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(10)
Proteomics
(2)
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MassIVE
(2)
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MaXis 4G
(1)
Orbitrap Fusion
(1)
Publication Date
2019
(1)
2018
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2022
(3)
2020
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Di-chlorido-(4,4'-dimethyl-2,2'-bi-pyridine-κ
2
N
,
N
')zinc(II) aceto-nitrile monosolvate.
Not available
S-EPMC9815126
|
biostudies-literature
Cite
[μ2-trans-1,2-Bis-(pyridin-4-yl)ethene-κ(2) N:N']bis-{[1,2-bis-(pyridin-4-yl)ethene-κN]bis-[N-(2-hydroxy-eth-yl)-N-iso-propyl-dithio-carbamato-κ(2) S,S']cadmium} aceto-nitrile tetra-solvate: crystal structure and Hirshfeld surface analysis.
Not available
S-EPMC4971847
|
biostudies-literature
Cite
Crystallographic Structures of IlvN·Val/Ile Complexes: Conformational Selectivity for Feedback Inhibition of Aceto Hydroxy Acid Synthases.
Not available
S-EPMC6668035
|
biostudies-literature
Cite
[1,2-Bis(di-phenyl-phosphan-yl)ethane-κ
2
P
,
P
]chlorido-(isonicotinamide-κ
N
)palladium(II) nitrate aceto-nitrile monosolvate.
Not available
S-EPMC9462291
|
biostudies-literature
Cite
catena
-Poly[[[bis-(aceto-nitrile-κ
N
)(4,4'-dimeth-oxy-2,2'-bi-pyridine-κ
2
N
,
N
')copper(II)]-μ-tri-fluoro-methane-sulfonato-κ
2
O
:
O
'] tri-fluoro-methane-sulfonate].
Not available
S-EPMC9462164
|
biostudies-literature
Cite
Diaceto-nitrile-(2,2'-bi-pyridine-κ
2
N
,
N
')palladium(II) bis-(tri-fluoro-methane-sulfonate).
Not available
S-EPMC9815130
|
biostudies-literature
Cite
Exploring the mitochondrial degradome by the TAILS proteomics approach in a cellular model of Parkinsons disease
Development of a degradomics strategy which combines the isolation of mitochondria (surfactants-based method) with the dimethylation-TAILS protocol for N-terminome enrichment.
ORGANISM(S):
Homo Sapiens (ncbitaxon:9606)
2019-05-17
|
MSV000083795
|
MassIVE
Cite
Cytoplasmic HDAC4 recovers synaptic function in the 3×Tg mouse model of Alzheimer's disease.
Not available
S-EPMC10099707
|
biostudies-literature
Cite
Nucleoporin 153 deficiency in adult neural stem cells defines a pathological protein-network signature and defective neurogenesis in a mouse model of AD.
Not available
S-EPMC11373261
|
biostudies-literature
Cite
Activation of histamine type 2 receptors enhances intrinsic excitability of medium spiny neurons in the nucleus accumbens.
Not available
S-EPMC9325548
|
biostudies-literature
Cite
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