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Essential Bacillus subtilis genes

delete2003-04-07
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OA
AI
K
Kazuo Kobayashi
S
S. Dusko Ehrlich *
A
Alberto Albertini
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Giuseppe Amati
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Kasper Krogh Andersen
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M Arnaud
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Kei Asai
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Sayaka Ashikaga
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Stéphane Aymerich
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Philippe Bessières
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Fiona M. Boland
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S. C. Brignell
S
Sierd Bron
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Keigo Bunai
J
Jérôme Chapuis
C
Christiansen, LC
A
Antoine Danchin
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Michel Débarbouillé
E
Etienne Dervyn
E
Elke Deuerling
K
Kevin M. Devine
S
Susanne Krogh Devine
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Oliver Dreesen
J
Jeff Errington
S
Sabine Fillinger
S
Simon J. Foster
Y
Yuki Fujita
A
A. Galizzi
R
Rozenn Gardan
C
Caroline Eschevins
T
Tatsuya Fukushima
K
Koki Haga
C
Colin R. Harwood
M
Michael Hecker
D
D. Hosoya
M
Marie‐Francoise Hullo
H
Hiroshi Kakeshita
D
Dimitri Karamata
Y
Yasuhiro Kasahara
F
Fujio Kawamura
K
Keiko Koga
P
Pertti Koski
R
Ritsuko Kuwana
D
Daisuke Imamura
M
Megumi Ishimaru
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Shu Ishikawa
I
Izumi Ishio
D
Dominique Le Coq
A
Anne Masson
C
Catherine Mauël
R
Rob Meima
R
Rafael P. Mellado
A
Anne Moir
S
Shigeki Moriya
E
Eishi Nagakawa
H
Hideaki Nanamiya
S
S. Nakai
P
Per Nygaard
M
Mitsuo Ogura
T
T. Ohanan
M
Mary O’Reilly
M
Michele O’Rourke
Z
Zoltán Prágai
H
Harold M. Pooley
G
Georges Rapoport
J
Joy P. Rawlins
L
Luis A. Rivas
C
Carlo Rivolta
A
A. Sadaie
Y
Yoshito Sadaie
M
Matti Sarvas
T
Tsutomu Sato
H
Hans H. Saxild
E
Elizabeth Scanlan
W
Wolfgang Schumann
J
Jos F. M. L. Seegers
J
JoAnn Sekiguchi
A
Agnieszka Sekowska
S
Simone J. Séror
M
Melvin l. Simon
P
Patrick Stragier
R
Romain A. Studer
H
Hiromu Takamatsu
T
Toshihiro Tanaka
M
Michio Takeuchi
T
Thomaides, HB
V
Vagner, V
J
J. M. van Dijl
K
Kazuhito Watabe
A
Anil Wipat
H
Hiroki Yamamoto
M
Masaki Yamamoto
Y
Yoshiyuki Yamamoto
K
Keisaku Yamane
K
K. Yata
K
Ken‐ichi Yoshida
H
Hirofumi Yoshikawa
U
Ulrich Zuber
N
Naotaka Ogasawara
DOI:10.1073/pnas.0730515100delete
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Abstract

Abstract

En 中文
To estimate the minimal gene set required to sustain bacterial life in nutritious conditions, we carried out a systematic inactivation of Bacillus subtilis genes. Among approximate to4,100 genes of the organism, only 192 were shown to be indispensable by this or previous work. Another 79 genes were predicted to be essential. The vast majority of essential genes were categorized in relatively few domains of cell metabolism, with about half involved in information processing, one-fifth involved in the synthesis of cell envelope and the determination of cell shape and division, and one-tenth related to cell energetics. Only 4% of essential genes encode unknown functions. Most essential genes are present throughout a wide range of Bacteria, and almost 70% can also be found in Archaea and Eucarya. However, essential genes related to cell envelope, shape, division, and respiration tend to be lost from bacteria with small genomes. Unexpectedly, most genes involved in the Embden-Meyerhof-Parnas pathway are essential. Identification of unknown and unexpected essential genes opens research avenues to better understanding of processes that sustain bacterial life.
Keywords:
GROWTH
GENOME
RNA
IDENTIFICATION
SURVIVAL
SEQUENCE
PROTEINS
SET
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Journal

P
Proceedings of the National Academy of Sciences of the United States of America
IF:
9.1
Papers:
10.8W
Citations:
73.5W

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