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Structural Basis for Ca2+-Dependent Activation of a Plant Metacaspase

biorxiv. 2020; 
Ping Zhu,  Xiao-Hong Yu,  Cheng Wang,  Qingfang Zhang,  Wu Liu,  Sean McSweeney,  John Shanklin,  Eric Lam,  Qun Liu
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Proteins, Expression, Isolation and Analysis Extracted proteins were separated in 4-20% precast gradient PAGE gels (Genscript) and transferred to PVDF membranes for immunoblot. Get A Quote

摘要

Plants metacaspases mediate programmed cell death in development 1,2, biotic and abiotic stresses 3, damage-induced immune response 4, and resistance to pathogen attack 5. Most metacaspases require Ca2+ for their activation and substrate processing 6–8. However, the Ca2+-dependent activation mechanism remains elusive 9–11. Here we report the crystal structure of Metacaspase 4 from Arabidopsis thaliana (AtMC4) that modulates Ca2+-dependent, damage-induced plant immune defense. The AtMC4 structure exhibits an inhibitory conformation in which a large linker domain blocks activation and substrate access. In addition, the side chain of Lys225 in the linker domain blocks the active site by sitting direc... More

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