Technical Articles
Recent Articles
How Atypical PKCζ Regulates Path...
Roles of Serine/Threonine Phosph...
Histone Crotonylation: Reshaping...
Selective Chemical Labeling of Protein Lysine Methacrylation
1. Literature Information This work reveals a photocatalytic thiol–Michael addition strategy for highly specific chemical labeling and proteomic identification of lysine methacrylation, a newly discovered acylation modification highly similar to...
Selective Chemical Labeling of Protein Lysine Methacrylation
1. Literature Information This work reveals a photocatalytic thiol–Michael addition strategy for highly specific chemical labeling and proteomic identification of lysine methacrylation, a newly discovered acylation modification highly similar to...
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Site‑Specific Antibodies Drive Targeted Protein Degradation
1. Literature Information This literature dissects innovative research on site‑specific antibody‑mediated targeted protein degradation, focusing on lysosome‑directed elimination of extracellular and membrane proteins via hepatocyte asialoglycoprotein receptor (ASGPR) and homogeneous...
Site‑Specific Antibodies Drive Targeted Protein Degradation
1. Literature Information This literature dissects innovative research on site‑specific antibody‑mediated targeted protein degradation, focusing on lysosome‑directed elimination of extracellular and membrane proteins via hepatocyte asialoglycoprotein receptor (ASGPR) and homogeneous...
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N‑Glycosidases: Molecular Mechanisms, Engineering Innovations, and Transforma...
N‑Glycosidases: Molecular Mechanisms, Engineering Innovations, and Transformative Applications in Glycobiology 1. Concept N‑Glycosidases are a class of specialized hydrolytic enzymes that cleave the β‑glycosidic linkage between asparagine (Asn) and N‑acetylglucosamine...
N‑Glycosidases: Molecular Mechanisms, Engineering Innovations, and Transforma...
N‑Glycosidases: Molecular Mechanisms, Engineering Innovations, and Transformative Applications in Glycobiology 1. Concept N‑Glycosidases are a class of specialized hydrolytic enzymes that cleave the β‑glycosidic linkage between asparagine (Asn) and N‑acetylglucosamine...
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OST Antibodies: Decoding NGlycosylation Regulation and Disease Mechanisms
OST Antibodies: Decoding NGlycosylation Regulation and Disease Mechanisms 1. Concept Nglycosylation is a fundamental, conserved posttranslational modification that governs protein folding, stability, localization, and function across eukaryotes. At the core...
OST Antibodies: Decoding NGlycosylation Regulation and Disease Mechanisms
OST Antibodies: Decoding NGlycosylation Regulation and Disease Mechanisms 1. Concept Nglycosylation is a fundamental, conserved posttranslational modification that governs protein folding, stability, localization, and function across eukaryotes. At the core...
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The Multifaceted Biology of P84 Protein: From Nuclear Regulation to Neurobiol...
The Multifaceted Biology of P84 Protein: From Nuclear Regulation to Neurobiology and Agricultural Innovation Concept P84 is an evolutionarily conserved protein with distinct functional isoforms across biological systems. In mammalian...
The Multifaceted Biology of P84 Protein: From Nuclear Regulation to Neurobiol...
The Multifaceted Biology of P84 Protein: From Nuclear Regulation to Neurobiology and Agricultural Innovation Concept P84 is an evolutionarily conserved protein with distinct functional isoforms across biological systems. In mammalian...
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Recombinant P84 Protein: Structure, Function, and Translational Applications
Recombinant P84 Protein: Structure, Function, and Translational Applications – Supported by ANT BIO PTE. LTD. Concept P84 protein, also referred to as SHPS‑1 or SIRPα, is an 84 kDa transmembrane...
Recombinant P84 Protein: Structure, Function, and Translational Applications
Recombinant P84 Protein: Structure, Function, and Translational Applications – Supported by ANT BIO PTE. LTD. Concept P84 protein, also referred to as SHPS‑1 or SIRPα, is an 84 kDa transmembrane...
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