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Proteomics
(2)
Unknown
(1)
Organisms
Andropogon gerardi
(2)
Bacteria
(2)
Borrelia
(2)
Botrytis cinerea
(2)
Candida albicans
(2)
Canis lupus familiaris
(2)
Clostridium perfringens
(2)
Cnidaria
(2)
Eukaryota
(2)
Fasciola
(2)
Fungi
(2)
Hepatitis B virus
(2)
Human betaherpesvirus 5
(2)
Influenza C virus
(2)
Japanese encephalitis virus group
(2)
Miscanthus x giganteus
(2)
Mycobacterium tuberculosis
(2)
Orthoflavivirus
(2)
Panicum virgatum
(2)
Platyhelminthes
(2)
Rickettsia
(2)
Saccharomyces cerevisiae
(2)
Schizosaccharomyces pombe
(2)
Severe acute respiratory syndrome coronavirus 2
(2)
Shigella
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Sorghastrum nutans
(2)
Streptococcus pneumoniae
(2)
Toxoplasma gondii
(2)
Tripsacum dactyloides
(2)
Trypanosoma cruzi
(2)
Repository
pride
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Tissue
B cell
(1)
Dendritic cell
(1)
Embryonic stem cell
(1)
Enterocyte
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Granulocyte
(1)
Macrophage
(1)
Monocyte
(1)
Small intestine
(1)
Spleen
(1)
T cell
(1)
Disease
Pelger-Huet anomaly
(1)
Technology Type
Affinity purification coupled with mass spectrometry proteomics
(2)
Mass Spectrometry
(2)
Shotgun proteomics
(2)
Publication Date
2021
(2)
Release Date
2022
(1)
Lab affiliation
Blizard Institute, Centre for Genomics and Child Health, Barts and The London School of Medicine and Dentistry, Queen Mary University of London, London, E1 2AT, UK
(2)
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Characterization of a novel Lbr Mutation
We have characterised the product of a novel N terminal deletion of Lbr gene.
ORGANISM(S):
Homo sapiens (Human)
Mus musculus (Mouse)
2021-09-10
|
PXD024111
|
Pride
Lamin b receptor
Cite
Role of Chd8 in Xist regulation
In this project, we have studied the role of Chd8 in Xist regulation and XCI initiation by means of Chd8 Knock-Downs (KD) and Knock-Out (KO).
ORGANISM(S):
Homo sapiens (Human)
Mus musculus (Mouse)
2021-09-10
|
PXD024155
|
Pride
Epigenetics
X chromosome inactivation (xci)
Xist
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RIF1 and KAP1 differentially regulate the choice of inactive vs. active X chromosomes
Not available
S-SCDT-EMBOJ-2020-105862
|
biostudies-other
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