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"RNA, nuclear"¿¡ ´ëÇÑ °Ë»ö °á°úÀÔ´Ï´Ù. °Ë»ö °á°ú º¸´Â µµÁß¿¡ Tab ۸¦ ´©¸£½Ã¸é °Ë»ö âÀÌ ¼±Åõ˴ϴÙ.
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  • ¿µ¹®
    ÇѱÛ
  • nuclear paralysis
    ÇÙ(¼º)¸¶ºñ.
  • nuclear paralysis
    ÇÙ¼º¸¶ºñ
  • nuclear paramagnetic resonance
    ÇÙ »óÀÚ¼º °ø¸í
  • nuclear paramagnetism
    ÇÙ »óÀÚ¼º
  • nuclear phenomena
    ÇÙÇö»ó
  • nuclear physics
    ÇÙ¹°¸®ÇÐ.
  • nuclear polyhedrosis virus
    ÇÙ Æú¸®Çìµå·ÐÇü¼º ¹ÙÀÌ·¯½º
  • nuclear pore
    ÇÙ°ø
  • nuclear pore
    ÇÙ
  • nuclear pore
    ÇÙ±¸¸Û
  • nuclear power
    ÇÙ·Â
  • nuclear power
    ÇÙ·Â.
  • nuclear powered pacemaker
    ÇÙÀüÁö½É¹Ú Á¶À²±â.
  • nuclear proliferation =nucleosis
    ÇÙÁõ½Ä(ú·ñòãÖ).
  • nuclear protein antigen
    Çٴܹé(Áú)Ç׿ø
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  • ¿µ¹®
    ÇѱÛ
  • RNA processing
    RNA ´Ùµë±â
  • RNA puff
    RNA ÆÛÇÁ
  • RNA replicase
    RNA ¸®Çø®ÄÉÀ̽º
  • RNA sequencing
    RNA ¼­¿­ °áÁ¤(ßí֪̽ïÒ)
  • RNA splicing
    RNA ½ºÇöóÀ̽Ì
  • RNA synthesizer
    RNA ÇÕ¼º±â(ùêà÷Ðï)
  • RNA synthetase
    RNA ½ÅÅ×Å×À̽º
  • satellite RNA
    À§¼º(êÛàø) RNA
  • small cytoplasmic RNA
    ¼Ò(á³) ¼¼Æ÷Áú(á¬øàòõ)RNA
  • soluble RNA
    °¡¿ë(ʦéÁ) RNA
  • stripped transfer RNA
    ³ª(Ñß) Àü´Þ(îîÓ¹)RNA
  • suppressor transfer RNA
    ¾ï¾Ð(åääâ) Àü´Þ(îîÓ¹) RNA
  • synthetic messenger RNA
    ÇÕ¼º(ùêà÷) Àü·É(îîÖµ)RNA
  • template RNA
    ƲRNA
  • t-like RNA
    tÀÚÇü (í®úþ) RNA
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HNF hepatocyte nuclear factor
HNF1A hepatocyte nuclear factor-1-alpha
hnRNA heterogeneous nuclear ribonucleic acid
hnRNP heterogeneous nuclear ribonucleoprotein
HNRP heterogenous nuclear ribonucleoprotein
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RBD RNA binding Domains
RISH RNA in situ hybridization
RNAi RNA interference
RRM RNA Recognition Motif
RHA RNA helicase A
CancerWEB ¿µ¿µ ÀÇÇлçÀü À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 6
antisense RNA <molecular biology> A complementary RNA sequence that binds to (and thus blocks the transcription of) a naturally-occuring (sense) messenger RNA molecule.
These proteins can be used to selectively turn off production of certain proteins or block viral genetic instructions, by marking them for destruction by cellular enzymes, in order to prevent the building of new virus or the infection of new cells.
(09 Oct 1997)
bacteriophage T3 RNA polymerase <enzyme> Used for the rapid generation of strand-specific RNA molecules that can be used for the identification of genes in hybridization experiments
Registry number: EC 2.7.7.-
Synonym: t3 RNA polymerase
(26 Jun 1999)
cap II RNA(nucleoside-2'-)methyltransferase <enzyme> Converts cap i-terminated mRNA to cap II-terminated mRNA
Registry number: EC 2.1.1.-
Synonym: cap II methylase
(26 Jun 1999)
cap I RNA (nucleoside-2'-)methyltransferase <enzyme> Converts cap 0-terminated mRNA to cap i-terminated mRNA
Registry number: EC 2.1.1.-
Synonym: cap I methylase
(26 Jun 1999)
p68 RNA helicase <enzyme> An RNA helicase isolated from uv-induced tumours in mice; amino acid sequence has been determined
Registry number: EC 2.7.7.-
Synonym: dead box helicase p68
(26 Jun 1999)
masked messenger RNA <molecular biology> Long lived and stable mRNA found originally in the oocytes of echinoderms and constituting a store of maternal information for protein synthesis that is unmasked (derepressed) during the early stages of morphogenesis.
In these early stages the rate of cell division is so rapid that transcription from the embryonic genome cannot occur. Undoubtedly not restricted to oocytes and the term can be applied to any mRNA which is present in inactive form.
(18 Nov 1997)
ribosomal RNA <molecular biology> A nucleic acid found in all living cells. Plays a role in transferring information from DNA to the protein-forming system of the cell.
(16 Dec 1997)
messenger-like RNA An ill-defined form of RNA, of high molecular weight, that never leaves the nucleus and is thought to be the precursor of messenger RNA.
(05 Mar 2000)
messenger RNA <molecular biology> Single stranded RNA molecule that specifies the amino acid sequence of one or more polypeptide chains. This information is translated during protein synthesis when ribosomes bind to the mRNA.
In prokaryotes, mRNA is normally formed by splicing a large primary transcript from a DNA sequence and protein synthesis starts while the mRNA is still being synthesised. Prokaryote mRNAs are usually very short lived (average t 1/2 is 5mins.).
In contrast, in eukaryotes the primary transcripts (HnRNA) are synthesised in the nucleus and they are extensively processed to give the mRNA that is exported to the cytoplasm where protein synthesis takes place.
This processing includes the addition of a 5' 5' linked 7 methyl guanylate cap at the 5' end and a sequence of adenylate groups at the 3' end, the poly A tail, as well as the removal of any introns and the splicing together of exons, only 10% of HnRNA leaves the nucleus.
Eukaryote mRNAs are comparatively long lived with a half life ranging from 30minutes to 24 hours.
(27 Jun 1999)
GTP-RNA guanylyltransferase <enzyme> Catalyses addition of GMP residue to 3'-ends of oligonucleotide primers
Registry number: EC 2.7.7.-
Synonym: terminal guanylyltransferase
(26 Jun 1999)
RNA <molecular biology> A nucleic acid found in all living cells. Plays a role in transferring information from DNA to the protein-forming system of the cell.
(16 Dec 1997)
RNA 2'-O-methyltransferase <enzyme> Methylates 2'-hydroxyl group of ribose moieties of ribosomal RNA; highest activity poly (c) is a synthetic substrate
Registry number: EC 2.1.1.-
Synonym: nucleolar 2'-o-methyltransferase
(26 Jun 1999)
RNA 3'-terminal phosphate cyclase <enzyme> ATP dependent; forms 2',3' terminal cyclic phosphate on RNA which is then the substrate for RNA ligase of hela cells
Registry number: EC 6.5.-
Synonym: RNA tph cyclase
(26 Jun 1999)
RNA, antisense An RNA molecule which, by binding to a complementary sequence in either RNA or DNA, inhibits the function and/or completion of synthesis of the latter molecule. It is involved in various regulatory systems in vivo. Artificial antisense rnas have been used to inhibit translation of specific mRNA molecules both in living cells (eukaryotic and bacterial) and in cell-free systems.
(12 Dec 1998)
RNA, archaeal Ribonucleic acid in archaea having regulatory and catalytic roles as well as involvement in protein synthesis.
(12 Dec 1998)
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