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Molecular Cell|July 31, 2020
Structures of the Cmr-β Complex Reveal the Regulation of the Immunity Mechanism of Type III-B CRISPR-CasNicholas Sofos, Mingxia Feng, Stefano Stella, et al.Mbio|June 30, 2023
The FHA domain protein ArnA functions as a global DNA damage response repressor in the hyperthermophilic archaeon Saccharolobus islandicusZhichao Jiang, Zijia Lin, Qi Gan, et al.Nucleic Acids Research|September 16, 2017
Coupling transcriptional activation of CRISPR-Cas system and DNA repair genes by Csa3a in Sulfolobus islandicusTao Liu, Zhenzhen Liu, Qing Ye, et al.Nucleic Acids Research|August 12, 2025
Cyclic tetraadenylate binding induces dimerization of protein dimers to activate a CRISPR-associated PIN nucleaseFang Wang, Pengpeng Zhao, Xiaonan Bi, et al.Open Biology|April 19, 2013
Genomics and genetics of Sulfolobus islandicus LAL14/1, a model hyperthermophilic archaeonCarole Jaubert, Chloë Danioux, Jacques Oberto, et al.Nucleic Acids Research|December 12, 2025
Substrate-induced remodeling of protein disordered loops activates Csm DNasesZhenxiao Yu, Fang Wang, Zixuan Zhang, et al.RNA Biology|June 19, 2018
Comprehensive search for accessory proteins encoded with archaeal and bacterial type III CRISPR-cas gene cassettes reveals 39 new cas gene familiesShiraz A Shah, Omer S Alkhnbashi, Juliane Behler, et al.EMBO Reports|December 2, 2025
Cran1, member of a new class of OLD family ATPases, functions in cell cycle progression in an archaeonYunfeng Yang, Shikuan Liang, Junfeng Liu, et al.Nucleic Acids Research|January 30, 2023
A novel RHH family transcription factor aCcr1 and its viral homologs dictate cell cycle progression in archaeaYunfeng Yang, Junfeng Liu, Xiaofei Fu, et al.Archaea (Vancouver, B.C.)|March 14, 2007
The genome of Hyperthermus butylicus: a sulfur-reducing, peptide fermenting, neutrophilic Crenarchaeote growing up to 108 degrees CKim Brügger, Lanming Chen, Markus Stark, et al.Pageof 171