem.5b01320