Cryo- EM structure of the mycobacterial 70S ribosome in complex with ribosome hibernation promotion factor RafH

被引:4
|
作者
Kumar, Niraj [1 ]
Sharma, Shivani [1 ]
Kaushal, Prem S. [1 ]
机构
[1] Reg Ctr Biotechnol, Struct Biol & Translat Regulat Lab, UNESCO DBT, NCR Biotech Sci Cluster, Faridabad 121001, India
关键词
DRUG-RESISTANCE; TUBERCULOSIS; PROTEIN; RNA; VISUALIZATION; DEGRADATION; PERSISTENCE; INITIATION; TOLERANCE; DYNAMICS;
D O I
10.1038/s41467-024-44879-y
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Ribosome hibernation is a key survival strategy bacteria adopt under environmental stress, where a protein, hibernation promotion factor (HPF), transitorily inactivates the ribosome. Mycobacterium tuberculosis encounters hypoxia (low oxygen) as a major stress in the host macrophages, and upregulates the expression of RafH protein, which is crucial for its survival. The RafH, a dual domain HPF, an orthologue of bacterial long HPF (HPFlong), hibernates ribosome in 70S monosome form, whereas in other bacteria, the HPFlong induces 70S ribosome dimerization and hibernates its ribosome in 100S disome form. Here, we report the cryo- EM structure of M. smegmatis, a close homolog of M. tuberculosis, 70S ribosome in complex with the RafH factor at an overall 2.8 angstrom resolution. The N- terminus domain (NTD) of RafH binds to the decoding center, similarly to HPFlong NTD. In contrast, the C- terminus domain (CTD) of RafH, which is larger than the HPFlong CTD, binds to a distinct site at the platform binding center of the ribosomal small subunit. The two domain-connecting linker regions, which remain mostly disordered in earlier reported HPFlong structures, interact mainly with the anti-Shine Dalgarno sequence of the 16S rRNA. Ribosome hibernation is a key survival strategy bacteria adapt under stress. Here, cryo- EM structure of mycobacterial 70S ribosome with hypoxia stress-induced factor RafH suggests the molecular mechanism of RafH-induced ribosome hibernation.
引用
收藏
页数:13
相关论文
共 50 条
  • [21] Crystal structure of a 70S ribosome-tRNA complex reveals functional interactions and rearrangements
    Korostelev, Andrei
    Trakhanov, Sergei
    Laurberg, Martin
    Noller, Harry F.
    CELL, 2006, 126 (06) : 1065 - 1077
  • [22] Multistart simulated annealing refinement of the crystal structure of the 70S ribosome
    Korostelev, Andrei
    Laurberg, Martin
    Noller, Harry F.
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2009, 106 (43) : 18195 - 18200
  • [23] Structure of the 70S ribosome from human pathogen Staphylococcus aureus
    Khusainov, Iskander
    Vicens, Quentin
    Bochler, Anthony
    Grosse, Francois
    Myasnikov, Alexander
    Menetret, Jean-Francois
    Chicher, Johana
    Marzi, Stefano
    Romby, Pascale
    Yusupova, Gulnara
    Yusupov, Marat
    Hashem, Yaser
    NUCLEIC ACIDS RESEARCH, 2016, 44 (21) : 10491 - 10504
  • [24] Cryo-EM structure of the 55S mammalian mitochondrial ribosome
    Boehringer, D.
    Greber, B.
    Leibundgut, M.
    Bieri, P.
    Leitner, A.
    Aebersold, R.
    Ban, N.
    EUROPEAN BIOPHYSICS JOURNAL WITH BIOPHYSICS LETTERS, 2015, 44 : S48 - S48
  • [25] Structures of the orthosomycin antibiotics avilamycin and evernimicin in complex with the bacterial 70S ribosome
    Arenz, Stefan
    Juette, Manuel F.
    Graf, Michael
    Fabian Nguyen
    Huter, Paul
    Polikanov, Yury S.
    Blanchard, Scott C.
    Wilson, Daniel N.
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2016, 113 (27) : 7527 - 7532
  • [26] Cryo-EM Structure of the Archaeal 50S Ribosomal Subunit in Complex with Initiation Factor 6 and Implications for Ribosome Evolution
    Greber, Basil J.
    Boehringer, Daniel
    Godinic-Mikulcic, Vlatka
    Crnkovic, Ana
    Ibba, Michael
    Weygand-Durasevic, Ivana
    Ban, Nenad
    JOURNAL OF MOLECULAR BIOLOGY, 2012, 418 (3-4) : 145 - 160
  • [27] Structure of the 70S Ribosome from the Human Pathogen Acinetobacter baumannii in Complex with Clinically Relevant Antibiotics
    Nicholson, David
    Edwards, Thomas A.
    O'Neill, Alex J.
    Ranson, Neil A.
    STRUCTURE, 2020, 28 (10) : 1087 - +
  • [28] Solution structure of the E. coli 70S ribosome at 11.5 Å resolution
    Gabashvili, IS
    Agrawal, RK
    Spahn, CMT
    Grassucci, RA
    Svergun, DI
    Frank, J
    Penczek, P
    CELL, 2000, 100 (05) : 537 - 549
  • [29] Structure of the mammalian mitochondrial 55S ribosome: A cryo-EM study
    Sharma, MR
    Datta, PP
    Koc, EC
    Spremulli, LL
    Agrawal, RK
    BIOPHYSICAL JOURNAL, 2004, 86 (01) : 79A - 79A
  • [30] Insights into the improved macrolide inhibitory activity from the high-resolution cryo-EM structure of dirithromycin bound to the E. coli 70S ribosome
    Pichkur, Eugene B.
    Paleskava, Alena
    Tereshchenkov, Andrei G.
    Kasatsky, Pavel
    Komarova, Ekaterina S.
    Shiriaev, Dmitrii, I
    Bogdanov, Alexey A.
    Dontsova, Olga A.
    Osterman, Ilya A.
    Sergiev, Petr, V
    Polikanov, Yury S.
    Myasnikov, Alexander G.
    Konevega, Andrey L.
    RNA, 2020, 26 (06) : 715 - 723