Items where Author is "Grézal, Gábor"
Group by: Item Type | No Grouping Jump to: Article Number of items: 9. ArticleMartins, Ana and Judák, Fanni Orsolya and Farkas, Zoltán and Szili, Petra and Grézal, Gábor and Csörgő, Bálint and Czikkely, Márton Simon and Maharramov, Elvin and Daruka, Lejla and Spohn, Réka and Balogh, Dávid and Daraba, Andreea and Juhász, Szilvia and Vágvölgyi, Máté and Hunyadi, Attila and Cao, Yihui and Sun, Zhenquan and Li, Xuechen and Papp, Balázs and Pál, Csaba (2025) Antibiotic candidates for Gram-positive bacterial infections induce multidrug resistance. SCIENCE TRANSLATIONAL MEDICINE, 17 (780). No.-eadl2103. ISSN 1946-6234 Tengölics, Roland and Szappanos, Balázs and Mülleder, Michael and Kalapis, Dorottya and Grézal, Gábor and Sajben, Csilla and Agostini, Federica and Mokochinski, João Benhur and Bálint, Balázs and Nagy, László G. and Ralser, Markus and Papp, Balázs (2024) The metabolic domestication syndrome of budding yeast. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 121 (11). No.-e2313354121. ISSN 0027-8424 Gombos, Magdolna and Hapek, Nóra and Kozma-Bognár, László and Grézal, Gábor and Zombori, Zoltán and Kiss, Edina and Györgyey, János (2023) Limited water stress modulates expression of circadian clock genes in Brachypodium distachyon roots. SCIENTIFIC REPORTS, 13 (1). No-1241. ISSN 2045-2322 Grézal, Gábor and Spohn, Réka and Méhi, Orsolya Katinka and Dunai, Anett and Lázár, Viktória and Bálint, Balázs and Nagy, István and Pál, Csaba and Papp, Balázs (2023) Plasticity and stereotypic rewiring of the transcriptome upon bacterial evolution of antibiotic resistance. MOLECULAR BIOLOGY AND EVOLUTION, 40 (2). No-msad020. ISSN 0737-4038 Szili, Petra and Draskovits, Gábor and Révész, Tamás and Bogár, Ferenc and Balogh, Dávid and Martinek, Tamás and Daruka, Lejla and Spohn, Réka and Vásárhelyi, Bálint Márk and Czikkely, Márton and Kintses, Bálint and Grézal, Gábor and Ferenc, Györgyi and Pál, Csaba and Nyerges, Ákos (2019) Rapid evolution of reduced susceptibility against a balanced dual targeting antibiotic through stepping-stone mutations. ANTIMICROBIAL AGENTS AND CHEMOTHERAPY. ISSN 0066-4804 Spohn, Réka and Daruka, Lejla and Lázár, Viktória and Martins, Ana and Vidovics, Fanni and Grézal, Gábor and Méhi, Orsolya Katinka and Kintses, Bálint and Számel, Mónika and Jangir, Pramod Kumar and Csörgő, Bálint and Györkei, Ádám and Bódi, Zoltán and Faragó, Anikó and Bodai, László and Földesi, Imre and Kata, Diána and Maróti, Gergely and Pap, Bernadett and Wirth, Roland and Papp, Balázs and Pál, Csaba (2019) Integrated evolutionary analysis reveals antimicrobial peptides with limited resistance. NATURE COMMUNICATIONS, 10. No.-4538. ISSN 2041-1723 Szili, Petra and Draskovits, Gábor and Révész, Tamás and Bogár, Ferenc and Balogh, Dávid and Martinek, Tamás and Daruka, Lejla and Spohn, Réka and Vásárhelyi, Bálint Márk and Czikkely, Márton and Kintses, Bálint and Grézal, Gábor and Ferenc, Györgyi and Pál, Csaba and Nyerges, Ákos (2019) Rapid Evolution of Reduced Susceptibility against a Balanced Dual-Targeting Antibiotic through Stepping-Stone Mutations. ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 63 (9). pp. 1-39. ISSN 0066-4804 (print); 1098-6596 (online) Dunai, Anett and Spohn, Réka and Farkas, Zoltán and Lázár, Viktória and Györkei, Ádám and Apjok, Gábor and Boross, Gábor and Szappanos, Balázs and Grézal, Gábor and Faragó, Anikó and Papp, Balázs and Pál, Csaba (2019) Rapid decline of bacterial drug-resistance in an antibiotic-free environment through phenotypic reversion. ELIFE, 8. ISSN 2050-084X Lázár, Viktória and Martins, Ana and Spohn, Réka and Daruka, Lejla and Grézal, Gábor and Fekete, Gergely and Számel, Mónika and Jangir, Pramod Kumar and Kintses, Bálint and Csörgő, Bálint and Nyerges, Ákos and Györkei, Ádám and Kincses, András and Dér, András and Walter, Fruzsina and Deli, Mária Anna and Zsoldiné Urbán, Edit and Hegedűs, Zoltán and Méhi, Orsolya Katinka and Bálint, Balázs and Nagy, István and Martinek, Tamás and Papp, Balázs and Pál, Csaba (2018) Antibiotic-resistant bacteria show widespread collateral sensitivity to antimicrobial peptides. NATURE MICROBIOLOGY, 3 (6). pp. 718-731. ISSN 2058-5276 |