p62 protein pleomorphism confers tissue-specific function
Yan, Y.; Zhang, K.; Pycior, G.; Guillen-Poza, P. A.; Hervas, R.; Leal, P.; Yi, K.; Yu, Z.; Zhang, Y.; Florens, L.; Unruh, J.; Si, K.
Show abstract
Protein structure dictate function, and proteins often perform the same function in different cell/tissue-type environments. Here, we report that in Drosophila melanogaster, the broadly expressed protein p62/SQSTM1 instead performs mutually exclusive functions across tissues - autophagy in midgut and mitochondria-associated proteostasis in muscle. These functional differences arise from tissue-specific secondary and tertiary structures adopted by the same p62 polypeptide, rather than protein abundance, isoforms, post-translational modification, or binding-partner availability. The tissue-specific structures are cell autonomous and resistant to environmental perturbation. Deletion of a short intrinsically disordered region converts muscle p62 to a midgut-like structural and functional state, but this forced switch causes muscle dysfunction, linking tissue-specific physiology to alternative structural states of the same polypeptide. We posit that Drosophila p62 exemplifies a mechanism for tissue-specificity in which intrinsic structural plasticity and the physiochemical/molecular environment of a tissue enable a broadly expressed protein to adopt tissue-specific structure and function.
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