TY - JOUR
T1 - Septins promote caspase activity and coordinate mitochondrial apoptosis
AU - Van Ngo, Hoan
AU - Robertin, Stevens
AU - Brokatzky, Dominik
AU - Bielecka, Magdalena K.
AU - Lobato-Márquez, Damián
AU - Torraca, Vincenzo
AU - Mostowy, Serge
N1 - Funding Information:
Deutsche Forschungsgemeinschaft; European Commission; The Royal Society; Lister Institute of Preventive Medicine; Wellcome Trust; European Research Council; Horizon 2020 Funding information
Funding Information:
We thank Paras Anand, Daniel Fisch and Eva Frickel for helpful discussions. H.V.N. was supported by a Newton International Fellowship (NIF\R1\180035). D.B. is supported by the DFG Walter Benjamin Programme (BR 6637/1‐1). D.L.‐M. was funded by the European Union's Horizon 2020 research and innovation program under the Marie Skłodowska ‐ Curie grant agreement no. H2020‐MSCA‐IF‐2016‐752022. V.T. was supported by an LSHTM/Wellcome Institutional Strategic Support Fund (ISSF) Fellowship (204928/Z/16/Z). Research in the Mostowy laboratory is supported by a European Research Council Consolidator Grant (772853 ‐ ENTRAPMENT), Wellcome Trust Senior Research Fellowship (206444/Z/17/Z) and the Lister Institute of Preventive Medicine.
Funding Information:
We thank Paras Anand, Daniel Fisch and Eva Frickel for helpful discussions. H.V.N. was supported by a Newton International Fellowship (NIF\R1\180035). D.B. is supported by the DFG Walter Benjamin Programme (BR 6637/1-1). D.L.-M. was funded by the European Union's Horizon 2020 research and innovation program under the Marie Skłodowska - Curie grant agreement no. H2020-MSCA-IF-2016-752022. V.T. was supported by an LSHTM/Wellcome Institutional Strategic Support Fund (ISSF) Fellowship (204928/Z/16/Z). Research in the Mostowy laboratory is supported by a European Research Council Consolidator Grant (772853 - ENTRAPMENT), Wellcome Trust Senior Research Fellowship (206444/Z/17/Z) and the Lister Institute of Preventive Medicine.
Publisher Copyright:
© 2022 The Authors. Cytoskeleton published by Wiley Periodicals LLC.
PY - 2022/9/19
Y1 - 2022/9/19
N2 - Apoptosis is a form of regulated cell death essential for tissue homeostasis and embryonic development. Apoptosis also plays a key role during bacterial infection, yet some intracellular bacterial pathogens (such as Shigella flexneri, whose lipopolysaccharide can block apoptosis) can manipulate cell death programs as an important survival strategy. Septins are a component of the cytoskeleton essential for mitochondrial dynamics and host defense, however, the role of septins in regulated cell death is mostly unknown. Here, we discover that septins promote mitochondrial (i.e., intrinsic) apoptosis in response to treatment with staurosporine (a pan-kinase inhibitor) or etoposide (a DNA topoisomerase inhibitor). Consistent with a role for septins in mitochondrial dynamics, septins promote the release of mitochondrial protein cytochrome c in apoptotic cells and are required for the proteolytic activation of caspase-3, caspase-7, and caspase-9 (core components of the apoptotic machinery). Apoptosis of HeLa cells induced in response to infection by S. flexneri ΔgalU (a lipopolysaccharide mutant unable to block apoptosis) is also septin-dependent. In vivo, zebrafish larvae are significantly more susceptible to infection with S. flexneri ΔgalU (as compared to infection with wildtype S. flexneri), yet septin deficient larvae are equally susceptible to infection with S. flexneri ΔgalU and wildtype S. flexneri. These data provide a new molecular framework to understand the complexity of mitochondrial apoptosis and its ability to combat bacterial infection.
AB - Apoptosis is a form of regulated cell death essential for tissue homeostasis and embryonic development. Apoptosis also plays a key role during bacterial infection, yet some intracellular bacterial pathogens (such as Shigella flexneri, whose lipopolysaccharide can block apoptosis) can manipulate cell death programs as an important survival strategy. Septins are a component of the cytoskeleton essential for mitochondrial dynamics and host defense, however, the role of septins in regulated cell death is mostly unknown. Here, we discover that septins promote mitochondrial (i.e., intrinsic) apoptosis in response to treatment with staurosporine (a pan-kinase inhibitor) or etoposide (a DNA topoisomerase inhibitor). Consistent with a role for septins in mitochondrial dynamics, septins promote the release of mitochondrial protein cytochrome c in apoptotic cells and are required for the proteolytic activation of caspase-3, caspase-7, and caspase-9 (core components of the apoptotic machinery). Apoptosis of HeLa cells induced in response to infection by S. flexneri ΔgalU (a lipopolysaccharide mutant unable to block apoptosis) is also septin-dependent. In vivo, zebrafish larvae are significantly more susceptible to infection with S. flexneri ΔgalU (as compared to infection with wildtype S. flexneri), yet septin deficient larvae are equally susceptible to infection with S. flexneri ΔgalU and wildtype S. flexneri. These data provide a new molecular framework to understand the complexity of mitochondrial apoptosis and its ability to combat bacterial infection.
KW - apoptosis
KW - cytoskeleton
KW - mitochondria
KW - septins
KW - Shigella
KW - zebrafish
UR - http://www.scopus.com/inward/record.url?scp=85129487536&partnerID=8YFLogxK
U2 - 10.1002/cm.21696
DO - 10.1002/cm.21696
M3 - Article
C2 - 35460543
SN - 1949-3592
VL - 80
SP - 254
EP - 265
JO - Cytoskeleton (Hoboken, N.J.)
JF - Cytoskeleton (Hoboken, N.J.)
IS - 7-8
ER -