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1.
Blood ; 143(12): 1167-1180, 2024 Mar 21.
Artigo em Inglês | MEDLINE | ID: mdl-38142429

RESUMO

ABSTRACT: Antiphospholipid antibodies (aPL) in primary or secondary antiphospholipid syndrome (APS) are a major cause for acquired thrombophilia, but specific interventions preventing autoimmune aPL development are an unmet clinical need. Although autoimmune aPL cross react with various coagulation regulatory proteins, lipid-reactive aPL, including those derived from patients with COVID-19, recognize the endolysosomal phospholipid lysobisphosphatidic acid presented by the cell surface-expressed endothelial protein C receptor. This specific recognition leads to complement-mediated activation of tissue factor (TF)-dependent proinflammatory signaling and thrombosis. Here, we show that specific inhibition of the TF coagulation initiation complex with nematode anticoagulant protein c2 (NAPc2) prevents the prothrombotic effects of aPL derived from patients with COVID-19 in mice and the aPL-induced proinflammatory and prothrombotic activation of monocytes. The induction of experimental APS is dependent on the nicotinamide adenine dinucleotide phosphate (NADPH) oxidase complex, and NAPc2 suppresses monocyte endosomal reactive oxygen species production requiring the TF cytoplasmic domain and interferon-α secretion from dendritic cells. Latent infection with murine cytomegalovirus causes TF cytoplasmic domain-dependent development of persistent aPL and circulating phospholipid-reactive B1 cells, which is prevented by short-term intervention with NAPc2 during acute viral infection. In addition, treatment of lupus prone MRL-lpr mice with NAPc2, but not with heparin, suppresses dendritic-cell activation in the spleen, aPL production and circulating phospholipid-reactive B1 cells, and attenuates lupus pathology. These data demonstrate a convergent TF-dependent mechanism of aPL development in latent viral infection and autoimmune disease and provide initial evidence that specific targeting of the TF initiation complex has therapeutic benefits beyond currently used clinical anticoagulant strategies.


Assuntos
Síndrome Antifosfolipídica , COVID-19 , Viroses , Humanos , Animais , Camundongos , Anticorpos Antifosfolipídeos , Tromboplastina/metabolismo , Camundongos Endogâmicos MRL lpr , Síndrome Antifosfolipídica/complicações , Fosfolipídeos , Anticoagulantes , COVID-19/complicações , Viroses/complicações
2.
Science ; 371(6534)2021 03 12.
Artigo em Inglês | MEDLINE | ID: mdl-33707237

RESUMO

Antiphospholipid antibodies (aPLs) cause severe autoimmune disease characterized by vascular pathologies and pregnancy complications. Here, we identify endosomal lysobisphosphatidic acid (LBPA) presented by the CD1d-like endothelial protein C receptor (EPCR) as a pathogenic cell surface antigen recognized by aPLs for induction of thrombosis and endosomal inflammatory signaling. The engagement of aPLs with EPCR-LBPA expressed on innate immune cells sustains interferon- and toll-like receptor 7-dependent B1a cell expansion and autoantibody production. Specific pharmacological interruption of EPCR-LBPA signaling attenuates major aPL-elicited pathologies and the development of autoimmunity in a mouse model of systemic lupus erythematosus. Thus, aPLs recognize a single cell surface lipid-protein receptor complex to perpetuate a self-amplifying autoimmune signaling loop dependent on the cooperation with the innate immune complement and coagulation pathways.


Assuntos
Apresentação de Antígeno , Autoimunidade , Coagulação Sanguínea/imunologia , Receptor de Proteína C Endotelial/imunologia , Lúpus Eritematoso Sistêmico/imunologia , Lisofosfolipídeos/imunologia , Monoglicerídeos/imunologia , Animais , Anticorpos Antifosfolipídeos/biossíntese , Autoanticorpos/biossíntese , Modelos Animais de Doenças , Perda do Embrião/imunologia , Endossomos/imunologia , Receptor de Proteína C Endotelial/genética , Humanos , Imunidade Inata , Lúpus Eritematoso Sistêmico/sangue , Camundongos , Camundongos Mutantes , Esfingomielina Fosfodiesterase/metabolismo , Trombose/imunologia , Receptor 7 Toll-Like/imunologia
3.
Gut Microbes ; 11(6): 1809-1823, 2020 11 01.
Artigo em Inglês | MEDLINE | ID: mdl-32579470

RESUMO

The microbiota has been linked to the development of atherosclerosis, but the functional impact of these resident bacteria on the lesion size and cellular composition of atherosclerotic plaques in the aorta has never been experimentally addressed with the germ-free low-density lipoprotein receptor-deficient (Ldlr-/- ) mouse atherosclerosis model. Here, we report that 16 weeks of high-fat diet (HFD) feeding of hypercholesterolemic Ldlr-/- mice at germ-free (GF) housing conditions did not impact relative aortic root plaque size, macrophage content, and necrotic core area. Likewise, we did not find changes in the relative aortic arch lesion size. However, late atherosclerotic GF Ldlr-/- mice had altered inflammatory plasma protein markers and reduced smooth muscle cell content in their atherosclerotic root plaques relative to CONV-R Ldlr-/- mice. Neither absolute nor relative aortic root or aortic arch plaque size correlated with age. Our analyses on GF Ldlr-/- mice did not reveal a significant contribution of the microbiota in late aortic atherosclerosis.


Assuntos
Aorta Torácica/patologia , Placa Aterosclerótica/patologia , Receptores de LDL/genética , Animais , Aorta Torácica/metabolismo , Modelos Animais de Doenças , Feminino , Vida Livre de Germes , Abrigo para Animais , Humanos , Masculino , Camundongos , Camundongos Endogâmicos C57BL , Camundongos Knockout , Microbiota , Placa Aterosclerótica/genética , Placa Aterosclerótica/metabolismo , Placa Aterosclerótica/microbiologia , Receptores de LDL/deficiência
4.
Nucleic Acids Res ; 48(13): 7385-7403, 2020 07 27.
Artigo em Inglês | MEDLINE | ID: mdl-32491174

RESUMO

Adenylate/uridylate-rich elements (AREs) are the most common cis-regulatory elements in the 3'-untranslated region (UTR) of mRNAs, where they fine-tune turnover by mediating mRNA decay. They increase plasticity and efficacy of mRNA regulation and are recognized by several ARE-specific RNA-binding proteins (RBPs). Typically, AREs are short linear motifs with a high content of complementary A and U nucleotides and often occur in multiple copies. Although thermodynamically rather unstable, the high AU-content might enable transient secondary structure formation and modify mRNA regulation by RBPs. We have recently suggested that the immunoregulatory RBP Roquin recognizes folded AREs as constitutive decay elements (CDEs), resulting in shape-specific ARE-mediated mRNA degradation. However, the structural evidence for a CDE-like recognition of AREs by Roquin is still lacking. We here present structures of CDE-like folded AREs, both in their free and protein-bound form. Moreover, the AREs in the UCP3 3'-UTR are additionally bound by the canonical ARE-binding protein AUF1 in their linear form, adopting an alternative binding-interface compared to the recognition of their CDE structure by Roquin. Strikingly, our findings thus suggest that AREs can be recognized in multiple ways, allowing control over mRNA regulation by adapting distinct conformational states, thus providing differential accessibility to regulatory RBPs.


Assuntos
Elementos Ricos em Adenilato e Uridilato , Proteínas de Ligação a RNA/química , Ubiquitina-Proteína Ligases/química , Sítios de Ligação , Células HEK293 , Humanos , Simulação de Acoplamento Molecular , Motivos de Nucleotídeos , Ligação Proteica , Proteínas de Ligação a RNA/metabolismo , Ubiquitina-Proteína Ligases/metabolismo
5.
Nucleic Acids Res ; 47(9): 4883-4895, 2019 05 21.
Artigo em Inglês | MEDLINE | ID: mdl-30957848

RESUMO

The development of synthetic riboswitches has always been a challenge. Although a number of interesting proof-of-concept studies have been published, almost all of these were performed with the theophylline aptamer. There is no shortage of small molecule-binding aptamers; however, only a small fraction of them are suitable for RNA engineering since a classical SELEX protocol selects only for high-affinity binding but not for conformational switching. We now implemented RNA Capture-SELEX in our riboswitch developmental pipeline to integrate the required selection for high-affinity binding with the equally necessary RNA conformational switching. Thus, we successfully developed a new paromomycin-binding synthetic riboswitch. It binds paromomycin with a KD of 20 nM and can discriminate between closely related molecules both in vitro and in vivo. A detailed structure-function analysis confirmed the predicted secondary structure and identified nucleotides involved in ligand binding. The riboswitch was further engineered in combination with the neomycin riboswitch for the assembly of an orthogonal Boolean NOR logic gate. In sum, our work not only broadens the spectrum of existing RNA regulators, but also signifies a breakthrough in riboswitch development, as the effort required for the design of sensor domains for RNA-based devices will in many cases be much reduced.


Assuntos
Aptâmeros de Nucleotídeos/química , RNA/química , Riboswitch/genética , Técnica de Seleção de Aptâmeros , Aptâmeros de Nucleotídeos/genética , Ligantes , Neomicina/química , Conformação de Ácido Nucleico/efeitos dos fármacos , Paromomicina/química , Bibliotecas de Moléculas Pequenas/química , Relação Estrutura-Atividade , Teofilina/química
6.
Biosensors (Basel) ; 9(1)2019 Jan 02.
Artigo em Inglês | MEDLINE | ID: mdl-30609709

RESUMO

The excessive use of antibiotics in food-producing animals causes a steady rise of multiple antibiotic resistance in foodborne bacteria. Next to sulfonamides, the most common antibiotics groups are fluoroquinolones, aminoglycosides, and ß-lactams. Therefore, there is a need for a quick, efficient, and low-cost detection procedure for antibiotics. In this study, we propose an inkjet-printed aptamer-based biosensor developed for the detection of the fluoroquinolone ciprofloxacin. Due to their extraordinary high affinity and specificity, aptamers are already widely used in various applications. Here we present a ciprofloxacin-binding RNA aptamer developed by systematic evolution of ligands by exponential enrichment (SELEX). We characterized the secondary structure of the aptamer and determined the KD to 36 nM that allow detection of antibiotic contamination in a relevant range. We demonstrate that RNA aptamers can be inkjet-printed, dried, and resolved while keeping their functionality consistently intact. With this proof of concept, we are paving the way for a potential range of additional aptamer-based, printable biosensors.


Assuntos
Aptâmeros de Nucleotídeos/química , Técnicas Biossensoriais/métodos , Ciprofloxacina/análise , Papel , Animais , Aptâmeros de Nucleotídeos/metabolismo , Técnicas Biossensoriais/instrumentação , Ciprofloxacina/metabolismo , Fluoroquinolonas/análise , Fluoroquinolonas/metabolismo , Análise de Alimentos , Conformação de Ácido Nucleico , Técnica de Seleção de Aptâmeros
7.
Nucleic Acids Res ; 46(22): 12109-12125, 2018 12 14.
Artigo em Inglês | MEDLINE | ID: mdl-30295819

RESUMO

Post-transcriptional gene regulation controls the amount of protein produced from a specific mRNA by altering both its decay and translation rates. Such regulation is primarily achieved by the interaction of trans-acting factors with cis-regulatory elements in the untranslated regions (UTRs) of mRNAs. These interactions are guided either by sequence- or structure-based recognition. Similar to sequence conservation, the evolutionary conservation of a UTR's structure thus reflects its functional importance. We used such structural conservation to identify previously unknown cis-regulatory elements. Using the RNA folding program Dynalign, we scanned all UTRs of humans and mice for conserved structures. Characterizing a subset of putative conserved structures revealed a binding site of the RNA-binding protein Roquin. Detailed functional characterization in vivo enabled us to redefine the binding preferences of Roquin and identify new target genes. Many of these new targets are unrelated to the established role of Roquin in inflammation and immune responses and thus highlight additional, unstudied cellular functions of this important repressor. Moreover, the expression of several Roquin targets is highly cell-type-specific. In consequence, these targets are difficult to detect using methods dependent on mRNA abundance, yet easily detectable with our unbiased strategy.


Assuntos
Biologia Computacional/métodos , Regulação da Expressão Gênica , Dobramento de RNA , Proteínas de Ligação a RNA/química , Ubiquitina-Proteína Ligases/química , Regiões 3' não Traduzidas , Animais , Sítios de Ligação , Linhagem Celular , Simulação por Computador , Análise Mutacional de DNA , Células HEK293 , Células HeLa , Humanos , Camundongos , Conformação de Ácido Nucleico , Nucleotídeos/genética , Ligação Proteica , RNA Mensageiro/metabolismo , Proteínas de Ligação a RNA/genética , Transcrição Gênica , Ubiquitina-Proteína Ligases/genética
8.
Nucleic Acids Res ; 46(4): 2121-2132, 2018 02 28.
Artigo em Inglês | MEDLINE | ID: mdl-29346617

RESUMO

RNA molecules play important and diverse regulatory roles in the cell. Inspired by this natural versatility, RNA devices are increasingly important for many synthetic biology applications, e.g. optimizing engineered metabolic pathways, gene therapeutics or building up complex logical units. A major advantage of RNA is the possibility of de novo design of RNA-based sensing domains via an in vitro selection process (SELEX). Here, we describe development of a novel ciprofloxacin-responsive riboswitch by in vitro selection and next-generation sequencing-guided cellular screening. The riboswitch recognizes the small molecule drug ciprofloxacin with a KD in the low nanomolar range and adopts a pseudoknot fold stabilized by ligand binding. It efficiently interferes with gene expression both in lower and higher eukaryotes. By controlling an auxotrophy marker and a resistance gene, respectively, we demonstrate efficient, scalable and programmable control of cellular survival in yeast. The applied strategy for the development of the ciprofloxacin riboswitch is easily transferrable to any small molecule target of choice and will thus broaden the spectrum of RNA regulators considerably.


Assuntos
Ciprofloxacina/química , Riboswitch , Bioengenharia , Regulação da Expressão Gênica , Células HeLa , Sequenciamento de Nucleotídeos em Larga Escala , Humanos , Ligantes , Mutação , Conformação de Ácido Nucleico , Técnica de Seleção de Aptâmeros , Saccharomyces cerevisiae/genética
9.
J Bacteriol ; 199(4)2017 02 15.
Artigo em Inglês | MEDLINE | ID: mdl-27920296

RESUMO

Sequence comparisons showed that the sulfur oxygenase reductase (SOR) of the haloalkaliphilic bacterium Thioalkalivibrio paradoxus Arh 1 (TpSOR) is branching deeply within dendrograms of these proteins (29 to 34% identity). A synthetic gene encoding TpSOR expressed in Escherichia coli resulted in a protein 14.7 ± 0.9 nm in diameter and an apparent molecular mass of 556 kDa. Sulfite and thiosulfate were formed from elemental sulfur in a temperature range of 10 to 98°C (optimum temperature ≈ 80°C) and a pH range of 6 to 11.5 (optimum pH ≈ 9; 308 ± 78 U/mg of protein). Sulfide formation had a maximum specific activity of 0.03 U/mg, or <1% of the corresponding activity of other SORs. Hence, reductase activity seems not to be an integral part of the reaction mechanism. TpSOR was most active at NaCl or glycine betaine concentrations of 0 to 1 M, although 0.2% of the maximal activity was detected even at 5 M NaCl and 4 M betaine. The melting point of TpSOR was close to 80°C, when monitored by circular dichroism spectroscopy or differential scanning fluorimetry; however, the denaturation kinetics were slow: 55% of the residual activity remained after 25 min of incubation at 80°C. Site-directed mutagenesis showed that the active-site residue Cys44 is essential for activity, whereas alanine mutants of the two other conserved cysteines retained about 0.5% residual activity. A model of the sulfur metabolism in T. paradoxus is discussed. IMPORTANCE: Sulfur oxygenase reductases (SORs) are the only enzymes catalyzing an oxygen-dependent disproportionation of elemental sulfur and/or polysulfides to sulfite, thiosulfate, and hydrogen sulfide. SORs are known from mesophilic and extremophilic archaea and bacteria. All SORs seem to form highly thermostable 24-subunit hollow spheres. They carry a low-potential mononuclear nonheme iron in the active site and an indispensable cysteine; however, their exact reaction mechanisms are unknown. Typically, the reductase activity of SORs is in the range of 5 to 50% of the oxygenase activity, but mutagenesis studies had so far failed to identify residues crucial for the reductase reaction. We describe here the first SOR, which is almost devoid of the reductase reaction and which comes from a haloalkaliphilic bacterium.


Assuntos
Gammaproteobacteria/enzimologia , Regulação Bacteriana da Expressão Gênica/fisiologia , Regulação Enzimológica da Expressão Gênica/fisiologia , Oxirredutases atuantes sobre Doadores de Grupo Enxofre/metabolismo , Gammaproteobacteria/genética , Gammaproteobacteria/metabolismo , Genoma Bacteriano , Mutagênese Sítio-Dirigida , Oxirredutases atuantes sobre Doadores de Grupo Enxofre/genética , Filogenia
10.
Biochim Biophys Acta ; 1859(7): 848-59, 2016 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-27168114

RESUMO

Translation is an energy-intensive process and tightly regulated. Generally, translation is initiated in a cap-dependent manner. Under stress conditions, typically found within the tumor microenvironment in association with e.g. nutrient deprivation or hypoxia, cap-dependent translation decreases, and alternative modes of translation initiation become more important. Specifically, internal ribosome entry sites (IRES) facilitate translation of specific mRNAs under otherwise translation-inhibitory conditions. This mechanism is controlled by IRES trans-acting factors (ITAF), i.e. by RNA-binding proteins, which interact with and determine the activity of selected IRESs. We aimed at characterizing the translational regulation of the IL-33 decoy receptor sST2, which was enhanced by fibroblast growth factor 2 (FGF2). We identified and verified an IRES within the 5'UTR of sST2. Furthermore, we found that MEK/ERK signaling contributes to FGF2-induced, sST2-IRES activation and translation. Determination of the sST2-5'UTR structure by in-line probing followed by deletion analyses identified 23 nucleotides within the sST2-5'UTR to be required for optimal IRES activity. Finally, we show that the RNA-binding protein heterogeneous ribonucleoprotein A1 (hnRNP A1) binds to the sST2-5'UTR, acts as an ITAF, and thus controls the activity of the sST2-IRES and consequently sST2 translation. Specifically, FGF2 enhances nuclear-cytoplasmic translocation of hnRNP A1, which requires intact MEK/ERK activity. In summary, we provide evidence that the sST2-5'UTR contains an IRES element, which is activated by a MEK/ERK-dependent increase in cytoplasmic localization of hnRNP A1 in response to FGF2, enhancing the translation of sST2.


Assuntos
Fator 2 de Crescimento de Fibroblastos/farmacologia , Ribonucleoproteínas Nucleares Heterogêneas Grupo A-B/fisiologia , Sítios Internos de Entrada Ribossomal/fisiologia , Biossíntese de Proteínas , Receptores de Superfície Celular/genética , Receptores de Superfície Celular/metabolismo , Regiões 5' não Traduzidas/efeitos dos fármacos , Sítios de Ligação/efeitos dos fármacos , Regulação da Expressão Gênica/efeitos dos fármacos , Ribonucleoproteína Nuclear Heterogênea A1 , Humanos , Proteína 1 Semelhante a Receptor de Interleucina-1 , Sistema de Sinalização das MAP Quinases/efeitos dos fármacos , Sistema de Sinalização das MAP Quinases/genética , Células MCF-7 , Biossíntese de Proteínas/efeitos dos fármacos , Biossíntese de Proteínas/genética , Solubilidade
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