Comprehensive Analysis of HAMP Domains: Implications for Transmembrane Signal Transduction

被引:76
作者
Dunin-Horkawicz, Stanislaw [1 ]
Lupas, Andrei N. [1 ]
机构
[1] Max Planck Inst Dev Biol, Dept Prot Evolut, D-72076 Tubingen, Germany
关键词
two-component signal transduction; transmembrane signaling; protein evolution; classification; cluster analysis; MULTIPLE SEQUENCE ALIGNMENTS; ESCHERICHIA-COLI; STRUCTURE PREDICTION; HISTIDINE KINASE; LINKER REGION; RESPONSE REGULATORS; MUTATIONAL ANALYSIS; PROTEIN FAMILIES; SENSOR KINASES; CONSERVATION;
D O I
10.1016/j.jmb.2010.02.031
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
Homodimeric receptors with one or two transmembrane (TM) segments per monomer are universal to life and represent the largest and most diverse group of cellular TM receptors. They frequently share domain types across phyla and, in some cases, have been recombined experimentally into functional chimeras (e.g., the bacterial aspartate chemoreceptor with the human insulin receptor), suggesting that they have a common mechanism. The nature of this mechanism, however, is still being debated. We have proposed a new model for transduction mechanism by axial helix rotation, based on the structure of a widespread domain, HAMP, that frequently occurs in direct continuation of the last TM segment, primarily in histidine kinases and chemoreceptors. Here we show by statistical analysis that HAMP domain sequences have biophysical properties compatible with the two conformations proposed by the model. The analysis also identifies three networks of coevolving residues, which allow the mechanism to subdivide into individual steps. The most extended of these networks is specific for membrane-bound HAMP domains and most likely accepts the signal from the TM helices. In a classification based on sequence clustering, these HAMPs form a central supercluster, surrounded by smaller clusters of divergent HAMPs, which typically combine into arrays of up to 31 consecutive copies and accept conformational input from other HAMP domains. Unexpectedly, the classification shows a division between domains of histidine kinases and those of chemoreceptors; thus, except for a few versatile lineages, HAMP domains are largely specific for one particular output domain. Within proteins using a given output domain, HAMP domains also show extensive coevolution with histidine kinases, but not with chemoreceptors. We attribute the greater capability for recombination among chemoreceptors to their acquisition of a reversible modification system, which acts as a capacitor for the initially deleterious effects of combining domains optimized in different contexts. (C) 2010 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1156 / 1174
页数:19
相关论文
共 51 条
[41]   HHsenser:: exhaustive transitive profile search using HMM-HMM comparison [J].
Soeding, Johannes ;
Remmert, Michael ;
Biegert, Andreas ;
Lupas, Andrei N. .
NUCLEIC ACIDS RESEARCH, 2006, 34 :W374-W378
[42]   Exploring the role of alanine in the structure of the Lac repressor tetramerization domain, a ferritin-like Alacoil [J].
Solan, A ;
Ratia, K ;
Fairman, R .
JOURNAL OF MOLECULAR BIOLOGY, 2002, 317 (04) :601-612
[43]   Two-component signal transduction [J].
Stock, AM ;
Robinson, VL ;
Goudreau, PN .
ANNUAL REVIEW OF BIOCHEMISTRY, 2000, 69 :183-215
[44]   Genetic and functional characterization of the Escherichia coli BarA-UvrY two-component system:: Point mutations in the HAMP linker of the BarA sensor give a dominant-negative phenotype [J].
Tomenius, H ;
Pernestig, AK ;
Méndez-Catalá, CF ;
Georgellis, D ;
Normark, S ;
Melefors, Ö .
JOURNAL OF BACTERIOLOGY, 2005, 187 (21) :7317-7324
[45]   ACTIVATION OF BACTERIAL PORIN GENE-EXPRESSION BY A CHIMERIC SIGNAL TRANSDUCER IN RESPONSE TO ASPARTATE [J].
UTSUMI, R ;
BRISSETTE, RE ;
RAMPERSAUD, A ;
FORST, SA ;
OOSAWA, K ;
INOUYE, M .
SCIENCE, 1989, 245 (4923) :1246-1249
[46]   Best α-helical transmembrane protein topology predictions are achieved using hidden Markov models and evolutionary information [J].
Viklund, H ;
Elofsson, A .
PROTEIN SCIENCE, 2004, 13 (07) :1908-1917
[47]   Interactions between the PAS and HAMP domains of the Escherichia coli aerotaxis receptor Aer [J].
Watts, KJ ;
Ma, QH ;
Johnson, MS ;
Taylor, BL .
JOURNAL OF BACTERIOLOGY, 2004, 186 (21) :7440-7449
[48]   Evolution of prokaryotic two-component systems: insights from comparative genomics [J].
Whitworth, David E. ;
Cock, Peter J. A. .
AMINO ACIDS, 2009, 37 (03) :459-466
[49]   Functional similarities among two-component sensors and methyl-accepting chemotaxis proteins suggest a role for linker region amphipathic helices in transmembrane signal transduction [J].
Williams, SB ;
Stewart, V .
MOLECULAR MICROBIOLOGY, 1999, 33 (06) :1093-1102
[50]   An integrated system for studying residue coevolution in proteins [J].
Yip, Kevin Y. ;
Patel, Prianka ;
Kim, Philip M. ;
Engelman, Donald M. ;
McDermott, Drew ;
Gerstein, Mark .
BIOINFORMATICS, 2008, 24 (02) :290-292