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Metabolic heterogeneity resulting from the intrinsic heterogeneity of human tumors has been shown to cause a myriad of adverse outcomes of tumor therapy, including resistance to chemotherapy, but the mechanisms inside remain largely unknown. Here, we found that the de novo pyrimidine synthesis pathw...
ORGANISM(S): Homo Sapiens 
2025-01-01 | PXD059365 |
Core fucosylation, a special type of N-linked glycosylation, is important in tumor proliferation, invasion, metastatic potential, and therapy resistance. However, the core-fucosylated glycoproteome has not been extensively profiled due to the low abundance and poor ionization efficiency of glycosyla...
ORGANISM(S): Homo Sapiens 
2024-04-02 | PXD051139 |
Glycoproteins, representing over 50% of human proteins and most biopharmaceuticals, are crucial for regulating various biological processes. The complexity of multiple glycosylation sites often leads to incomplete sequence coverage and ambiguous glycan modification profiles. Here, we developed an in...
ORGANISM(S): Homo Sapiens 
2024-12-30 | PXD059329 |
Glycoprotein is one of the most complex biomacromolecule,accounting for over 50% of total human proteins and the majority of biopharmaceuticals, exerting profound influences on various essential biological processes. With multiple N-glycosylation sites and O- glycosylation sites on the protein backb...
ORGANISM(S): Homo Sapiens Bos Taurus 
2024-08-24 | PXD055221 |
We introduce and implement a comprehensive single-cell proteomics sample pre-treatment solution based on an active matrix digital microfluidics chip(AM-DMF-SCP). This platform accommodates high-throughput single-cell isolation and seamless, non-destructive sample pre-treatment, characterized by its ...
ORGANISM(S): Homo Sapiens 
2024-04-15 | PXD048434 |
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