AI Article Synopsis

  • The proper function of secreted proteins often relies on their correct assembly into complex structures, but cells struggle to differentiate between unassembled and misfolded proteins.
  • The study focuses on how chaperones manage the assembly of interleukin 23 (IL-23), revealing that its α-subunit remains partially unstructured until it pairs with the β-subunit, indicating a site of incomplete folding.
  • Different chaperones recognize this incomplete folding at several checkpoints during the secretory process, allowing for regulated assembly and showing that adjustments to chaperone recognition can lead to the successful secretion of functional IL-23.

Article Abstract

The functionality of most secreted proteins depends on their assembly into a defined quaternary structure. Despite this, it remains unclear how cells discriminate unassembled proteins en route to the native state from misfolded ones that need to be degraded. Here we show how chaperones can regulate and control assembly of heterodimeric proteins, using interleukin 23 (IL-23) as a model. We find that the IL-23 α-subunit remains partially unstructured until assembly with its β-subunit occurs and identify a major site of incomplete folding. Incomplete folding is recognized by different chaperones along the secretory pathway, realizing reliable assembly control by sequential checkpoints. Structural optimization of the chaperone recognition site allows it to bypass quality control checkpoints and provides a secretion-competent IL-23α subunit, which can still form functional heterodimeric IL-23. Thus, locally-restricted incomplete folding within single-domain proteins can be used to regulate and control their assembly.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6739322PMC
http://dx.doi.org/10.1038/s41467-019-12006-xDOI Listing

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