Molecular evolution of the multigene family of intracellular lipid-binding proteins. 1995

C H Schleicher, and O L Córdoba, and J A Santomé, and E C Dell'Angelica
Instituto de Química y Fisicoquímica Biológicas, Facultad de Farmacia y Bioquímica, Universidad de Buenos Aires, Argentina.

The intracellular lipid-binding proteins are a group of homologous proteins which bind and facilitate the transport of fatty acids, bile acids and retinoids. The evolutionary relationship of 51 family members from vertebrates and invertebrates was analyzed. The inferred phylogeny implies the occurrence of at least 14 gene duplications and contains five regions where the branching order is statistically non-significant--this uncertainty explaining most inconsistencies between previous phylogenetic analyses. The phylogeny also suggests that the intestinal fatty acid-binding protein and the liver fatty acid-binding protein/ileal lipid-binding protein subfamilies diverged from the other subfamilies before the vertebrate-invertebrate split. Finally, results presented herein indicate that the putative fatty acid-binding domain of NMDA receptor 1 is unlikely to be a member of this family.

UI MeSH Term Description Entries
D007422 Intestines The section of the alimentary canal from the STOMACH to the ANAL CANAL. It includes the LARGE INTESTINE and SMALL INTESTINE. Intestine
D007448 Invertebrates Animals that have no spinal column. Brachiopoda,Mesozoa,Brachiopodas,Invertebrate,Mesozoas
D008099 Liver A large lobed glandular organ in the abdomen of vertebrates that is responsible for detoxification, metabolism, synthesis and storage of various substances. Livers
D010802 Phylogeny The relationships of groups of organisms as reflected by their genetic makeup. Community Phylogenetics,Molecular Phylogenetics,Phylogenetic Analyses,Phylogenetic Analysis,Phylogenetic Clustering,Phylogenetic Comparative Analysis,Phylogenetic Comparative Methods,Phylogenetic Distance,Phylogenetic Generalized Least Squares,Phylogenetic Groups,Phylogenetic Incongruence,Phylogenetic Inference,Phylogenetic Networks,Phylogenetic Reconstruction,Phylogenetic Relatedness,Phylogenetic Relationships,Phylogenetic Signal,Phylogenetic Structure,Phylogenetic Tree,Phylogenetic Trees,Phylogenomics,Analyse, Phylogenetic,Analysis, Phylogenetic,Analysis, Phylogenetic Comparative,Clustering, Phylogenetic,Community Phylogenetic,Comparative Analysis, Phylogenetic,Comparative Method, Phylogenetic,Distance, Phylogenetic,Group, Phylogenetic,Incongruence, Phylogenetic,Inference, Phylogenetic,Method, Phylogenetic Comparative,Molecular Phylogenetic,Network, Phylogenetic,Phylogenetic Analyse,Phylogenetic Clusterings,Phylogenetic Comparative Analyses,Phylogenetic Comparative Method,Phylogenetic Distances,Phylogenetic Group,Phylogenetic Incongruences,Phylogenetic Inferences,Phylogenetic Network,Phylogenetic Reconstructions,Phylogenetic Relatednesses,Phylogenetic Relationship,Phylogenetic Signals,Phylogenetic Structures,Phylogenetic, Community,Phylogenetic, Molecular,Phylogenies,Phylogenomic,Reconstruction, Phylogenetic,Relatedness, Phylogenetic,Relationship, Phylogenetic,Signal, Phylogenetic,Structure, Phylogenetic,Tree, Phylogenetic
D002352 Carrier Proteins Proteins that bind or transport specific substances in the blood, within the cell, or across cell membranes. Binding Proteins,Carrier Protein,Transport Protein,Transport Proteins,Binding Protein,Protein, Carrier,Proteins, Carrier
D005810 Multigene Family A set of genes descended by duplication and variation from some ancestral gene. Such genes may be clustered together on the same chromosome or dispersed on different chromosomes. Examples of multigene families include those that encode the hemoglobins, immunoglobulins, histocompatibility antigens, actins, tubulins, keratins, collagens, heat shock proteins, salivary glue proteins, chorion proteins, cuticle proteins, yolk proteins, and phaseolins, as well as histones, ribosomal RNA, and transfer RNA genes. The latter three are examples of reiterated genes, where hundreds of identical genes are present in a tandem array. (King & Stanfield, A Dictionary of Genetics, 4th ed) Gene Clusters,Genes, Reiterated,Cluster, Gene,Clusters, Gene,Families, Multigene,Family, Multigene,Gene Cluster,Gene, Reiterated,Multigene Families,Reiterated Gene,Reiterated Genes
D000595 Amino Acid Sequence The order of amino acids as they occur in a polypeptide chain. This is referred to as the primary structure of proteins. It is of fundamental importance in determining PROTEIN CONFORMATION. Protein Structure, Primary,Amino Acid Sequences,Sequence, Amino Acid,Sequences, Amino Acid,Primary Protein Structure,Primary Protein Structures,Protein Structures, Primary,Structure, Primary Protein,Structures, Primary Protein
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D014714 Vertebrates Animals having a vertebral column, members of the phylum Chordata, subphylum Craniata comprising mammals, birds, reptiles, amphibians, and fishes. Vertebrate
D016194 Receptors, N-Methyl-D-Aspartate A class of ionotropic glutamate receptors characterized by affinity for N-methyl-D-aspartate. NMDA receptors have an allosteric binding site for glycine which must be occupied for the channel to open efficiently and a site within the channel itself to which magnesium ions bind in a voltage-dependent manner. The positive voltage dependence of channel conductance and the high permeability of the conducting channel to calcium ions (as well as to monovalent cations) are important in excitotoxicity and neuronal plasticity. N-Methyl-D-Aspartate Receptor,N-Methyl-D-Aspartate Receptors,NMDA Receptor,NMDA Receptor-Ionophore Complex,NMDA Receptors,Receptors, NMDA,N-Methylaspartate Receptors,Receptors, N-Methylaspartate,N Methyl D Aspartate Receptor,N Methyl D Aspartate Receptors,N Methylaspartate Receptors,NMDA Receptor Ionophore Complex,Receptor, N-Methyl-D-Aspartate,Receptor, NMDA,Receptors, N Methyl D Aspartate,Receptors, N Methylaspartate

Related Publications

C H Schleicher, and O L Córdoba, and J A Santomé, and E C Dell'Angelica
October 2002, Molecular and cellular biochemistry,
C H Schleicher, and O L Córdoba, and J A Santomé, and E C Dell'Angelica
January 1994, Journal of molecular evolution,
C H Schleicher, and O L Córdoba, and J A Santomé, and E C Dell'Angelica
January 1994, Yi chuan xue bao = Acta genetica Sinica,
C H Schleicher, and O L Córdoba, and J A Santomé, and E C Dell'Angelica
October 1996, Journal of molecular evolution,
C H Schleicher, and O L Córdoba, and J A Santomé, and E C Dell'Angelica
January 2014, PloS one,
C H Schleicher, and O L Córdoba, and J A Santomé, and E C Dell'Angelica
May 1982, Molecular and cellular biology,
C H Schleicher, and O L Córdoba, and J A Santomé, and E C Dell'Angelica
February 1989, Klinische Wochenschrift,
C H Schleicher, and O L Córdoba, and J A Santomé, and E C Dell'Angelica
September 2010, Bioinformation,
C H Schleicher, and O L Córdoba, and J A Santomé, and E C Dell'Angelica
May 2011, Molecular biology and evolution,
C H Schleicher, and O L Córdoba, and J A Santomé, and E C Dell'Angelica
March 1994, Molecular biology and evolution,
Copied contents to your clipboard!