RNase P without RNA: Identification and Functional Reconstitution of the Human Mitochondrial tRNA Processing Enzyme

被引:469
作者
Holzmann, Johann [1 ]
Frank, Peter [2 ]
Loeffler, Esther [1 ]
Bennett, Keiryn L. [3 ]
Gerner, Christopher [2 ]
Rossmanith, Walter [1 ]
机构
[1] Med Univ Vienna, Ctr Anat & Cell Biol, A-1090 Vienna, Austria
[2] Med Univ Vienna, Dept Med 1, Inst Canc Res, A-1090 Vienna, Austria
[3] Austrian Acad Sci, Res Ctr Mol Med, A-1090 Vienna, Austria
基金
奥地利科学基金会;
关键词
D O I
10.1016/j.cell.2008.09.013
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
tRNAs are synthesized as immature precursors, and on their way to functional maturity, extra nucleotides at their 50 ends are removed by an endonuclease called RNase P. All RNase P enzymes characterized so far are composed of an RNA plus one or more proteins, and tRNA 50 end maturation is considered a universal ribozyme-catalyzed process. Using a combinatorial purification/proteomics approach, we identified the components of human mitochondrial RNase P and reconstitutedthe enzymatic activity from three recombinant proteins. We thereby demonstrate that human mitochondrial RNase P is a protein enzyme that does not require a trans-acting RNA component for catalysis. Moreover, the mitochondrial enzyme turns out to be an unexpected type of patchwork enzyme, composed of a tRNA methyltransferase, a short-chain dehydrogenase/reductase-family member, and a protein of hitherto unknown functional and evolutionary origin, possibly representing the enzyme's metallonuclease moiety. Apparently, animal mitochondria lost the seemingly ubiquitous RNA world remnant after reinventing RNase P from preexisting components.
引用
收藏
页码:462 / 474
页数:13
相关论文
共 48 条
[1]   Proteomic characterization of the human centrosome by protein correlation profiling [J].
Andersen, JS ;
Wilkinson, CJ ;
Mayor, T ;
Mortensen, P ;
Nigg, EA ;
Mann, M .
NATURE, 2003, 426 (6966) :570-574
[2]  
Chen JX, 2007, J ALZHEIMERS DIS, V12, P177
[3]   Computational method to predict mitochondrially imported proteins and their targeting sequences [J].
Claros, MG ;
Vincens, P .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1996, 241 (03) :779-786
[4]  
DANG YL, 1993, J BIOL CHEM, V268, P19791
[5]   Roles of metal ions in nucleases [J].
Dupureur, Cynthia M. .
CURRENT OPINION IN CHEMICAL BIOLOGY, 2008, 12 (02) :250-255
[6]   ChloroP, a neural network-based method for predicting chloroplast transit peptides and their cleavage sites [J].
Emanuelsson, O ;
Nielsen, H ;
Von Heijne, G .
PROTEIN SCIENCE, 1999, 8 (05) :978-984
[7]   RNase P: interface of the RNA and protein worlds [J].
Evans, Donald ;
Marquez, Steven M. ;
Pace, Norman R. .
TRENDS IN BIOCHEMICAL SCIENCES, 2006, 31 (06) :333-341
[8]   Structure, mechanism and evolution of chloroplast transfer RNA processing systems [J].
Gegenheimer, P .
MOLECULAR BIOLOGY REPORTS, 1996, 22 (2-3) :147-150
[9]  
Gesteland R.F., 2006, RNA WORLD NATURE MOD
[10]   A protein interaction map of Drosophila melanogaster [J].
Giot, L ;
Bader, JS ;
Brouwer, C ;
Chaudhuri, A ;
Kuang, B ;
Li, Y ;
Hao, YL ;
Ooi, CE ;
Godwin, B ;
Vitols, E ;
Vijayadamodar, G ;
Pochart, P ;
Machineni, H ;
Welsh, M ;
Kong, Y ;
Zerhusen, B ;
Malcolm, R ;
Varrone, Z ;
Collis, A ;
Minto, M ;
Burgess, S ;
McDaniel, L ;
Stimpson, E ;
Spriggs, F ;
Williams, J ;
Neurath, K ;
Ioime, N ;
Agee, M ;
Voss, E ;
Furtak, K ;
Renzulli, R ;
Aanensen, N ;
Carrolla, S ;
Bickelhaupt, E ;
Lazovatsky, Y ;
DaSilva, A ;
Zhong, J ;
Stanyon, CA ;
Finley, RL ;
White, KP ;
Braverman, M ;
Jarvie, T ;
Gold, S ;
Leach, M ;
Knight, J ;
Shimkets, RA ;
McKenna, MP ;
Chant, J ;
Rothberg, JM .
SCIENCE, 2003, 302 (5651) :1727-1736