Researchers capture first-of-its-kind video of dynein–Lis1 protein interaction, supporting future drug development for neurological disorders. Our cells rely on microscopic highways and specialized ...
Protein engineering and self-assembly techniques have transformed our capacity to design and manipulate protein structures for diverse applications. Through a combination of rational design and ...
Protein therapeutics have transformed modern medicine through precisely engineered molecules that offer targeted treatment options in a range of diseases. Advances in formulation strategies, stability ...
Researchers developed CytoTape, an intracellular protein fiber that records cellular activity over time using molecular tags.
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Spatial proteomics: Mapping protein organization across cells and tissues
Advancements in spatial proteomics enable detailed tissue mapping, linking protein localization to disease mechanisms and ...
The paradigm in nutritional science is shifting from studying isolated nutrients to understanding the complex food matrix.
Unraveling the mysteries of how biological organisms function begins with understanding the molecular interactions within and ...
Protein-degrader structure and function have been captured in unprecedented detail. Protein degraders are recognized as an exciting avenue for drug discovery and development, providing targeted ...
LMU researchers have discovered how the interplay between a key protein and an endolysosomal ion channel promotes tumor development in skin cancer. Melanoma arising from pigment-producing cells known ...
Targeted protein degradation presents a promising strategy to address antimicrobial resistance, focusing on innovative ...
Every time a cell divides, it must copy its entire genome so that each daughter cell inherits a complete set of DNA. During that process, enzymes known as polymerases race along the DNA to copy its ...
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