Key result
Detailed protocols for X-ray diffraction of intact murine skeletal muscle are presented to help guide experimenters in studying the structural basis of muscle disease.
Why the study?
Mouse skeletal muscle produces high quality X-ray diffraction patterns on synchrotron beamlines, offering an opportunity to link genetic changes to functional phenotypes by determining structural consequences in health and disease.
Offers protocols to advance structural analysis in murine muscle disease models; leaves open clinical translation.
Transgenic mouse models have been important tools for studying the relationship of genotype to phenotype for human diseases including those of skeletal muscle. Mouse skeletal muscle has been shown to produce high quality X-ray diffraction patterns on third generation synchrotron beamlines providing an opportunity to link changes at the level of the genotype to functional phenotypes in health and disease by determining the structural consequences of genetic changes. We present detailed protocols for preparation of specimens, collecting the X-ray patterns and extracting relevant structural parameters from the X-ray patterns that may help guide experimenters wishing to perform such experiments for themselves.
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Ma et al. (2019) studied Muscle disease. X-ray diffraction protocols was evaluated. Detailed protocols for X-ray diffraction of intact murine skeletal muscle are presented to help guide experimenters in studying the structural basis of muscle disease.
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