scholarly article | Q13442814 |
P6179 | Dimensions Publication ID | 1100179085 |
P356 | DOI | 10.1038/S41598-017-18468-7 |
P932 | PMC publication ID | 5760655 |
P698 | PubMed publication ID | 29317705 |
P50 | author | Thomas F. Meyer | Q2423758 |
Andreas Nerlich | Q56958081 | ||
Martin Witzenrath | Q56961541 | ||
P2093 | author name string | Norbert Suttorp | |
Maren Mieth | |||
Jens Neudecker | |||
Torsten T Bauer | |||
Timothy J Mitchell | |||
Eleftheria Letsiou | |||
Andreas C Hocke | |||
Diana Fatykhova | |||
Maria Schimek | |||
Paul Schneider | |||
Stefan Hippenstiel | |||
Stephan Eggeling | |||
Jens C Rückert | |||
Katja Zscheppang | |||
Aki Imai-Matsushima | |||
Lisa Paasch | |||
Mario Tönnies | |||
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Molecular characterization of mitochondrial apoptosis-inducing factor | Q22001452 | ||
Mitochondrial DNA stress primes the antiviral innate immune response | Q23030015 | ||
IFNs Modify the Proteome of Legionella-Containing Vacuoles and Restrict Infection Via IRG1-Derived Itaconic Acid | Q27316130 | ||
Cardiotoxicity during invasive pneumococcal disease | Q28081769 | ||
Perinuclear, perigranular and sub-plasmalemmal mitochondria have distinct functions in the regulation of cellular calcium transport. | Q28362214 | ||
Enterohemorrhagic Escherichia coli hemolysin employs outer membrane vesicles to target mitochondria and cause endothelial and epithelial apoptosis | Q28537654 | ||
Mitochondrial DNA fragments released through the permeability transition pore correspond to specific gene size | Q28566516 | ||
Pneumococcal pneumolysin and H(2)O(2) mediate brain cell apoptosis during meningitis | Q28568567 | ||
Circulating mitochondrial DNA in patients in the ICU as a marker of mortality: derivation and validation | Q28660920 | ||
Autophagy proteins regulate innate immune responses by inhibiting the release of mitochondrial DNA mediated by the NALP3 inflammasome | Q29547419 | ||
Circulating mitochondrial DAMPs cause inflammatory responses to injury | Q29614470 | ||
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The cholesterol-dependent cytolysin family of gram-positive bacterial toxins. | Q30156934 | ||
Global, regional, and national life expectancy, all-cause mortality, and cause-specific mortality for 249 causes of death, 1980-2015: a systematic analysis for the Global Burden of Disease Study 2015. | Q30353189 | ||
Listeria monocytogenes transiently alters mitochondrial dynamics during infection | Q30498309 | ||
Pneumolysin activates the NLRP3 inflammasome and promotes proinflammatory cytokines independently of TLR4. | Q33750041 | ||
Necroptosis: the release of damage-associated molecular patterns and its physiological relevance | Q34035754 | ||
Neurotoxicity of pneumolysin, a major pneumococcal virulence factor, involves calcium influx and depends on activation of p38 mitogen-activated protein kinase. | Q34177160 | ||
Neutrophil IL-1β processing induced by pneumolysin is mediated by the NLRP3/ASC inflammasome and caspase-1 activation and is dependent on K+ efflux | Q35206149 | ||
Pathologic mechanical stress and endotoxin exposure increases lung endothelial microparticle shedding | Q35207653 | ||
Vibrio cholerae T3SS effector VopE modulates mitochondrial dynamics and innate immune signaling by targeting Miro GTPases. | Q35343578 | ||
Interplay between mitochondria and cellular calcium signalling | Q35672374 | ||
Calcium signalling during cell interactions with bacterial pathogens | Q35749180 | ||
Serotype 1 and 8 Pneumococci Evade Sensing by Inflammasomes in Human Lung Tissue | Q35758711 | ||
ATP Depletion Via Mitochondrial F1F0 Complex by Lethal Factor is an Early Event in B. Anthracis-Induced Sudden Cell Death | Q35760558 | ||
Pore-Forming Toxins Induce Macrophage Necroptosis during Acute Bacterial Pneumonia | Q35867134 | ||
Mitochondrial DNA in the regulation of innate immune responses | Q36447892 | ||
Streptococcus pneumoniae: the role of apoptosis in host defense and pathogenesis. | Q36537673 | ||
Pneumococcal Pneumolysin Induces DNA Damage and Cell Cycle Arrest | Q36741309 | ||
Leukotriene B4 receptor type 2 protects against pneumolysin-dependent acute lung injury. | Q37310879 | ||
Visualization of ATP levels inside single living cells with fluorescence resonance energy transfer-based genetically encoded indicators | Q37327467 | ||
Streptococcus pneumoniae-induced caspase 6-dependent apoptosis in lung epithelium | Q37521398 | ||
Mitochondria in innate immunity | Q37907827 | ||
Bench-to-bedside review: Damage-associated molecular patterns in the onset of ventilator-induced lung injury | Q37973108 | ||
The biology of pneumolysin | Q38209510 | ||
Determinants and functions of mitochondrial behavior | Q38257391 | ||
Microvesicles: ubiquitous contributors to infection and immunity | Q38282835 | ||
Mitochondrial Ca2+ and regulation of the permeability transition pore | Q38920740 | ||
Calcium at the Center of Cell Signaling: Interplay between Endoplasmic Reticulum, Mitochondria, and Lysosomes | Q38969543 | ||
Metabolic reprogramming & inflammation: Fuelling the host response to pathogens. | Q38990670 | ||
The mitochondria-endoplasmic reticulum contact sites: a signalling platform for cell death | Q39229178 | ||
Mitochondrial DNA in innate immune responses and inflammatory pathology. | Q39231387 | ||
Mitochondria are the powerhouses of immunity. | Q39248031 | ||
Sensitivities of human monocytes and epithelial cells to pneumolysin are different. | Q39653984 | ||
Drp-1-dependent division of the mitochondrial network blocks intraorganellar Ca2+ waves and protects against Ca2+-mediated apoptosis | Q39697070 | ||
Tyk2 as a target for immune regulation in human viral/bacterial pneumonia | Q40123508 | ||
Host-to-Host Transmission of Streptococcus pneumoniae Is Driven by Its Inflammatory Toxin, Pneumolysin. | Q40374441 | ||
Mitochondrial DNA damage associated molecular patterns in ventilator-associated pneumonia: Prevention and reversal by intratracheal DNase I. | Q40482050 | ||
Active release of pneumolysin prepores and pores by mammalian cells undergoing a Streptococcus pneumoniae attack | Q40592086 | ||
Ca²⁺-dependent repair of pneumolysin pores: A new paradigm for host cellular defense against bacterial pore-forming toxins. | Q41740129 | ||
Intratracheal administration of mitochondrial DNA directly provokes lung inflammation through the TLR9-p38 MAPK pathway | Q41918257 | ||
Pneumolysin causes neuronal cell death through mitochondrial damage | Q41960118 | ||
Cytochrome c release occurs via Ca2+-dependent and Ca2+-independent mechanisms that are regulated by Bax. | Q43551075 | ||
C2C12 myoblasts release micro-vesicles containing mtDNA and proteins involved in signal transduction | Q44968456 | ||
Streptococcus pneumoniae-induced regulation of cyclooxygenase-2 in human lung tissue | Q45288786 | ||
The mechanism of pneumolysin-induced cochlear hair cell death in the rat. | Q46624496 | ||
P275 | copyright license | Creative Commons Attribution 4.0 International | Q20007257 |
P6216 | copyright status | copyrighted | Q50423863 |
P433 | issue | 1 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | mitochondrial DNA | Q27075 |
P304 | page(s) | 182 | |
P577 | publication date | 2018-01-09 | |
P1433 | published in | Scientific Reports | Q2261792 |
P1476 | title | Pneumolysin induced mitochondrial dysfunction leads to release of mitochondrial DNA. | |
P478 | volume | 8 |
Q58579190 | Endothelial Extracellular Vesicles in Pulmonary Function and Disease |
Q58799687 | Mechanical ventilation and Streptococcus pneumoniae pneumonia alter mitochondrial homeostasis |
Q92661496 | Mitochondrial DNA: A Key Regulator of Anti-Microbial Innate Immunity |
Q61442975 | Mitochondrial Dysfunction in Aged Macrophages and Lung during Primary Streptococcus pneumoniae Infection is Improved with Pirfenidone |
Q90734370 | Mitochondrial damage-associated molecular patterns released by lung transplants are associated with primary graft dysfunction |
Q97883476 | Pneumolysin: Pathogenesis and Therapeutic Target |
Q91730245 | Targeted antioxidants as therapeutics for treatment of pneumonia in the elderly |
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