Sharif_2021_Biorxiv__

Reference

Title : Structural mechanism of CARD8 regulation by DPP9 - Sharif_2021_Biorxiv__
Author(s) : Sharif H , Hollingsworth LR , Griswold AR , Hsiao JC , Wang QH , Bachovchin DA , Wu H
Ref : Biorxiv , : , 2021
Abstract :

CARD8 is a germline-encoded pattern recognition receptor that detects intracellular danger signals. Like the related inflammasome sensor NLRP1, CARD8 undergoes constitutive autoprocessing within its function-to-find domain (FIIND), generating two polypeptides that stay associated and autoinhibited. Certain pathogen-and danger-associated activities, including the inhibition of the serine dipeptidases DPP8 and DPP9 (DPP8/9), induce the proteasome-mediated degradation of the N-terminal(NT) fragment,releasing the C-terminal (CT) fragment to form a caspase-1 activating inflammasome. DPP8/9 also bind directly to the CARD8 FIIND, but the role that this interaction plays in CARD8 inflammasome regulation is not yet understood. Here, we solved several cryo-EM structures of CARD8 bound to DPP9, with or without the DPP inhibitor Val-boroPro (VbP), which revealed a ternary complex composed of one DPP9, the full-length CARD8, and one CARD8-CT. Through structure-guided biochemical and cellular experiments, we demonstrated thatDPP9's structure restrains CARD8-CT after proteasomal degradation. Moreover, although DPP inhibitors do not directly displace CARD8 from DPP9in vitro,we show that they can nevertheless destabilize this complex in cells. Overall, these results demonstrate that DPP8/9 inhibitors cause CARD8 inflammasome activation via at least two distinct mechanisms, one upstream and one downstream of the proteasome.

PubMedSearch : Sharif_2021_Biorxiv__
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Gene_locus related to this paper: human-DPP9

Related information

Inhibitor Talabostat
Gene_locus human-DPP9
Structure 7JKQ    7JN7

Citations formats

Sharif H, Hollingsworth LR, Griswold AR, Hsiao JC, Wang QH, Bachovchin DA, Wu H (2021)
Structural mechanism of CARD8 regulation by DPP9
Biorxiv :

Sharif H, Hollingsworth LR, Griswold AR, Hsiao JC, Wang QH, Bachovchin DA, Wu H (2021)
Biorxiv :