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1.
J Membr Biol ; 229(3): 115-30, 2009 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-19548020

RESUMO

P-type ATPases play essential roles in numerous processes, which in humans include nerve impulse propagation, relaxation of muscle fibers, secretion and absorption in the kidney, acidification of the stomach and nutrient absorption in the intestine. Published evidence suggests that uncharacterized families of P-type ATPases with novel specificities exist. In this study, the fully sequenced genomes of 26 eukaryotes, including animals, plants, fungi and unicellular eukaryotes, were analyzed for P-type ATPases. We report the organismal distributions, phylogenetic relationships, probable topologies and conserved motifs of nine functionally characterized families and 13 uncharacterized families of these enzyme transporters. We have classified these proteins according to the conventions of the functional and phylogenetic IUBMB-approved transporter classification system ( www.tcdb.org , Saier et al. in Nucleic Acids Res 34:181-186, 2006; Nucleic Acids Res 37:274-278, 2009).


Assuntos
Adenosina Trifosfatases/genética , Biologia Computacional , Células Eucarióticas/metabolismo , Adenosina Trifosfatases/classificação , Animais , Humanos , Filogenia , Proteínas de Plantas/classificação , Proteínas de Plantas/genética
2.
Biochim Biophys Acta ; 1758(10): 1557-79, 2006 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-16905115

RESUMO

"Extra" domains in members of the families of secondary transport carrier and channel proteins provide secondary functions that expand, amplify or restrict the functional nature of these proteins. Domains in secondary carriers include TrkA and SPX domains in DASS family members, DedA domains in TRAP-T family members (both of the IT superfamily), Kazal-2 and PDZ domains in OAT family members (of the MF superfamily), USP, IIA(Fru) and TrkA domains in ABT family members (of the APC superfamily), ricin domains in OST family members, and TrkA domains in AAE family members. Some transporters contain highly hydrophilic domains consisting of multiple repeat units that can also be found in proteins of dissimilar function. Similarly, transmembrane alpha-helical channel-forming proteins contain unique, conserved, hydrophilic domains, most of which are not found in carriers. In some cases the functions of these domains are known. They may be ligand binding domains, phosphorylation domains, signal transduction domains, protein/protein interaction domains or complex carbohydrate-binding domains. These domains mediate regulation, subunit interactions, or subcellular targeting. Phylogenetic analyses show that while some of these domains are restricted to closely related proteins derived from specific organismal types, others are nearly ubiquitous within a particular family of transporters and occur in a tremendous diversity of organisms. The former probably became associated with the transporters late in the evolutionary process; the latter probably became associated with the carriers much earlier. These domains can be located at either end of the transporter or in a central region, depending on the domain and transporter family. These studies provide useful information about the evolution of extra domains in channels and secondary carriers and provide novel clues concerning function.


Assuntos
Canais Iônicos/química , Estrutura Terciária de Proteína , Transporte Proteico , Sequência de Aminoácidos , Animais , Biologia Computacional , Humanos , Proteínas de Membrana/química , Dados de Sequência Molecular , Transportadores de Ânions Orgânicos/química , Inibidor da Tripsina Pancreática de Kazal/química
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