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1.
Cell Mol Life Sci ; 80(9): 258, 2023 Aug 18.
Artigo em Inglês | MEDLINE | ID: mdl-37594630

RESUMO

HtrA2/Omi is a mitochondrial serine protease with ascribed pro-apoptotic as well as pro-necroptotic functions. Here, we establish that HtrA2/Omi also controls parthanatos, a third modality of regulated cell death. Deletion of HtrA2/Omi protects cells from parthanatos while reconstitution with the protease restores the parthanatic death response. The effects of HtrA2/Omi on parthanatos are specific and cannot be recapitulated by manipulating other mitochondrial proteases such as PARL, LONP1 or PMPCA. HtrA2/Omi controls parthanatos in a manner mechanistically distinct from its action in apoptosis or necroptosis, i.e., not by cleaving cytosolic IAP proteins but rather exerting its effects without exiting mitochondria, and downstream of PARP-1, the first component of the parthanatic signaling cascade. Also, previously identified or candidate substrates of HtrA2/Omi such as PDXDC1, VPS4B or moesin are not cleaved and dispensable for parthanatos, whereas DBC-1 and stathmin are cleaved, and thus represent potential parthanatic downstream mediators of HtrA2/Omi. Moreover, mass-spectrometric screening for novel parthanatic substrates of HtrA2/Omi revealed that the induction of parthanatos does not cause a substantial proteolytic cleavage or major alterations in the abundance of mitochondrial proteins. Resolving these findings, reconstitution of HtrA2/Omi-deficient cells with a catalytically inactive HtrA2/Omi mutant restored their sensitivity against parthanatos to the same level as the protease-active HtrA2/Omi protein. Additionally, an inhibitor of HtrA2/Omi's protease activity did not confer protection against parthanatic cell death. Our results demonstrate that HtrA2/Omi controls parthanatos in a protease-independent manner, likely via novel, unanticipated functions as a scaffolding protein and an interaction with so far unknown mitochondrial proteins.


Assuntos
Parthanatos , Serina Proteases/genética , Necroptose , Serina Endopeptidases/genética , Proteínas Mitocondriais/genética
2.
Biochim Biophys Acta Mol Cell Res ; 1864(11 Pt B): 2147-2161, 2017 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-28577894

RESUMO

Proteases control most of the physiological processes that occur in a cell. This particularly applies to apoptosis, the most well-studied form of cell death, where proteolysis by cysteine-aspartic proteases (caspases) is the primary mechanism for both initiation and execution of cell suicide. In contrast, the impact of proteolysis on other, non-apoptotic cell death pathways (summarized under the term "regulated necrosis", RN) has long been enigmatic, but has clearly been confirmed by a number of recent groundbreaking discoveries. Here, we review these discoveries and provide an overview on the role of proteolysis in known forms of RN, with a particular focus on necroptosis and pyroptosis, and their regulation by deubiquitinases, apoptotic and inflammatory caspases. This article is part of a Special Issue entitled: Proteolysis as a Regulatory Event in Pathophysiology edited by Stefan Rose-John.


Assuntos
Apoptose/genética , Necrose/genética , Proteólise , Piroptose/genética , Caspases/genética , Enzimas Desubiquitinantes/genética , Humanos , Peptídeo Hidrolases/genética , Transdução de Sinais
3.
Biochim Biophys Acta Mol Cell Res ; 1869(4): 119191, 2022 04.
Artigo em Inglês | MEDLINE | ID: mdl-34973300

RESUMO

The Ars moriendi, which translates to "The Art of Dying," encompasses two Latin texts that gave advice on how to die well and without fear according to the Christian precepts of the late Middle Ages. Given that ten to hundred billion cells die in our bodies every day, it is obvious that the concept of a well and orderly ("regulated") death is also paramount at the cellular level. In apoptosis, as the most well-studied form of regulated cell death, proteases of the caspase family are the central mediators. However, caspases are not the only proteases that act as sculptors of cellular suicide, and therefore, we here provide an overview of the impact of proteases in apoptosis and other forms of regulated cell death.


Assuntos
Peptídeo Hidrolases/metabolismo , Morte Celular Regulada , Proteínas ADAM/metabolismo , Apoptose/genética , Caspases/metabolismo , Serina Peptidase 2 de Requerimento de Alta Temperatura A/metabolismo , Humanos , Necroptose/genética , Morte Celular Regulada/genética , Transdução de Sinais/genética , Ubiquitina Tiolesterase/metabolismo
4.
Oncotarget ; 9(16): 12941-12958, 2018 Feb 27.
Artigo em Inglês | MEDLINE | ID: mdl-29560122

RESUMO

The disintegrin metalloprotease ADAM17 has a critical role in intestinal inflammation and regeneration in mice, as illustrated by the dramatically increased susceptibility of ADAM17 hypomorphic (ADAM17ex/ex) mice to dextran sulfate sodium (DSS)-induced colitis. Similarly, necroptosis has been implicated in inflammatory responses in the intestine. In this study, we have investigated the contribution of necroptosis to ADAM17-regulated intestinal inflammation in vivo by crossing ADAM17ex/ex mice with mice that lack the necroptotic core protein RIPK3. Despite the loss of RIPK3, ADAM17ex/ex/RIPK3-/- mice showed the same increased susceptibility as ADAM17ex/ex mice in both acute and chronic models of DSS-induced colitis. Mice of both genotypes revealed comparable results with regard to weight loss, disease activity index and colitis-associated changes of inner organs. Histopathological analyses confirmed similar tissue destruction, loss of barrier integrity, immune cell infiltration, and cell death; serum analyses revealed similar levels of the pro-inflammatory cytokine KC. Resolving these unexpected findings, ADAM17ex/ex mice did not show phosphorylation of RIPK3 and its necroptotic interaction partner MLKL during DSS-induced colitis, although both proteins were clearly expressed. Consistent with these findings, murine embryonic fibroblasts derived from ADAM17ex/ex mice were protected from tumor necrosis factor (TNF)-induced necroptosis and failed to show phosphorylation of MLKL and RIPK3 after induction of necroptosis by TNF, revealing a novel, undescribed role of the protease ADAM17 in necroptosis.

5.
Mol Cell Biol ; 36(20): 2626-44, 2016 10 15.
Artigo em Inglês | MEDLINE | ID: mdl-27528614

RESUMO

Recently, a type of regulated necrosis (RN) called necroptosis was identified to be involved in many pathophysiological processes and emerged as an alternative method to eliminate cancer cells. However, only a few studies have elucidated components of TRAIL-mediated necroptosis useful for anticancer therapy. Therefore, we have compared this type of cell death to tumor necrosis factor (TNF)-mediated necroptosis and found similar signaling through acid and neutral sphingomyelinases, the mitochondrial serine protease HtrA2/Omi, Atg5, and vacuolar H(+)-ATPase. Notably, executive mechanisms of both TRAIL- and TNF-mediated necroptosis are independent of poly(ADP-ribose) polymerase 1 (PARP-1), and depletion of p38α increases the levels of both types of cell death. Moreover, we found differences in signaling between TNF- and TRAIL-mediated necroptosis, e.g., a lack of involvement of ubiquitin carboxyl hydrolase L1 (UCH-L1) and Atg16L1 in executive mechanisms of TRAIL-mediated necroptosis. Furthermore, we discovered indications of an altered involvement of mitochondrial components, since overexpression of the mitochondrial protein Bcl-2 protected Jurkat cells from TRAIL- and TNF-mediated necroptosis, and overexpression of Bcl-XL diminished only TRAIL-induced necroptosis in Colo357 cells. Furthermore, TRAIL does not require receptor internalization and endosome-lysosome acidification to mediate necroptosis. Taken together, pathways described for TRAIL-mediated necroptosis and differences from those for TNF-mediated necroptosis might be unique targets to increase or modify necroptotic signaling and eliminate tumor cells more specifically in future anticancer approaches.


Assuntos
Neoplasias/patologia , Transdução de Sinais , Ligante Indutor de Apoptose Relacionado a TNF/metabolismo , Fatores de Necrose Tumoral/metabolismo , Animais , Apoptose , Linhagem Celular Tumoral , Células HT29 , Humanos , Células Jurkat , Camundongos , Mitocôndrias/metabolismo , Necrose , Neoplasias/metabolismo
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