Molecular cloning and sequence analysis of two distinct types of Xenopus laevis protein kinase C. 1988

K H Chen, and Z G Peng, and S Lavu, and H F Kung
Laboratory of Biochemical Physiology, National Cancer Institute-Frederick Cancer Research Facility, Maryland 21701.

Two distinct types of protein kinase C cDNA clones were isolated from a Xenopus laevis oocyte cDNA library, and the complete nucleotide sequences were determined. The sequences encode a single open reading frame with a domain structure that consists of four constant (designated C1-C4) and five variable (designated V1-V5) regions. Comparison of the two sequences shows good homology at the nucleotide and deduced amino acid level. The differences reside primarily in the variable regions. Each clone encodes 671 and 676 amino acids, respectively, having extensive homology with published sequences of human, rat, and bovine protein kinase C. These results provide evidence that these two distinct types of protein kinase C are members of a multigene family in amphibian and mammalian species.

UI MeSH Term Description Entries
D007527 Isoenzymes Structurally related forms of an enzyme. Each isoenzyme has the same mechanism and classification, but differs in its chemical, physical, or immunological characteristics. Alloenzyme,Allozyme,Isoenzyme,Isozyme,Isozymes,Alloenzymes,Allozymes
D008969 Molecular Sequence Data Descriptions of specific amino acid, carbohydrate, or nucleotide sequences which have appeared in the published literature and/or are deposited in and maintained by databanks such as GENBANK, European Molecular Biology Laboratory (EMBL), National Biomedical Research Foundation (NBRF), or other sequence repositories. Sequence Data, Molecular,Molecular Sequencing Data,Data, Molecular Sequence,Data, Molecular Sequencing,Sequencing Data, Molecular
D011493 Protein Kinase C An serine-threonine protein kinase that requires the presence of physiological concentrations of CALCIUM and membrane PHOSPHOLIPIDS. The additional presence of DIACYLGLYCEROLS markedly increases its sensitivity to both calcium and phospholipids. The sensitivity of the enzyme can also be increased by PHORBOL ESTERS and it is believed that protein kinase C is the receptor protein of tumor-promoting phorbol esters. Calcium Phospholipid-Dependent Protein Kinase,Calcium-Activated Phospholipid-Dependent Kinase,PKC Serine-Threonine Kinase,Phospholipid-Sensitive Calcium-Dependent Protein Kinase,Protein Kinase M,Calcium Activated Phospholipid Dependent Kinase,Calcium Phospholipid Dependent Protein Kinase,PKC Serine Threonine Kinase,Phospholipid Sensitive Calcium Dependent Protein Kinase,Phospholipid-Dependent Kinase, Calcium-Activated,Serine-Threonine Kinase, PKC
D002417 Cattle Domesticated bovine animals of the genus Bos, usually kept on a farm or ranch and used for the production of meat or dairy products or for heavy labor. Beef Cow,Bos grunniens,Bos indicus,Bos indicus Cattle,Bos taurus,Cow,Cow, Domestic,Dairy Cow,Holstein Cow,Indicine Cattle,Taurine Cattle,Taurus Cattle,Yak,Zebu,Beef Cows,Bos indicus Cattles,Cattle, Bos indicus,Cattle, Indicine,Cattle, Taurine,Cattle, Taurus,Cattles, Bos indicus,Cattles, Indicine,Cattles, Taurine,Cattles, Taurus,Cow, Beef,Cow, Dairy,Cow, Holstein,Cows,Dairy Cows,Domestic Cow,Domestic Cows,Indicine Cattles,Taurine Cattles,Taurus Cattles,Yaks,Zebus
D003001 Cloning, Molecular The insertion of recombinant DNA molecules from prokaryotic and/or eukaryotic sources into a replicating vehicle, such as a plasmid or virus vector, and the introduction of the resultant hybrid molecules into recipient cells without altering the viability of those cells. Molecular Cloning
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
D012689 Sequence Homology, Nucleic Acid The sequential correspondence of nucleotides in one nucleic acid molecule with those of another nucleic acid molecule. Sequence homology is an indication of the genetic relatedness of different organisms and gene function. Base Sequence Homology,Homologous Sequences, Nucleic Acid,Homologs, Nucleic Acid Sequence,Homology, Base Sequence,Homology, Nucleic Acid Sequence,Nucleic Acid Sequence Homologs,Nucleic Acid Sequence Homology,Sequence Homology, Base,Base Sequence Homologies,Homologies, Base Sequence,Sequence Homologies, Base

Related Publications

K H Chen, and Z G Peng, and S Lavu, and H F Kung
November 2004, Journal of cardiovascular pharmacology,
K H Chen, and Z G Peng, and S Lavu, and H F Kung
November 1985, Nucleic acids research,
K H Chen, and Z G Peng, and S Lavu, and H F Kung
August 1988, Nature,
K H Chen, and Z G Peng, and S Lavu, and H F Kung
January 1998, DNA sequence : the journal of DNA sequencing and mapping,
K H Chen, and Z G Peng, and S Lavu, and H F Kung
September 1991, Cell growth & differentiation : the molecular biology journal of the American Association for Cancer Research,
K H Chen, and Z G Peng, and S Lavu, and H F Kung
December 2002, Mechanisms of development,
K H Chen, and Z G Peng, and S Lavu, and H F Kung
November 2002, Gene expression patterns : GEP,
K H Chen, and Z G Peng, and S Lavu, and H F Kung
November 2001, FEBS letters,
K H Chen, and Z G Peng, and S Lavu, and H F Kung
August 1997, Development, growth & differentiation,
K H Chen, and Z G Peng, and S Lavu, and H F Kung
April 1999, Biochimica et biophysica acta,
Copied contents to your clipboard!