Evidence for the early divergence of tryptophanyl- and tyrosyl-tRNA synthetases

被引:57
|
作者
Brown, JR
Robb, FT
Weiss, R
Doolittle, WF
机构
[1] DALHOUSIE UNIV,CANADIAN INST ADV RES,DEPT BIOCHEM,HALIFAX,NS B3H 3J5,CANADA
[2] UNIV MARYLAND,CTR MARINE BIOTECHNOL,BALTIMORE,MD 21202
[3] UNIV MARYLAND,DEPT MICROBIOL,COLLEGE PK,MD 20742
[4] UNIV UTAH,DEPT GENET,SALT LAKE CITY,UT 84112
关键词
archaea; Aminoacyl-tRNA synthetases; evolution; universal tree;
D O I
10.1007/PL00006206
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
Each amino acid is attached to its cognate tRNA by a distinct aminoacyl-tRNA synthetase (aaRS). The conventional evolutionary view is that the modern complement of synthetases existed prior to the divergence of eubacteria and eukaryotes. Thus comparisons of prokaryotic and eukaryotic aminoacyl-tRNA synthetases of the same type (charging specificity) should show greater sequence similarities than comparisons between synthetases of different types-and this is almost always so, However, a recent study [Ribas de Pouplana L, Furgier M, Quinn CL, Schimmel P (1996) Proc Natl Acad Sci USA 93:166-170] suggested that tryptophanyl(TrpRS) and tyrosyl-tRNA (TyrRS) synthetases of the Eucarya (eukaryotes) are more similar to each other than either is to counterparts in the Bacteria (eubacteria). Here, we reexamine the evolutionary relationships of TyrRS and TrpRS using a broader range of taxa, including new sequence data from the Archaea (archaebacteria) as well as species of Eucarya and Bacteria. Our results differ from those of Ribas de Pouplana et al.: All phylogenetic methods support the separate monophyly of TrpRS and TyrRS. We attribute this result to the inclusion of the archaeal data which might serve to reduce long branch effects possibly associated with eukaryotic TrpRS and TyrRS sequences. Furthermore, reciprocally rooted phylogenies of TrpRS and TyrRS sequences confirm the closer evolutionary relationship of Archaea to eukaryotes by placing the root of the universal tree in the Bacteria.
引用
下载
收藏
页码:9 / 16
页数:8
相关论文
共 50 条
  • [21] Natural Compounds as Inhibitors of Tyrosyl-tRNA Synthetase
    Skupinska, Miroslawa
    Stepniak, Piotr
    Letowska, Iwona
    Rychlewski, Leszek
    Barciszewska, Miroslawa
    Barciszewski, Jan
    Giel-Pietraszuk, Malgorzata
    MICROBIAL DRUG RESISTANCE, 2017, 23 (03) : 308 - 320
  • [22] Catalysis of tyrosyl-adenylate formation by the human tyrosyl-tRNA synthetase
    Austin, J
    First, EA
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (17) : 14812 - 14820
  • [23] Extracellular Tyrosyl-tRNA Synthetase Is a Potent Stimulator of Thrombocytopoiesis
    Kanaji, Sachiko
    Kanaji, Taisuke
    My-Nuong Vo
    Zarpellon, Alessandro
    Shapiro, Ryan
    Belani, Rajesh
    Minh-Ha Do
    Yang, Xiang-Lei
    Ruggeri, Zaverio M.
    Schimmel, Paul
    BLOOD, 2016, 128 (22)
  • [24] Activation of D-tyrosine by tyrosyl-tRNA synthetase
    Sheoran, A
    First, EA
    FASEB JOURNAL, 2005, 19 (04): : A845 - A846
  • [25] The role of tyrosyl-tRNA synthetase in heart failure development
    Kondratiuk, I.
    Bobyk, V.
    Ryabenko, D.
    Sidorik, L.
    Kornelyuk, O.
    FEBS JOURNAL, 2010, 277 : 51 - 51
  • [26] Activation of D-tyrosine by tyrosyl-tRNA synthetase
    Sheoran, Anita
    Ifeanyi, Chuka
    First, Eric A.
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2005, 230 : U600 - U601
  • [27] Expression, purification, and characterization of human tyrosyl-tRNA synthetase
    Jia, H
    Li, B
    Jin, YX
    Wang, DB
    PROTEIN EXPRESSION AND PURIFICATION, 2003, 27 (01) : 104 - 108
  • [28] Tyrosyl-tRNA synthetase: A potential kyotorphin synthetase in mammals
    Tsukahara, Tamotsu
    Yamagishi, Shuhei
    Neyama, Hiroyuki
    Ueda, Hiroshi
    PEPTIDES, 2018, 101 : 60 - 68
  • [29] tRNA-like recognition of group I introns by a tyrosyl-tRNA synthetase
    Myers, CA
    Kuhla, B
    Cusack, S
    Lambowitz, AM
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2002, 99 (05) : 2630 - 2635
  • [30] Tyrosyl-tRNA synthetase has a noncanonical function in actin bundling
    Biljana Ermanoska
    Bob Asselbergh
    Laura Morant
    Maria-Luise Petrovic-Erfurth
    Seyyedmohsen Hosseinibarkooie
    Ricardo Leitão-Gonçalves
    Leonardo Almeida-Souza
    Sven Bervoets
    Litao Sun
    LaTasha Lee
    Derek Atkinson
    Akram Khanghahi
    Ivaylo Tournev
    Patrick Callaerts
    Patrik Verstreken
    Xiang-Lei Yang
    Brunhilde Wirth
    Avital A. Rodal
    Vincent Timmerman
    Bruce L. Goode
    Tanja A. Godenschwege
    Albena Jordanova
    Nature Communications, 14