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Biology subjects

Provost, M.

Publications and source records attributed to Provost, M..

2 recordsLinked to original sources

Activation of goblet cell stress sensor IRE1β is controlled by the mucin chaperone AGR2

As secretory cells specialized in the production of mucins, intestinal goblet cells are challenged by the need for efficient protein folding. Goblet cells express Inositol-Requiring Enzyme 1{beta} (IRE1{beta}), a unique unfolded protein response (UPR) sensor that is part of an adaptive mechanism that regulates the demands of mucin production and secretion. However, how IRE1{beta} activity is tuned to mucus folding load remains unknown. We identified the disulfide isomerase and mucin chaperone AGR2 as a goblet cell specific protein that crucially regulates IRE1{beta}-, but not IRE1-mediated signaling. AGR2 binding to IRE1{beta} disrupts IRE1{beta} dimerization, thereby blocking its downstream endonuclease activity. Depletion of endogenous AGR2 from goblet cells induces spontaneous IRE1{beta} activation, suggesting that alterations in AGR2 availability in the endoplasmic reticulum sets the threshold for IRE1{beta} activation. We found that AGR2 mutants lacking their catalytic cysteine or displaying the disease-associated mutation H117Y were no longer able to dampen IRE1{beta} activity. Collectively, these results demonstrate that AGR2 is a central chaperone regulating the goblet cell UPR by acting as a rheostat of IRE1{beta} endonuclease activity.

cell biology↗

Structures of complete extracellular receptor assemblies mediated by IL-12 and IL-23

Cell-surface receptor complexes mediated by pro-inflammatory Interleukin-12 and -23, both validated therapeutic targets, are incompletely understood due to the lack of structural insights into their complete extracellular assemblies. Furthermore, there is a paucity of structural details describing the IL-12:receptor interaction interfaces, in contrast to IL23:receptor complexes. Here we report cryo-EM structures of fully assembled IL-12/IL-23:receptor complexes comprising the complete extracellular segments of the cognate receptors. The structures reveal important commonalities but also surprisingly diverse features. Whereas IL-12 and IL-23 both utilize a conspicuously presented aromatic residue on their -subunit as a hotspot to interact with the N-terminal Ig-domain of their high affinity receptors, only IL-12 juxtaposes receptor domains proximal to the cell-membrane. Collectively, our findings will enable a cytokine-specific interrogation of IL-12 and IL-23 signaling in physiology and disease.

molecular biology↗