「Ribosomal」の共起表現一覧(1語右で並び替え)
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Targets may include | ribosomal and spliceosomal RNAs but the exact function |
Targets include | ribosomal and spliceosomal RNAs as well as the Trypano |
sent) and Lynn Dalgarno (1935-Present), is a | ribosomal binding site in the mRNA, generally located |
antisense interaction by base pairing at the | ribosomal binding site. |
The cap also helps in | ribosomal binding. |
ular-transcription and translation machinery | ribosomal complexes. |
chanisms underlying protein biosynthesis, by | ribosomal crystallography, a research line she pioneer |
eir distinct nature became clear through 18S | ribosomal DNA (rDNA) sequencing, they were relocated i |
Sequencing of | ribosomal DNA has shown that these trap types occur in |
ircles (ERC) are self replicating circles of | ribosomal DNA found in some strains of yeast and thoug |
Phylogenetic analysis based on the 16S | ribosomal DNA sequence showed that the strain has the |
Phylogenetic analysis of | ribosomal DNA has shown that within the genus Armillar |
Analysis of small subunit | ribosomal DNA sequences showed P. acicularis to be mor |
gnath origins: Long branches revealed by 18S | ribosomal DNA" Systematic Biology 45(2): 223-246 1996 |
d in 1992 that compared sequences of nuclear | ribosomal DNA. |
(2a and 2b) which are transcribed through a | ribosomal frameshift mechanism. |
The HIV | Ribosomal frameshift signal is an RNA element. |
A | ribosomal frameshift allows alternative translation of |
HIV uses a system called -1 | ribosomal frameshifting to produce the required ratio |
The Insertion sequence IS1222 | ribosomal frameshifting element is an RNA element foun |
This pseudoknot stimulates programmed -1 | ribosomal frameshifting (PRF-1) which in turn stimulat |
Ribosomal frameshifting is promoted by a pseudoknot st | |
The | ribosomal frameshifting element stimulates frameshifti |
ery' repeat sequence which allows programmed | ribosomal frameshifting. |
RNA found in coronaviruses that can promote | ribosomal frameshifting. |
Phylogenetic analysis of the 18S | ribosomal gene has revealed that the Acanthocephala ar |
ons in nuclear and mitochondrial protein and | ribosomal genes. |
ed from basal protein turnover and defective | ribosomal products. |
It is found within intron 3 of the L21 | ribosomal protein gene. |
he 5' untranslated regions of mRNAs encoding | ribosomal protein L19 (rplS). |
onsistently found upstream of genes encoding | ribosomal protein S1, a subunit of the ribosome. |
When cellular concentrations of the | ribosomal protein are high, excess protein will bind t |
is encoded within an intron of the gene for | ribosomal protein L7a in mammals, chicken and Fugu. |
ons of mRNAs encoding the L13-S9 (rplM-rpsI) | ribosomal protein operon. |
ysis of DNA sequence data (nDNA RAG-1 and S7 | ribosomal protein intron 1, and mtDNA cytochrome b) co |
When cellular concentrations of the | ribosomal protein are not high, they are occupied in t |
by computational screening of the introns of | ribosomal protein genes for conserved C/D box sequence |
is encoded within an intron of the gene for | ribosomal protein L5 in mammals, but within introns of |
U18B, U18C) which are encoded in introns of | ribosomal protein L1.. |
Translation of the mRNA produces 4 | ribosomal protein products, one of which (S4) acts as |
U38 is located in introns 4 and 5 of | ribosomal protein S8 in human and in the homologous ge |
expressed from the intron of their host gene | ribosomal protein Rps13. |
This family is a putative | ribosomal protein leader autoregulatory structure foun |
by computational screening of the introns of | ribosomal protein genes for conserved C/D box sequence |
e is encoded within intron 5 of the gene for | ribosomal protein L13a . |
A | ribosomal protein leader is a mechanism used in cells |
f protein synthesis through activation of S6 | Ribosomal protein (a component of the ribosome) and ot |
ysis of DNA sequence data (nDNA RAG-1 and S7 | ribosomal protein intron 1, and mtDNA cytochrome b), t |
Many examples of | ribosomal protein leaders are known in bacteria. |
This enzyme is also called | ribosomal protein S18 acetyltransferase. |
Ribosomal protein leaders are RNA sequences that are a | |
Therefore, they are presumed to be | ribosomal protein leaders, i.e., cis-regulatory elemen |
They are both encoded in the intronsof the | ribosomal protein RPL17 gene. |
They are both encoded in the introns of the | ribosomal protein S3 . |
s laevis it is located within the introns of | ribosomal protein S1 |
leads to the synthesis of more copies of the | ribosomal protein. |
A reduced amount of rRNA means that | ribosomal proteins (r-proteins) will be translated but |
larity to other RNA-binding proteins such as | ribosomal proteins S12, L7a, and L30 and the snoRNP pr |
transferase activity is not mediated by any | ribosomal proteins but by ribosomal RNA (rRNA), a ribo |
as well as assembly of those rRNAs with the | ribosomal proteins. |
stream of exon-exon junctions may facilitate | ribosomal recruitment prior to displacement by a "pion |
Other names in common use include | ribosomal ribonucleate adenosine 2'-methyltransferase, |
Other names in common use include | ribosomal ribonucleate adenine 6-methyltransferase, ge |
o guide the pseudouridylation of U55 of 5.8S | ribosomal RNA (rRNA). |
on in RNA splicing while snoRNPs function in | ribosomal RNA processing. |
loning and sequencing of a gene encoding 16S | ribosomal RNA from a novel hyperthermophilic archaebac |
guide the pseudouridylation of U1004 of 18S | ribosomal RNA (rRNA). |
The | ribosomal RNA and transfer RNA genes belong to the cla |
to guide the pseudouridylation of U36 of 18S | ribosomal RNA (rRNA). |
cies, including messenger RNA, transfer RNA, | ribosomal RNA and miRNA. |
d to guide the 2'O-ribose methylation of 18S | ribosomal RNA (rRNA) at residue G436. |
d to guide the 2'O-ribose methylation of 28S | ribosomal RNA (rRNA) residue C4506 . |
d to guide the 2'O-ribose methylation of 18S | ribosomal RNA (rRNA) residue G601. |
iated as 12S) is a 959 nt long mitochondrial | ribosomal RNA (rRNA). |
icted to guide 2'O-ribose methylation of 28s | ribosomal RNA (rRNA) at position U3797. |
idylation of residues U4373 and U4427 of 28S | ribosomal RNA (rRNA) . |
d to guide the 2'O-ribose methylation of 28S | ribosomal RNA (rRNA) at residue G3923. |
predicted to guide 2'O-ribose methylation of | ribosomal RNA (rRNA) 28S at residue C3866. |
d to guide the 2'O-ribose methylation of 28S | ribosomal RNA (rRNA) residue A3764 . |
e methylation of 2'-O-ribose residues in 28S | ribosomal RNA (rRNA). |
d to guide the 2'O-ribose methylation of 28S | ribosomal RNA (rRNA) residue A4493 . |
d to guide the 2'O-ribose methylation of 28S | ribosomal RNA (rRNA) residue G4020. |
to guide the 2'-O-ribose methylation of 28s | ribosomal RNA (rRNA) at residue A4531. |
d to guide the 2'O-ribose methylation of 18S | ribosomal RNA (rRNA) reside A590. |
guide the 2'O-ribose methylation of the 28S | ribosomal RNA (rRNA) at residue A3697 . |
Although it was initially designed for | ribosomal RNA data, it can be used for any nucleic and |
and is involved in the 3' end processing of | ribosomal RNA and snoRNAs. |
icted to acts as a methylation guide for 25S | ribosomal RNA in plants . |
However, the GC content of | ribosomal RNA (rRNA) and transfer RNA (tRNA) genes in |
t researchers to use genetic material called | ribosomal RNA as a molecular probe to detect pathogeni |
posed to acts as a methylation guide for 18S | ribosomal RNA in plants . |
uide 2'O-ribose methylation of the large 28S | ribosomal RNA (rRNA) subunit on residue G4198 . |
d to guide the 2'O-ribose methylation of 18S | ribosomal RNA (rRNA) residue C517. |
icted to acts as a methylation guide for 25S | ribosomal RNA in plants . |
an open reading frame though to code for 7s | ribosomal RNA in humans but not in mice or cows, where |
RNA that acts as a methylation guide for 18S | ribosomal RNA in plants. |
posed to acts as a methylation guide for 18S | ribosomal RNA (rRNA) in plants . |
When 16S | ribosomal RNA gene sequencing and other research showe |
d to guide the 2'O-ribose methylation of 18S | ribosomal RNA (rRNA) at residue A99 3 |
d to guide the 2'O-ribose methylation of 28S | ribosomal RNA (rRNA) at residue C3848.. Its is related |
In molecular biology the 5.8S | ribosomal RNA (5.8S rRNA) is a non-coding RNA componen |
coccus which function in the modification of | ribosomal RNA (rRNA) and transfer RNA (tRNA). |
he eukaryotic cell, which is a major site of | ribosomal RNA and snRNA biogenesis, but there is no co |
Genes encoding | ribosomal RNA and spacers occur in tandem repeats that |
ea-1 RNA motif is also sometimes adjacent to | ribosomal RNA operons. |
late 1970s, primarily based on small subunit | ribosomal RNA sequence comparisons. |
t that inserts at a specific site in the 28S | ribosomal RNA (rRNA) genes of most insect genomes In o |
18S | ribosomal RNA (abbreviated 18S rRNA) is a part of the |
5S | ribosomal RNA (5S rRNA) is a component of the large ri |
lcerates derives from comparisons of nuclear | ribosomal RNA genes, mitochondrial ribosomal RNA genes |
sed of proteins and single-strand RNA called | ribosomal RNA (rRNA). |
guide the pseudouridylation of U4938 of 28S | ribosomal RNA (rRNA). |
Genotypically, studies of 16s | ribosomal RNA suggested B. kururiensis belonged to the |
o guide the pseudouridylation of U119 of 18S | ribosomal RNA (rRNA). |
edicted to guide the 2'-O-methylation of 28S | ribosomal RNA (rRNA) residue A-2634 . |
guide the pseudouridylation of U4393 of 28S | ribosomal RNA (rRNA). |
guide the pseudouridylation of U1692 of 18S | ribosomal RNA (rRNA). |
guide the pseudouridylation of U1664 of 28S | ribosomal RNA (rRNA). |
guide the pseudouridylation of U3801 of 28S | ribosomal RNA (rRNA). |
tiated on the basis of the sequence of their | ribosomal RNA gene. |
guide the pseudouridylation of U4643 of 28S | ribosomal RNA (rRNA). |
16S | ribosomal RNA (or 16S rRNA) is a component of the 30S |
o guide the pseudouridylation of U649 of 18S | ribosomal RNA (rRNA). |
icted to guide 2'O-ribose methylation of 18S | ribosomal RNA(rRNA) at residue A166 . |
Based on analysis of mitochondrial 12S | ribosomal RNA, 16S ribosomal RNA and cytochrome-c oxid |
vation that ribosome modulation factor binds | ribosomal RNA, and many cis-regulatory RNAs called rib |
t is the eukaryotic nuclear homologue of 16S | ribosomal RNA, which exists only in Prokaryotes. |
y with an invariant region of eukaryotic 28S | ribosomal RNA. |
o act as a 2'-O-ribose methylation guide for | ribosomal RNA. |
o act as a 2'-O-ribose methylation guide for | ribosomal RNA. |
o act as a 2'-O-ribose methylation guide for | ribosomal RNA. |
o act as a 2'-O-ribose methylation guide for | ribosomal RNA. |
d lacks any significant complementarity with | ribosomal RNA. |
mily of ncRNAs involved in the maturation of | ribosomal RNA. |
for the post-transcriptional modification of | ribosomal RNAs (rRNA) and in some cases of small nucle |
n-functional RNA situated between structural | ribosomal RNAs (rRNA) on a common precursor transcript |
is sometimes adjacent to operons containing | ribosomal RNAs. |
re ribozymes such as the group II intron and | ribosomal RNAs. |
ractions, and multiple examples are found in | ribosomal RNAs. |
Serine/threonine protein kinase p90-kDa | ribosomal S6 kinase (RSK) is in involved in developmen |
He discovered an artificial | ribosomal self-assembly (1963-66). |
The large 50S | ribosomal subunit contains two rRNA species (the 5S an |
IF1 associates with the 30S | ribosomal subunit in the A site and prevents an aminoa |
ubsequently brings the initiation factor and | ribosomal subunit in close enough contact to associate |
of the 5S rRNA from the Escherichia coli 50S | ribosomal subunit and is based on a cryo-electron micr |
P position (bound to the A site of the small | ribosomal subunit and to the P site of the large subun |
Large | ribosomal subunit has a role in protein folding both i |
rRNA is a component of the small eukaryotic | ribosomal subunit (40S). |
ekacin, work by binding to the bacterial 30S | ribosomal subunit, causing misreading of t-RNA which c |
olides block protein synthesis by binding to | ribosomal subunits and may also inhibit the formation |
complete high-resolution structures of both | ribosomal subunits and discovered within the otherwise |
s with 23S, aiding in the binding of the two | ribosomal subunits (50S+30S) |
is common in bacteria to control leveles of | ribosomal subunits, using RNA motifs called ribosomal |
tidyl transferase, in addition to inhibiting | ribosomal translocation. |
th taken by the nascent proteins, namely the | ribosomal tunnel, and recently revealed the dynamics e |
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