Oligonucleotide Array Sequence Analysis. DNA Arrays . DNA Chips . DNA Microchips . Gene Chips . Oligodeoxyribonucleotide Array Sequence Analysis . Oligonucleotide Microarrays . Sequence Analysis, Oligonucleotide Array . cDNA Arrays . Array, DNA . Array, Oligonucleotide . Array, cDNA . Arrays, DNA . Arrays, Oligonucleotide . Arrays, cDNA . Chip, DNA . Chip, Gene . Chips, DNA . Chips, Gene . DNA Array . DNA Chip . DNA Microarray . DNA Microchip . Gene Chip . Microarray, DNA . Microarray, Oligonucleotide . Microarray, cDNA . Microarrays, DNA . Microarrays, Oligonucleotide . Microarrays, cDNA . Microchip, DNA . Microchips, DNA . Oligonucleotide Array . Oligonucleotide Microarray . cDNA Array . cDNA Microarray . cDNA Microarrays . DNA Microarrays . Oligonucleotide Arrays . Gene Expression Chips . Microarray Analysis of Gene Expression . Sequencing by Hybridization . DNA CHIPS . Hybridization of a nucleic acid sample to a very large set of OLIGONUCLEOTIDE PROBES, which have been attached individually in columns and rows to a solid support, to determine a BASE SEQUENCE, or to detect variations in a gene sequence, GENE EXPRESSION, or for GENE MAPPING. . 1.00
Protein Multimerization. Protein Dimerization . Protein Heteromultimerizaton . Protein Multimer Assembly . Protein Trimerization . Assembly, Protein Multimer . Dimerization, Protein . Heteromultimerizaton, Protein . Heteromultimerizatons, Protein . Multimer Assembly, Protein . Multimerization, Protein . Trimerization, Protein . Protein Hybridization . The assembly of the QUATERNARY PROTEIN STRUCTURE of multimeric proteins (MULTIPROTEIN COMPLEXES) from their composite PROTEIN SUBUNITS. . 0.60
Nucleic Acid Hybridization. Acid Hybridization, Nucleic . Acid Hybridizations, Nucleic . Genomic Hybridizations . Hybridization, Genomic . Hybridization, Nucleic Acid . Hybridizations, Genomic . Hybridizations, Nucleic Acid . Nucleic Acid Hybridizations . Genomic Hybridization . Widely used technique which exploits the ability of complementary sequences in single-stranded DNAs or RNAs to pair with each other to form a double helix. Hybridization can take place between two complimentary DNA sequences, between a single-stranded DNA and a complementary RNA, or between two RNA sequences. The technique is used to detect and isolate specific sequences, measure homology, or define other characteristics of one or both strands. (Kendrew, Encyclopedia of Molecular Biology, 1994, p503) . 0.57