The Role of Disordered Ribosomal Protein Extensions in the Early Steps of Eubacterial 50 S Ribosomal Subunit Assembly

被引:39
作者
Timsit, Youri [1 ]
Acosta, Zahir [1 ]
Allemand, Frederic [2 ]
Chiaruttini, Claude [2 ]
Springer, Mathias [2 ]
机构
[1] CNRS, Inst Biol Physicochim, Lab Cristallog, F-75005 Paris, France
[2] CNRS, Inst Biol Physicochim, Biochim Lab, F-75005 Paris, France
关键词
Flexibility; structural transitions; helix-coil; calmodulin; linker; electrostatic; helix unwinding; unfolding; ESCHERICHIA-COLI RIBOSOMES; INTRINSICALLY UNSTRUCTURED PROTEINS; NATIVELY UNFOLDED PROTEINS; CRYSTAL-STRUCTURE; THERMUS-THERMOPHILUS; ANGSTROM RESOLUTION; TARGET RECOGNITION; FEEDBACK-CONTROL; NMR STRUCTURE; INDUCED FIT;
D O I
10.3390/ijms10030817
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Although during the past decade research has shown the functional importance of disorder in proteins, many of the structural and dynamics properties of intrinsically unstructured proteins (IUPs) remain to be elucidated. This review is focused on the role of the extensions of the ribosomal proteins in the early steps of the assembly of the eubacterial 50 S subunit. The recent crystallographic structures of the ribosomal particles have revealed the picture of a complex assembly pathway that condenses the rRNA and the ribosomal proteins into active ribosomes. However, little is know about the molecular mechanisms of this process. It is thought that the long basic r-protein extensions that penetrate deeply into the subunit cores play a key role through disorder-order transitions and/or co-folding mechanisms. A current view is that such structural transitions may facilitate the proper rRNA folding. In this paper, the structures of the proteins L3, L4, L13, L20, L22 and L24 that have been experimentally found to be essential for the first steps of ribosome assembly have been compared. On the basis of their structural and dynamics properties, three categories of extensions have been identified. Each of them seems to play a distinct function. Among them, only the coil-helix transition that occurs in a phylogenetically conserved cluster of basic residues of the L20 extension appears to be strictly required for the large subunit assembly in eubacteria. The role of a helix-coil transitions in 23 S RNA folding is discussed in the light of the calcium binding protein calmodulin that shares many structural and dynamics properties with L20.
引用
收藏
页码:817 / 834
页数:18
相关论文
共 46 条
  • [21] The N-terminal extension of yeast ribosomal protein L8 is involved in two major remodeling events during late nuclear stages of 60S ribosomal subunit assembly
    Tutuncuoglu, Beril
    Jakovljevic, Jelena
    Wu, Shan
    Gao, Ning
    Woolford, John L., Jr.
    RNA, 2016, 22 (09) : 1386 - 1399
  • [22] CRYSTALS OF PROTEIN-L30 FROM THE 50-S RIBOSOMAL-SUBUNIT OF THERMUS-THERMOPHILUS - PRELIMINARY CRYSTALLOGRAPHIC DATA
    SHIKAEVA, OS
    SEDELNIKOVA, SE
    FOMENKOVA, NP
    NIKONOV, SV
    GARBER, MB
    JOURNAL OF MOLECULAR BIOLOGY, 1993, 230 (04) : 1309 - 1310
  • [23] 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
  • [24] Identification of Methylated Proteins in the Yeast Small Ribosomal Subunit: A Role for SPOUT Methyltransferases in Protein Arginine Methylation
    Young, Brian D.
    Weiss, David I.
    Zurita-Lopez, Cecilia I.
    Webb, Kristofor J.
    Clarke, Steven G.
    McBride, Anne E.
    BIOCHEMISTRY, 2012, 51 (25) : 5091 - 5104
  • [25] A minimized rRNA-binding site for ribosomal protein S4 and its implications for 30S assembly
    Bellur, Deepti L.
    Woodson, Sarah A.
    NUCLEIC ACIDS RESEARCH, 2009, 37 (06) : 1886 - 1896
  • [26] The N-terminal extension of S12 influences small ribosomal subunit assembly in Escherichia coli
    Calidas, Deepika
    Lyon, Hiram
    Culver, Gloria M.
    RNA, 2014, 20 (03) : 321 - 330
  • [27] Interrelationships between Yeast Ribosomal Protein Assembly Events and Transient Ribosome Biogenesis Factors Interactions in Early Pre-Ribosomes
    Jakob, Steffen
    Ohmayer, Uli
    Neueder, Andreas
    Hierlmeier, Thomas
    Perez-Fernandez, Jorge
    Hochmuth, Eduard
    Deutzmann, Rainer
    Griesenbeck, Joachim
    Tschochner, Herbert
    Milkereit, Philipp
    PLOS ONE, 2012, 7 (03):
  • [28] Ribosomal Protein S12 Hastens Nucleation of Co-Transcriptional Ribosome Assembly
    Rodgers, Margaret L.
    Sun, Yunsheng
    Woodson, Sarah A.
    BIOMOLECULES, 2023, 13 (06)
  • [29] CRYSTALS OF PROTEIN S6 FROM THE 30-S RIBOSOMAL-SUBUNIT OF THERMUS-THERMOPHILUS
    SEDELNIKOVA, SE
    AGALAROV, SC
    ELISEIKINA, IA
    FOMENKOVA, NP
    NIKONOV, SV
    GARBER, MB
    SVENSSON, LA
    LILJAS, A
    JOURNAL OF MOLECULAR BIOLOGY, 1991, 220 (03) : 549 - 550
  • [30] Characterization of the nuclear export adaptor protein Nmd3 in association with the 60S ribosomal subunit
    Sengupta, Jayati
    Bussiere, Cyril
    Pallesen, Jesper
    West, Matthew
    Johnson, Arlen W.
    Frank, Joachim
    JOURNAL OF CELL BIOLOGY, 2010, 189 (07) : 1079 - 1086