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◇ bioRxiv2026-09-22· biochemistry

TeTIR domains define a new class of animal TIR-like NADase effectors in STAND proteins

J. Hornebeck, R. Ibragimov, N. Oelerich, P. Pfad, J. Jirschitzka, J. M. Gebauer, U. Baumann, T. Hermanns, K. Hofmann

原始摘要(英文原文)· Original abstract
TIR domains are found in diverse immune signaling proteins and, in several systems, function as NAD+-cleaving enzymes causing or signaling cell death. In plants, TIR domains occur as effector domains in TNL immune receptors, where they are coupled to a central STAND ATPase and a C-terminal repeat domain. Here, we identify TeTIR (TEP1 extended TIR), a previously unrecognized family of TIR-like domains associated with NACHT-type ATPases and C-terminal WD40 or TPR repeat domains. The TeTIR domain of human TEP1 exhibits robust NADase activity comparable to SARM1-TIR, making TEP1 the only other NADase-active TIR-like protein identified in mammals. NADase activity is conserved in TEP1 homologs from diverse eukaryotes. The crystal structure of TEP1 TeTIR reveals an extended TIR-like fold with additional secondary-structure elements and a distinctive RWG-containing loop. Molecular dynamics simulations indicate that the catalytic glutamate contributes to catalysis and the conformational equilibrium of the active-site region, promoting formation of a substrate-accessible state. Structure-guided mutagenesis identifies conserved residues contributing to NAD+ recognition and catalysis, including features distinct from canonical TIR NADases. Expression of isolated TEP1 TeTIR causes NAD+ depletion and cell death in a catalytic-glutamate-dependent manner. TeTIRs thus define a distinct family of animal TIR-like NADases embedded in NACHT-type STAND architectures.
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TeTIR domains define a new class of animal TIR-like NADase effectors in STAND proteins — 科研速览 Science Skim