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. 2022 Aug 17;13(8):716. doi: 10.1038/s41419-022-05160-6

Fig. 4. Changes to oxidative phosphorylation and glucose metabolism with DDp53 in skeletal muscle.

Fig. 4

A Total IRS1 protein levels did not change with DDp53 electroporation. B Glucose transporter GLUT4 protein levels did not change with DDp53 electroporation. C Mitochondrial complex I (NDUFB8) protein levels were significantly decreased with DDp53 in tibialis anterior muscle. D Mitochondrial complex II (SDHB) protein levels were unchanged with DDp53. E Mitochondrial complex V (ATP5A) protein levels were significantly reduced after DDp53 electroporation compared to control muscle. F GAPDH protein levels were significantly reduced with DDp53 compared to the control leg. Individual data points represent the results from a single animal. Squares represent the leg that was electroporated with DDp53, circles the contralateral control leg of the same animals. Western blot images show three representative bands from each condition. Both representative pictures stem from the same membrane and exposure time. All western blots were normalized to total protein per lane. Original, unaltered images of all membranes and the gels that they were normalized to can be found in the data supplement. n = 12, ** indicates a p-value of <0.01 and **** indicates a p-value of <0.0001.