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We identified and quantified ubiquitination sites of WT RIPK1 and K627R mutant in TNF signaling pathway and 293T overexpression system
ORGANISM(S): Homo Sapiens Mus Musculus 
2020-10-23 | PXD022157 |
Expanding the genetic code has revolutionized our ability to study and manipulate biological systems through site-specific incorporation of noncanonical amino acids (ncAAs). However, current methods are primarily limited to single-type ncAA incorporation in mammalian cells owing to translation ineff...
ORGANISM(S): Homo Sapiens 
2025-11-04 | PXD070277 |
Alcoholic liver disease (ALD) poses a significant global health challenge, and the global proteome will change dynamically and dramatically for the response to alcohol stress. However, due to the lack of method for labeling and identification of tissue-specific nascent proteome in living mouse, the ...
ORGANISM(S): Homo Sapiens Mus Musculus 
2025-05-20 | PXD051725 |
To identify central protein kinases that potentially promote the maturation, we chemically induced liver progenitor cells (CLiPs) from mouse hepatocytes using a previously established protocol, and profiled the phosphoproteome and proteome of freshly isolated primary mouse hepatocytes (MHs) and ALBU...
ORGANISM(S): Homo Sapiens Mus Musculus 
2022-08-05 | PXD035829 |
To identify the immune peptides in SCLC tumour cells that can be processed and presented by HLA-I, we performed LC–MS/MS analysis on 11 SCLC cell lines, representing the heterogeneity of SCLC subtypes. Ten of the cell lines were confirmed positive for HLA-I, and one was HLA-I-deficient. To analyse c...
ORGANISM(S): Homo Sapiens 
2024-11-26 | PXD058303 |
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