Structural basis for Ca2+-dependent activation of a plant metacaspase

被引:0
|
作者
Ping Zhu
Xiao-Hong Yu
Cheng Wang
Qingfang Zhang
Wu Liu
Sean McSweeney
John Shanklin
Eric Lam
Qun Liu
机构
[1] Brookhaven National Laboratory,Biology Department
[2] Brookhaven National Laboratory,NSLS
[3] The State University of New Jersey,II
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Plant metacaspases mediate programmed cell death in development, biotic and abiotic stresses, damage-induced immune response, and resistance to pathogen attack. Most metacaspases require Ca2+ for their activation and substrate processing. However, the Ca2+-dependent activation mechanism remains elusive. Here we report the crystal structures 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 directly between two catalytic residues. We show that the activation of AtMC4 and cleavage of its physiological substrate involve multiple cleavages in the linker domain upon activation by Ca2+. Our analysis provides insight into the Ca2+-dependent activation of AtMC4 and lays the basis for tuning its activity in response to stresses for engineering of more sustainable crops for food and biofuels.
引用
收藏
相关论文
共 50 条
  • [1] Structural basis for Ca2+-dependent activation of a plant metacaspase
    Zhu, Ping
    Yu, Xiao-Hong
    Wang, Cheng
    Zhang, Qingfang
    Liu, Wu
    McSweeney, Sean
    Shanklin, John
    Lam, Eric
    Liu, Qun
    NATURE COMMUNICATIONS, 2020, 11 (01)
  • [2] Structural basis of Ca2+-dependent activation and lipid transport by a TMEM16 scramblase
    Falzone, Maria E.
    Rheinberger, Jan
    Lee, Byoung-Cheol
    Peyear, Thasin
    Sasset, Linda
    Raczkowski, Ashleigh M.
    Eng, Edward T.
    Di Lorenzo, Annarita
    Andersen, Olaf S.
    Nimigean, Crina M.
    Accardi, Alessio
    ELIFE, 2019, 8
  • [3] Crystal structure of calpain reveals the structural basis for Ca2+-dependent protease activity and a novel mode of enzyme activation
    Hosfield, CM
    Elce, JS
    Davies, PL
    Jia, ZC
    EMBO JOURNAL, 1999, 18 (24): : 6880 - 6889
  • [4] Structural basis for the regulation mechanism of Ca2+-dependent activity of TMEM16 scramblase
    Feng, Zhang
    Alvarenga-Cruz, Omar E.
    Accardi, Alessio
    BIOPHYSICAL JOURNAL, 2023, 122 (03) : 247A - 247A
  • [5] Activation of Ca2+-dependent signaling by TLR2
    Chun, Jarin
    Prince, Alice
    JOURNAL OF IMMUNOLOGY, 2006, 177 (02): : 1330 - 1337
  • [6] Structural Basis of Ca2+-Dependent Self-Processing Activity of Repeat-in-Toxin Proteins
    Kuban, Vojtech
    Macek, Pavel
    Hritz, Jozef
    Nechvatalova, Katerina
    Nedbalcova, Katerina
    Faldyna, Martin
    Sebo, Peter
    Zidek, Lukas
    Bumba, Ladislav
    MBIO, 2020, 11 (02):
  • [7] CA2+-DEPENDENT ACTIVATION OF PHOSPHORYLASE-KINASE BY HEPARIN
    ERDODI, F
    GERGELY, P
    BOT, G
    ACTA PHYSIOLOGICA HUNGARICA, 1984, 63 (3-4) : 227 - 228
  • [8] COOPERATIVE INTERACTIONS IN THE CA2+-DEPENDENT ACTIVATION OF ACTOMYOSIN ATPASE
    GRABAREK, Z
    GRABAREK, J
    GERGELY, J
    LEAVIS, PC
    BIOPHYSICAL JOURNAL, 1981, 33 (02) : A147 - A147
  • [9] CA2+-DEPENDENT ACTIVATION OF VOLTAGE-DEPENDENT CA2+ CURRENT IN MOLLUSCAN NEURONS
    SOLNTSEVA, EI
    BIOLOGICHESKIE MEMBRANY, 1992, 9 (12): : 1236 - 1241
  • [10] Ca2+-dependent caspase activation by gallic acid derivatives
    Isuzugawa, K
    Inoue, M
    Ogihara, Y
    BIOLOGICAL & PHARMACEUTICAL BULLETIN, 2001, 24 (07) : 844 - 847