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Nucleic Acids
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D009696 |
[High molecular weight polymers containing a mixture of purine and pyrimidine nucleotides chained together by ribose or deoxyribose linkages.
] |
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Nucleic Acids, Nucleotides, and Nucleosides
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D009706 |
[Complex compounds of high molecular weight occurring in living cells. These are basically of two types, ribonucleic (RNA) and deoxyribonucleic (DNA) acids, both of which consist of nucleotides (nucleoside phosphates linked together by phosphate bridges).
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Nucleobase Transport Proteins
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D033702 |
[Proteins involved in the transport of nucleobases such as PYRIMIDINES and PURINES across membranes.
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Nucleobase, Nucleoside, Nucleotide, and Nucleic Acid Transport Proteins
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D033701 |
[A broad class of proteins involved in the transport of nucleobases, NUCLEOSIDES; NUCLEOTIDES; and NUCLEIC ACIDS; across membranes.
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Nucleobindins
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D000080866 |
[A DNA and calcium binding protein which plays a role in calcium homeostasis.
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Nucleocapsid
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D019251 |
[A protein-nucleic acid complex which forms part or all of a virion. It consists of a CAPSID plus enclosed nucleic acid. Depending on the virus, the nucleocapsid may correspond to a naked core or be surrounded by a membranous envelope.
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Nucleocapsid Proteins
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D019590 |
[Viral proteins found in either the NUCLEOCAPSID or the viral core (VIRAL CORE PROTEINS).
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Nucleocytoplasmic Transport Proteins
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D029543 |
[Proteins involved in the process of transporting molecules in and out the cell nucleus. Included here are: NUCLEOPORINS, which are membrane proteins that form the NUCLEAR PORE COMPLEX; KARYOPHERINS, which carry molecules through the nuclear pore complex; and proteins that play a direct role in the transport of karyopherin complexes through the nuclear pore complex.
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Nucleolus Organizer Region
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D009697 |
[The chromosome region which is active in nucleolus formation and which functions in the synthesis of ribosomal RNA.
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Nucleons
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D000071940 |
[Subatomic particles that are either protons or neutrons.
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Nucleoplasmins
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D056489 |
[A family of histone molecular chaperones that play roles in sperm CHROMATIN decondensation and CHROMATIN ASSEMBLY in fertilized eggs. They were originally discovered in XENOPUS egg extracts as histone-binding factors that mediate nucleosome formation in vitro.
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Nucleopolyhedroviruses
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D017924 |
[Genera of the family BACULOVIRIDAE, characterized by the formation of crystalline, polyhedral occlusion bodies in the host cell nucleus. Nucleopolyhedrovirus is the common name for viruses from the Alphabaculovirus, Deltabaculovirus, or Gammabaculovirus genera.
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Nucleoproteins
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D009698 |
[Proteins conjugated with nucleic acids.
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Nucleoside Deaminases
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D009700 |
[Catalyze the hydrolysis of nucleosides with the elimination of ammonia.
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Nucleoside Diphosphate Kinase D
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D061107 |
[A nucleoside diphosphate kinase subtype that is localized to the intermembrane space of MITOCHONDRIA. It is believed to play a role in the synthesis of triphosphonucleotides using ATP formed through OXIDATIVE PHOSPHORYLATION.
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Nucleoside Diphosphate Sugars
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D009702 |
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Nucleoside Q
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D009704 |
[A modified nucleoside which is present in the first position of the anticodon of tRNA-tyrosine, tRNA-histidine, tRNA-asparagine and tRNA-aspartic acid of many organisms. It is believed to play a role in the regulatory function of tRNA. Nucleoside Q can be further modified to nucleoside Q*, which has a mannose or galactose moiety linked to position 4 of its cyclopentenediol moiety.
] |
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Nucleoside Transport Proteins
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D033703 |
[Proteins involved in the transport of NUCLEOSIDES across cellular membranes.
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Nucleoside-Diphosphate Kinase
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D009701 |
[An enzyme that is found in mitochondria and in the soluble cytoplasm of cells. It catalyzes reversible reactions of a nucleoside triphosphate, e.g., ATP, with a nucleoside diphosphate, e.g., UDP, to form ADP and UTP. Many nucleoside diphosphates can act as acceptor, while many ribo- and deoxyribonucleoside triphosphates can act as donor. EC 2.7.4.6.
] |
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Nucleoside-Phosphate Kinase
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D009703 |
[An enzyme that catalyzes reversible reactions of a nucleoside triphosphate, e.g., ATP, with a nucleoside monophosphate, e.g., UMP, to form ADP and UDP. Many nucleoside monophosphates can act as acceptor while many ribo- and deoxyribonucleoside triphosphates can act as donor. EC 2.7.4.4.
] |