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"Titin-BioID probes specific regions of the sarcomere structure in vivo," says Dr. Philipp Mertins, who heads MDC's Proteomics Lab. "This has not been possible before." ...
Titin-BioID probes specific regions of the sarcomere structure in vivo. This has not been possible before." Dr. Philipp Mertins, Head of MDC's Proteomics Lab ...
“Titin-BioID probes specific regions of the sarcomere structure in vivo,” says Philipp Mertins, PhD, who heads MDC’s Proteomics Lab. “This has not been possible before.” ...
Scientists have produced the first high-resolution 3D image of the sarcomere, the basic contractile unit of skeletal and heart muscle cells, by using electron cryo-tomography (cryo-ET).
Setting out to identify all proteins that make up the sarcomere, the basic contractile unit of muscle cells, resulted in an unexpected revelation, providing experimental evidence that helps ...
Numerous motor and structural proteins compose a highly ordered structure known as the sarcomere, the basic unit of muscle contraction in heart and skeletal muscles. Sarcomeric myosin heavy chain ...
Sarcomere genes play crucial roles in myocardial cells’ physical structure and physiological function. Various cardiomyopathies can be attributed to variations in sarcomere genes.
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