Phylogeny and evolution of the major intrinsic protein family

被引:227
作者
Zardoya, R [1 ]
机构
[1] CSIC, Museo Nacl Ciencias Nat, Dept Biodiversidad & Biol Evolut, E-28006 Madrid, Spain
关键词
amino acid variation; aquaglyceroporin; aquaporin; Bayesian inference; multigene family;
D O I
10.1042/BC20040134
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Background information. MIPs (major intrinsic proteins) form channels across biological membranes that control recruitment of water and small solutes such as glycerol and urea in all living organisms. Because of their widespread occurrence and large number, MIPs are a sound model system to understand evolutionary mechanisms underlying the generation of protein structural and functional diversity. With the recent increase in genomic projects, there is a considerable increase in the quantity and taxonomic range of MIPs in molecular databases. Results. In the present study, I compiled more than 450 non-redundant amino acid sequences of MIPs from NCBI databases. Phylogenetic analyses using Bayesian inference reconstructed a statistically robust tree that allowed the classification of members of the family into two main evolutionary groups, the GLPs (glycerol- uptake facilitators or aquaglyceroporins) and the water transport channels or AQPs (aquaporins). Separate phylogenetic analyses of each of the MIP subfamilies were performed to determine the main groups of orthology. In addition, comparative sequence analyses were conducted to identify conserved signatures in the MIP molecule. Conclusions. The earliest and major gene duplication event in the history of the MIP family led to its main functional split into GLPs and AQPs. GLPs show typically one single copy in microbes (eubacteria, archaea and fungi), up to four paralogues in vertebrates and they are absent from plants. AQPs are usually single in microbes and show their greatest numbers and diversity in angiosperms and vertebrates. Functional recruitment of NOD26-like intrinsic proteins to glycerol transport due to the absence of GLPs in plants was highly supported. Acquisition of other MIP functions such as permeability to ammonia, arsenite or CO2 is restricted to particular MIP paralogues. Up to eight fairly conserved boxes were inferred in the primary sequence of the MIP molecule. All of them mapped on to one side of the channel except the conserved glycine residues from helices 2 and 5 that were found in the opposite side.
引用
收藏
页码:397 / 414
页数:18
相关论文
共 60 条
[31]   The complete set of genes encoding major intrinsic proteins in arabidopsis provides a framework for a new nomenclature for major intrinsic proteins in plants [J].
Johanson, U ;
Karlsson, M ;
Johansson, I ;
Gustavsson, S ;
Sjövall, S ;
Fraysse, L ;
Weig, AR ;
Kjellbom, P .
PLANT PHYSIOLOGY, 2001, 126 (04) :1358-1369
[32]   The role of aquaporins in cellular and whole plant water balance [J].
Johansson, I ;
Karlsson, M ;
Johanson, U ;
Larsson, C ;
Kjellbom, P .
BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES, 2000, 1465 (1-2) :324-342
[33]   THE RAPID GENERATION OF MUTATION DATA MATRICES FROM PROTEIN SEQUENCES [J].
JONES, DT ;
TAYLOR, WR ;
THORNTON, JM .
COMPUTER APPLICATIONS IN THE BIOSCIENCES, 1992, 8 (03) :275-282
[34]   Aquaporins and water homeostasis in plants [J].
Kjellbom, P ;
Larsson, C ;
Johansson, I ;
Karlsson, M ;
Johanson, U .
TRENDS IN PLANT SCIENCE, 1999, 4 (08) :308-314
[35]   Functional expression and characterization of an archaeal aquaporin -: AqpM from Methanothermobacter marburgensis [J].
Kozono, D ;
Ding, XD ;
Iwasaki, I ;
Meng, XY ;
Kamagata, Y ;
Agre, P ;
Kitagawa, Y .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (12) :10649-10656
[36]   Switch from an aquaporin to a glycerol channel by two amino acids substitution [J].
Lagrée, V ;
Froger, A ;
Deschamps, S ;
Hubert, JF ;
Delamarche, C ;
Bonnec, G ;
Thomas, D ;
Gouranton, J ;
Pellerin, I .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (11) :6817-6819
[37]   Phylogenetic systematics turns over a new leaf [J].
Lewis, PO .
TRENDS IN ECOLOGY & EVOLUTION, 2001, 16 (01) :30-37
[38]   Arsenite transport by mammalian aquaglyceroporins AQP7 and AQP9 [J].
Liu, ZJ ;
Shen, J ;
Carbrey, JM ;
Mukhopadhyay, R ;
Agre, P ;
Rosen, BP .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2002, 99 (09) :6053-6058
[39]   FPS1, A YEAST MEMBER OF THE MIP FAMILY OF CHANNEL PROTEINS, IS A FACILITATOR FOR GLYCEROL UPTAKE AND EFFLUX AND IS INACTIVE UNDER OSMOTIC-STRESS [J].
LUYTEN, K ;
ALBERTYN, J ;
SKIBBE, WF ;
PRIOR, BA ;
RAMOS, J ;
THEVELEIN, JM ;
HOHMANN, S .
EMBO JOURNAL, 1995, 14 (07) :1360-1371
[40]  
Maurel C, 2002, INT REV CYTOL, V215, P105