AsiaChem | Chemistry in Japan | December 2021 Volume 2 Issue 1

www.asiachem.news December 2021 | 19 33. J. W. Chin, Nature, 2017, 550, 53-60. 34. D. de la Torre and J. W. Chin, Nature Reviews Genetics, 2021, 22, 169-184. 35. M. Manandhar, E. Chun and F. E. Romesberg, Journal of the American Chemical Society, 2021, 143, 4859-4878. 36. M. A. Shandell, Z. Tan and V. W. Cornish, Biochemistry, 2021. 37. Y. Goto, A. Ohta, Y. Sako, Y. Yamagishi, H. Murakami and H. Suga, ACS Chemical Biology, 2008, 3, 120-129. 38. K. Torikai and H. Suga, Journal of the American Chemical Society, 2014, 136, 17359-17361. 39. Z. Zhang, R. Gao, Q. Hu, H. Peacock, D. M. Peacock, S. Dai, K. M. Shokat and H. Suga, ACS Central Science, 2020, 6, 1753-1761. 40. R. Okuma, T. Kuwahara, T. Yoshikane, M. Watanabe, P. Dranchak, J. Inglese, S. Shuto, Y. Goto and H. Suga, Chemistry – An Asian Journal, 2020, 15, 2631-2636. 41. Y. Yin, N. Ochi, T. W. Craven, D. Baker, N. Takigawa and H. Suga, Journal of the American Chemical Society, 2019, 141, 19193-19197. 42. C. Nitsche, T. Passioura, P. Varava, M. C. Mahawaththa, M. M. Leuthold, C. D. Klein, H. Suga and G. Otting, ACS Medicinal Chemistry Letters, 2019, 10, 168-174. 43. K. Nishio, R. Belle, T. Katoh, A. Kawamura, T. Sengoku, K. Hanada, N. Ohsawa, M. Shirouzu, S. Yokoyama and H. Suga, ChemBioChem, 2018, 19, 979-985. 44. A. Kawamura, M. Münzel, T. Kojima, C. Yapp, B. Bhushan, Y. Goto, A. Tumber, T. Katoh, O. N. F. King, T. Passioura, L. J. Walport, S. B. Hatch, S. Madden, S. Müller, P. E. Brennan, R. Chowdhury, R. J. Hopkinson, H. Suga and C. J. Schofield, Nature Communications, 2017, 8, 14773. 45. Y. Matsunaga, Nasir K. Bashiruddin, Y. Kitago, J. Takagi and H. Suga, Cell Chemical Biology, 2016, 23, 1341-1350. 46. T. Katoh and H. Suga, Journal of the American Chemical Society, 2021, 143, 18844-18848. 47. T. Katoh and H. Suga, Journal of the American Chemical Society, 2020, 142, 16518-16522. 48. C. Tsiamantas, S. Kwon, J. M. Rogers, C. Douat, I. Huc and H. Suga, Angewandte Chemie International Edition, 2020, 59, 4860-4864. 49. T. Kawakami, H. Murakami and H. Suga, Chemistry & Biology, 2008, 15, 32-42. 50. T. Kawakami, T. Ishizawa and H. Murakami, Journal of the American Chemical Society, 2013, 135, 12297-12304. 51. Y. Goto, H. Murakami and H. Suga, RNA, 2008, 14, 1390-1398. 52. T. Katoh, K. Tajima and H. Suga, Cell Chemical Biology, 2017, 24, 46-54. 53. T. Katoh, T. Sengoku, K. Hirata, K. Ogata and H. Suga, Nature Chemistry, 2020, 12, 1081-1088. 54. T. Fujino, Y. Goto, H. Suga and H. Murakami, Journal of the American Chemical Society, 2016, 138, 1962-1969. 55. T. Katoh and H. Suga, Journal of the American Chemical Society, 2018, 140, 12159-12167. 56. H. Suga, Journal of Peptide Science, 2018, 24, e3055. 57. Y. Yamagishi, I. Shoji, S. Miyagawa, T. Kawakami, T. Katoh, Y. Goto and H. Suga, Chemistry & Biology, 2011, 18, 1562-1570. 58. M. Saito, Y. Itoh, F. Yasui, T. Munakata, D. Yamane, M. Ozawa, R. Ito, T. Katoh, H. Ishigaki, M. Nakayama, S. Shichinohe, K. Yamaji, N. Yamamoto, A. Ikejiri, T. Honda, T. Sanada, Y. Sakoda, H. Kida, T. Q. M. Le, Y. Kawaoka, K. Ogasawara, K. Tsukiyama-Kohara, H. Suga and M. Kohara, Nature Communications, 2021, 12, 2654. 59. S. Imanishi, T. Katoh, Y. Yin, M. Yamada, M. Kawai and H. Suga, Journal of the American Chemical Society, 2021, 143, 5680-5684. 60. D. Hazama, Y. Yin, Y. Murata, M. Matsuda, T. Okamoto, D. Tanaka, N. Terasaka, J. Zhao, M. Sakamoto, Y. Kakuchi, Y. Saito, T. Kotani, Y. Nishimura, A. Nakagawa, H. Suga and T. Matozaki, Cell Chemical Biology, 2020, 27, 1181-1191.e1187. 61. K. Sakai, T. Passioura, H. Sato, K. Ito, H. Furuhashi, M. Umitsu, J. Takagi, Y. Kato, H. Mukai, S. Warashina, M. Zouda, Y. Watanabe, S. Yano, M. Shibata, H. Suga and K. Matsumoto, Nature Chemical Biology, 2019, 15, 598-606. 62. K. Ito, K. Sakai, Y. Suzuki, N. Ozawa, T. Hatta, T. Natsume, K. Matsumoto and H. Suga, Nature Communications, 2015, 6, 6373. 63. X. Song, L.-y. Lu, T. Passioura and H. Suga, Organic & Biomolecular Chemistry, 2017, 15, 5155-5160. 64. Y. Hayashi, J. Morimoto and H. Suga, ACS Chemical Biology, 2012, 7, 607-613. 65. T. Kawakami, T. Ishizawa, T. Fujino, P. C. Reid, H. Suga and H. Murakami, ACS Chemical Biology, 2013, 8, 1205-1214. 66. H. Hirose, T. Hideshima, T. Katoh and H. Suga, ChemBioChem, 2019, 20, 2089-2100. 67. K. Iwasaki, Y. Goto, T. Katoh, T. Yamashita, S. Kaneko and H. Suga, Journal of Molecular Evolution, 2015, 81, 210-217. 68. S. A. K. Jongkees, S. Caner, C. Tysoe, G. D. Brayer, S. G. Withers and H. Suga, Cell Chemical Biology, 2017, 24, 381-390. 69. H. Yu, P. Dranchak, Z. Li, R. MacArthur, M. S. Munson, N. Mehzabeen, N. J. Baird, K. P. Battalie, D. Ross, S. Lovell, C. K. S. Carlow, H. Suga and J. Inglese, Nature Communications, 2017, 8, 14932. 70. T. Passioura, K. Watashi, K. Fukano, S. Shimura, W. Saso, R. Morishita, Y. Ogasawara, Y. Tanaka, M. Mizokami, C. Sureau, H. Suga and T. Wakita, Cell Chemical Biology, 2018, 25, 906-915.e905. 71. T. E. McAllister, T. L. Yeh, M. I. Abboud, I. K. H. Leung, E. S. Hookway, O. N. F. King, B. Bhushan, S. T. Williams, R. J. Hopkinson, M. Münzel, N. D. Loik, R. Chowdhury, U. Oppermann, T. D. W. Claridge, Y. Goto, H. Suga, C. J. Schofield and A. Kawamura, Chemical Science, 2018, 9, 4569-4578. 72. T. Passioura, W. Liu, D. Dunkelmann, T. Higuchi and H. Suga, Journal of the American Chemical Society, 2018, 140, 11551-11555. 73. V. A. Haberman, S. R. Fleming, T. M. Leisner, A. C. Puhl, E. Feng, L. Xie, X. Chen, Y. Goto, H. Suga, L. V. Parise, D. Kireev, K. H. Pearce and A. A. Bowers, ACS Medicinal Chemistry Letters, 2021, 12, 18321839. 74. M. Nawatha, J. M. Rogers, S. M. Bonn, I. Livneh, B. Lemma, S. M. Mali, G. B. Vamisetti, H. Sun, B. Bercovich, Y. Huang, A. Ciechanover, D. Fushman, H. Suga and A. Brik, Nature Chemistry, 2019, 11, 644-652. 75. S. T. P. Tran, C. J. Hipolito, H. Suzuki, R. Xie, H. D. Kim Tuyen, P. t. Dijke, N. Terasaka, Y. Goto, H. Suga and M. Kato, Biochemical and Biophysical Research Communications, 2019, 516, 445-450. 76. Y. Huang, M. Nawatha, I. Livneh, J. M. Rogers, H. Sun, S. K. Singh, A. Ciechanover, A. Brik and H. Suga, Chemistry – A European Journal, 2020, 26, 8022-8027. 77. M. E. Otero-Ramirez, K. Matoba, E. Mihara, T. Passioura, J. Takagi and H. Suga, RSC Chemical Biology, 2020, 1, 26-34. 78. J. Johansen-Leete, T. Passioura, S. R. Foster, R. P. Bhusal, D. J. Ford, M. Liu, S. A. K. Jongkees, H. Suga, M. J. Stone and R. J. Payne, Journal of the American Chemical Society, 2020, 142, 9141-9146. 79. Q. Xie, M. M. Wiedmann, A. Zhao, I. R. Pagan, R. P. Novick, H. Suga and T. W. Muir, Chemical Communications, 2020, 56, 11223-11226. 80. K. Patel, L. J. Walport, J. L. Walshe, P. D. Solomon, J. K. K. Low, D. H. Tran, K. S. Mouradian, A. P. G. Silva, L. Wilkinson-White, A. Norman, C. Franck, J. M. Matthews, J. M. Guss, R. J. Payne, T. Passioura, H. Suga and J. P. Mackay, Proceedings of the National Academy of Sciences, 2020, 117, 26728. 81. N. K. Bashiruddin, M. Hayashi, M. Nagano, Y. Wu, Y. Matsunaga, J. Takagi, T. Nakashima and H. Suga, Proceedings of the National Academy of Sciences, 2020, 117, 31070. 82. J. M. Rogers, M. Nawatha, B. Lemma, G. B. Vamisetti, I. Livneh, U. Barash, I. Vlodavsky, A. Ciechanover, D. Fushman, H. Suga and A. Brik, RSC Chemical Biology, 2021, 2, 513-522. 83. D. J. Ford, N. M. Duggan, S. E. Fry, J. Ripoll-Rozada, S. M. Agten, W. Liu, L. Corcilius, T. M. Hackeng, R. van Oerle, H. M. H. Spronk, A. S. Ashhurst, V. Mini Sasi, J. A. Kaczmarski, C. J. Jackson, P. J. B. Pereira, T. Passioura, H. Suga and R. J. Payne, Journal of Medicinal Chemistry, 2021, 64, 78537876. 84. E. Stefan, R. Obexer, S. Hofmann, K. Vu Huu, Y. Huang, N. Morgner, H. Suga and R. Tampé, Elife, 2021, 10, e67732. 85. Y. Sako, Y. Goto, H. Murakami and H. Suga, ACS Chemical Biology, 2008, 3, 241-249. 86. N. Bionda, A. L. Cryan and R. 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