Human laminin B1 chain. A multidomain protein with gene (LAMB1) locus in the q22 region of chromosome 7. 1987

T Pikkarainen, and R Eddy, and Y Fukushima, and M Byers, and T Shows, and T Pihlajaniemi, and M Saraste, and K Tryggvason

We report the isolation and characterization of six overlapping cDNA clones that provide the first and complete amino acid sequence of the human laminin B1 chain. The cDNA clones cover 5613 nucleotides with 5358 nucleotides in an open reading frame encoding 1786 amino acids, including a 21-residue signal peptide-like sequence. Sequence analysis demonstrated the presence of two types of internal homology repeats that were found in clusters within the polypeptide chain. The type A repeats contain about 50 amino acids of which 8 are cysteine. These repeats are present in two clusters toward the NH2-terminal end of the chain and are separated from each other by about 220 amino acids. The two clusters contain five and eight consecutive repeats each. There are two copies of consecutive type B repeats of about 40 amino acids close to the COOH-terminal end. Computer analysis of the amino acid sequence of the B1 chain revealed the presence of structurally distinct domains that contain cysteine-rich repeats, globular regions, and helical structures. Using somatic cell hybrid methodology and in situ hybridization to metaphase chromosomes it was established that the human laminin B1 gene (LAMB1) is located in the q22 region of chromosome 7.

UI MeSH Term Description Entries
D007797 Laminin Large, noncollagenous glycoprotein with antigenic properties. It is localized in the basement membrane lamina lucida and functions to bind epithelial cells to the basement membrane. Evidence suggests that the protein plays a role in tumor invasion. Merosin,Glycoprotein GP-2,Laminin M,Laminin M Chain,Chain, Laminin M,Glycoprotein GP 2,M Chain, Laminin
D011487 Protein Conformation The characteristic 3-dimensional shape of a protein, including the secondary, supersecondary (motifs), tertiary (domains) and quaternary structure of the peptide chain. PROTEIN STRUCTURE, QUATERNARY describes the conformation assumed by multimeric proteins (aggregates of more than one polypeptide chain). Conformation, Protein,Conformations, Protein,Protein Conformations
D002460 Cell Line Established cell cultures that have the potential to propagate indefinitely. Cell Lines,Line, Cell,Lines, Cell
D002897 Chromosomes, Human, Pair 7 A specific pair of GROUP C CHROMOSOMES of the human chromosome classification. Chromosome 7
D004247 DNA A deoxyribonucleotide polymer that is the primary genetic material of all cells. Eukaryotic and prokaryotic organisms normally contain DNA in a double-stranded state, yet several important biological processes transiently involve single-stranded regions. DNA, which consists of a polysugar-phosphate backbone possessing projections of purines (adenine and guanine) and pyrimidines (thymine and cytosine), forms a double helix that is held together by hydrogen bonds between these purines and pyrimidines (adenine to thymine and guanine to cytosine). DNA, Double-Stranded,Deoxyribonucleic Acid,ds-DNA,DNA, Double Stranded,Double-Stranded DNA,ds DNA
D004274 DNA, Recombinant Biologically active DNA which has been formed by the in vitro joining of segments of DNA from different sources. It includes the recombination joint or edge of a heteroduplex region where two recombining DNA molecules are connected. Genes, Spliced,Recombinant DNA,Spliced Gene,Recombinant DNA Research,Recombination Joint,DNA Research, Recombinant,Gene, Spliced,Joint, Recombination,Research, Recombinant DNA,Spliced Genes
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
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
D001483 Base Sequence The sequence of PURINES and PYRIMIDINES in nucleic acids and polynucleotides. It is also called nucleotide sequence. DNA Sequence,Nucleotide Sequence,RNA Sequence,DNA Sequences,Base Sequences,Nucleotide Sequences,RNA Sequences,Sequence, Base,Sequence, DNA,Sequence, Nucleotide,Sequence, RNA,Sequences, Base,Sequences, DNA,Sequences, Nucleotide,Sequences, RNA

Related Publications

T Pikkarainen, and R Eddy, and Y Fukushima, and M Byers, and T Shows, and T Pihlajaniemi, and M Saraste, and K Tryggvason
September 1988, Nucleic acids research,
T Pikkarainen, and R Eddy, and Y Fukushima, and M Byers, and T Shows, and T Pihlajaniemi, and M Saraste, and K Tryggvason
December 1987, The Journal of biological chemistry,
T Pikkarainen, and R Eddy, and Y Fukushima, and M Byers, and T Shows, and T Pihlajaniemi, and M Saraste, and K Tryggvason
September 1990, The Journal of biological chemistry,
T Pikkarainen, and R Eddy, and Y Fukushima, and M Byers, and T Shows, and T Pihlajaniemi, and M Saraste, and K Tryggvason
February 1987, Proceedings of the National Academy of Sciences of the United States of America,
T Pikkarainen, and R Eddy, and Y Fukushima, and M Byers, and T Shows, and T Pihlajaniemi, and M Saraste, and K Tryggvason
January 1991, The Journal of biological chemistry,
T Pikkarainen, and R Eddy, and Y Fukushima, and M Byers, and T Shows, and T Pihlajaniemi, and M Saraste, and K Tryggvason
January 1989, Nucleic acids research,
T Pikkarainen, and R Eddy, and Y Fukushima, and M Byers, and T Shows, and T Pihlajaniemi, and M Saraste, and K Tryggvason
January 1983, Cytogenetics and cell genetics,
T Pikkarainen, and R Eddy, and Y Fukushima, and M Byers, and T Shows, and T Pihlajaniemi, and M Saraste, and K Tryggvason
July 1989, Genomics,
T Pikkarainen, and R Eddy, and Y Fukushima, and M Byers, and T Shows, and T Pihlajaniemi, and M Saraste, and K Tryggvason
January 1986, Cytogenetics and cell genetics,
T Pikkarainen, and R Eddy, and Y Fukushima, and M Byers, and T Shows, and T Pihlajaniemi, and M Saraste, and K Tryggvason
November 1989, Genomics,
Copied contents to your clipboard!