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11 Hits
検索条件 : 絞込み (MeSH = Methionine / metabolism)
生物種
リソース名
RRC ID
タイトル
ジャーナル
公開日
外部リンク
ヒト・動物細胞
PC-12(RCB0009)
74079
Neurite Outgrowth-Promoting Compounds from Cockscomb Hydrolysate.
Nutrients
2022-3-29
Pubmed
Full text
藻類
NIES-298
72554
The Self-Bleaching Process of Microcystis aeruginosa is Delayed by a Symbiotic Bacterium Pseudomonas sp. MAE1-K and Promoted by Methionine Deficiency.
Microbiol Spectr
2022-8-31
Pubmed
Full text
ヒト・動物細胞
201B7(HPS0063)
72045
Methionine metabolism regulates pluripotent stem cell pluripotency and differentiation through zinc mobilization.
Cell Rep
2022-7-19
Pubmed
Full text
線虫
tm737
59508
C. elegans
Tensin Promotes Axon Regeneration by Linking the Met-like SVH-2 and Integrin Signaling Pathways.
J Neurosci
2019-7-17
Pubmed
Full text
病原真核微生物
56291
Novel biosynthetic pathway for sulfur amino acids in Cryptococcus neoformans.
Curr Genet
2018-6-1
Pubmed
Full text
線虫
tm1011
,
tm1106
,
tm1108
,
tm1133
,
tm1375
,
tm1804
,
tm977
51377
Microbial metabolites regulate host lipid metabolism through NR5A-Hedgehog signalling.
Nat Cell Biol
2017-5-1
Pubmed
Full text
酵母
genomic DNA library (pTN-L1)
46356
A histone H3K9M mutation traps histone methyltransferase Clr4 to prevent heterochromatin spreading.
Elife
2016-9-20
Pubmed
Full text
原核生物(大腸菌)
ME8005
29887
P1 transduction: formation of heterogenotes upon cotransduction of bacterial genes with a P2 prophage.
Virology
1972-1-1
Pubmed
Full text
遺伝子材料
pUC18-HTK (with promoter) (RDB03436)
27711
Pseudouridine at position 55 in tRNA controls the contents of other modified nucleotides for low-temperature adaptation in the extreme-thermophilic eubacterium Thermus thermophilus.
Nucleic Acids Res
2011-3-1
Pubmed
Full text
遺伝子材料
Thermus thermophilus HB8 gene disruption plasmid TDs08C11 (THR023259)
5823
N7-Methylguanine at position 46 (m7G46) in tRNA from Thermus thermophilus is required for cell viability at high temperatures through a tRNA modification network.
Nucleic Acids Res
2010-1-1
Pubmed
Full text
情報
E.coli
1645
Conditional survival as a selection strategy to identify plant-inducible genes of Pseudomonas syringae.
Appl Environ Microbiol
2003-10-1
Pubmed
Full text