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「r rna」の共起表現一覧(2語左で並び替え)

該当件数 : 128



A 3D representation of a 5S rRNA molecule.
al ribonucleate adenosine 2'-methyltransferase, rRNA adenosine 2'-methylase, RNA-pentose methylase,
A reduced amount of rRNA means that ribosomal proteins (r-proteins) will
e software package for phylogenetic analysis of rRNA and other biological sequences.
tures proteins, including RNases, and separates rRNA from ribosomes, while phenol, isopropanol and w
c regions of rDNA (for small- and large-subunit rRNA), variation among individual rDNA repeats can s
ition to these, mitochondrial and chloroplastic rRNA are also amplified.
he 45S precursor that also contains 18S and 28S rRNA.
c organisms shows distinct bands of 28s and 18s rRNA, the 28s band being approximately twice as inte
ed identification methods are mainly based upon rRNA derived phylogenetic conclusions.
Trees based on rRNA show the Hartmannellidae as usually defined are
Binding between 5S rRNA and TFIIIA serves to both repress further trans
are usually reserved for sections that code for rRNA, whereas endolytic cleavage corresponds to tRNA
ue specific) and the lack of complementarity to rRNA and SnRNA.
The large 50S ribosomal subunit contains two rRNA species (the 5S and 23S rRNAs).
7 in Drosophila 28S and U1920 in Drosophila 18S rRNA to pseudouridine .
876 and 2956 to pseudouridine in Drosophila 28S rRNA .
uridine 1192 to pseudouridine in Drosophila 28S rRNA .
377 and 1279 to pseudouridine in Drosophila 18S rRNA .
modification of uridine 3316 in Drosophila 28S rRNA to pseudouridine
In enzymology, a rRNA (adenine-N6-)-methyltransferase (EC 2.1.1.48)
In enzymology, a rRNA (adenosine-2'-O-)-methyltransferase (EC 2.1.1.6
bonucleic acid-adenine (N6) methylase, ErmC 23S rRNA methyltransferase, and S-adenosyl-L-methionine:
Eukaryotic 5S rRNA is synthesised by RNA polymerase III, whereas m
attractive hypothesis in view of the fact that rRNA methyltransferases can bind RNA, and therefore
y, thermophily and monophyly from environmental rRNA sequences".
r, in one case it is far (3 kilobases) from the rRNA methyltransferase gene.
g f-AFLP, automated ribotyping, full-length 16S rRNA gene sequencing and DNA-DNA hybridization.
animal mitochondria genomes contain 37 genes, 2 rRNA, 22 tRNA and 13 mRNA.
irect the pseudouridylation of U97 in human 18S rRNA.
In the nucleus it is involved in precursor rRNA processing, where it cleaves the internal trans
Its function is thought to be in 5.8S rRNA ribosome translocation.
des the methylation of 2'-O-ribose sites in 28S rRNA.
ght be more proteins or transcripts involved in rRNA than previously and/or that some snoRNAs have d
m primers which amplify all RNA which is mostly rRNA, miRNA microarray ligate an oligonucleotide to
oteins preferentially bind to its complementary rRNA if it is present, rather than mRNA.
/ACA snoRNA to the correct region of its target rRNA.
o guide 2'O-ribose methylation of the large 28S rRNA on residue U4276.
es of this enzyme are S-adenosyl methionine and rRNA, whereas its two products are S-adenosylhomocys
es of this enzyme are S-adenosyl methionine and rRNA, whereas its two products are S-adenosylhomocys
Overall, 50S is generally monolithic and rRNA structure is stabilized by proteins.
from Hypsipetes than Iole is, whereas mtDNA 12S rRNA and 16S rRNA sequence data places it actually c
acement was eventually verified using mtDNA 12S rRNA sequence data.
Lemuridae has been dated to 26.1 ±3.3 mya while rRNA sequences of mtDNA place the split at 24.9 ±3.6
ecause it a) is (due to the high copy number of rRNA genes) easy to amplify even from small quantiti
According to the comparisons of 16S rRNA genes, Ignicoccus represents a new, deeply bran
snoRNAs and guides the pseudouridylation of 28S rRNA subunit at position U4565.
rum pernix based on comparative analysis of 23S rRNA sequences".
Carl Woese pioneered this use of 16S rRNA.
e the pseudouridylation of residue U3797 of 28S rRNA.
cted to guide the 2'O-ribose methylation of 28S rRNA C2279 .
not predicted to guide to 2'O-methylation of a rRNA or snRNA.
mes been included in the Rhizaria, based on 18S rRNA gene sequencing, it has been concluded that the
Based on 16S rRNA gene sequences, it is most similar to S. perori
Based on 16S rRNA analysis, P. straminea has been placed in the P
Based on 16S rRNA analysis, P. putida has been placed in the P. p
This binding causes a reduction in rRNA transcription.
roliferation and it may also be a regulator for rRNA transcription.
As a result, 16S rRNA gene sequencing has become prevalent in medical
ose methylation of the large 28S ribosomal RNA ( rRNA) subunit on residue G4198 .
RNA situated between structural ribosomal RNAs ( rRNA) on a common precursor transcript.
he 2'O-ribose methylation of 18S ribosomal RNA ( rRNA) residue C517.
s as a methylation guide for 18S ribosomal RNA ( rRNA) in plants .
he 2'O-ribose methylation of 18S ribosomal RNA ( rRNA) at residue A99 3
he 2'O-ribose methylation of 28S ribosomal RNA ( rRNA) at residue C3848.. Its is related to mouse sno
function in the modification of ribosomal RNA ( rRNA) and transfer RNA (tRNA).
ts at a specific site in the 28S ribosomal RNA ( rRNA) genes of most insect genomes In order to inser
ins and single-strand RNA called ribosomal RNA ( rRNA).
seudouridylation of U4938 of 28S ribosomal RNA ( rRNA).
pseudouridylation of U119 of 18S ribosomal RNA ( rRNA).
uide the 2'-O-methylation of 28S ribosomal RNA ( rRNA) residue A-2634 .
seudouridylation of U4393 of 28S ribosomal RNA ( rRNA).
seudouridylation of U1692 of 18S ribosomal RNA ( rRNA).
seudouridylation of U1664 of 28S ribosomal RNA ( rRNA).
seudouridylation of U3801 of 28S ribosomal RNA ( rRNA).
seudouridylation of U4643 of 28S ribosomal RNA ( rRNA).
pseudouridylation of U649 of 18S ribosomal RNA ( rRNA).
pseudouridylation of U55 of 5.8S ribosomal RNA ( rRNA).
seudouridylation of U1004 of 18S ribosomal RNA ( rRNA).
pseudouridylation of U36 of 18S ribosomal RNA ( rRNA).
he 2'O-ribose methylation of 18S ribosomal RNA ( rRNA) at residue G436.
he 2'O-ribose methylation of 28S ribosomal RNA ( rRNA) residue C4506 .
he 2'O-ribose methylation of 18S ribosomal RNA ( rRNA) residue G601.
) is a 959 nt long mitochondrial ribosomal RNA ( rRNA).
de 2'O-ribose methylation of 28s ribosomal RNA ( rRNA) at position U3797.
residues U4373 and U4427 of 28S ribosomal RNA ( rRNA) .
he 2'O-ribose methylation of 28S ribosomal RNA ( rRNA) at residue G3923.
guide 2'O-ribose methylation of ribosomal RNA ( rRNA) 28S at residue C3866.
he 2'O-ribose methylation of 28S ribosomal RNA ( rRNA) residue A3764 .
n of 2'-O-ribose residues in 28S ribosomal RNA ( rRNA).
by any ribosomal proteins but by ribosomal RNA ( rRNA), a ribozyme.
he 2'O-ribose methylation of 28S ribosomal RNA ( rRNA) residue A4493 .
he 2'O-ribose methylation of 28S ribosomal RNA ( rRNA) residue G4020.
e 2'-O-ribose methylation of 28s ribosomal RNA ( rRNA) at residue A4531.
he 2'O-ribose methylation of 18S ribosomal RNA ( rRNA) reside A590.
'O-ribose methylation of the 28S ribosomal RNA ( rRNA) at residue A3697 .
transcriptional modification of ribosomal RNAs ( rRNA) and in some cases of small nuclear RNAs (sRNAs
However, the GC content of ribosomal RNA ( rRNA) and transfer RNA (tRNA) genes in hyperthermoph
molecular biology the 5.8S ribosomal RNA (5.8S rRNA) is a non-coding RNA component of the large sub
The RNA molecules ( rRNA and tRNA) played an important role in the catal
5S ribosomal RNA (5S rRNA) is a component of the large ribosomal subunit
n to highly conserved primer binding sites, 16S rRNA gene sequences contain hypervariable regions th
o guide 2'O-ribose methylation of the small 18S rRNA on position A512.
equence and is located at the 3' end of the 16S rRNA in the ribosome.
The 3' end of the 16S rRNA (in a ribosome) binds to a sequence on the 5' e
seudouridylation of the U372 residue in the 28S rRNA subunit.
ol binds to A2451 and A2452 residues in the 23S rRNA of the ribosome and inhibits peptide bond forma
pseudouridylation of position U4522 of the 28S rRNA.
This structure is of the 5S rRNA from the Escherichia coli 50S ribosomal subunit
Read from 5' to 3', this polycistronic rRNA precursor transcript contains the 5' external t
For this reason many thousands of rRNA sequences are known and stored in specialized d
v., a unique halophilic archeon, with three 16s rRNA genes, that grows only in defined medium with g
-rRNA and has regions of complementarity to 28S rRNA.
ure found upstream of genes predicted to encode rRNA methyltransferases, possibly for 23S rRNA.
D is found in tRNA and rRNA molecules as a nucleoside; the corresponding nu
catalyze their own excision from mRNA, tRNA and rRNA precursors in a wide range of organisms.
ous small noncoding RNA genes, such as tRNA, 5S rRNA, SRP RNA and U6 snRNA genes , which are transcr
Unique 16S rRNA sequence.
It will decrease rRNA and other genes transcription but will increase
hael orders and families in accordance with 16S rRNA sequence data".
                                                                                                   


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