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The Gram-negative bacterium Bordetella pertussis causes a respiratory disease called whooping cough, or pertussis. This disease is characterized by paroxysmal coughing, the mechanism of which has not been intensively studied because of a lack of versatile animal models that reproduce the cough.
No abstract is provided for this article.
The cDNA insert of the plasmid p14-6[1] is found to be the 3'-untranslatcd region (3'-UTR) of the transcription factor for human interleukin-6, NF-IL6. This 3' -DTK is actively transcribed in the revertant cell line RR, which contains the p14-6 plasmid integrated into its genomic DNA. Simultaneously a protein specifically bound to this 3'-UTR is expressed in significantly larger amounts. Its overexpression is apparently related to the reversion of the malignant cellular phenotype. The properties of this protein, named BNF, and possible reasons for its overexpression are discussed, and hypothesis on the mechanism of reversion of the RR cells is proposed.
Invasion of viruses and bacteria is initially sensed by the host innate immune system, and evokes a rapid inflammatory response. Nucleotides from RNA viruses are recognized by retinoic-acid-inducible gene I-like helicases and Toll-like receptors, and this recognition triggers signaling cascades that induce antiviral mediators such as type I interferons. By contrast, Toll-like receptors recognizing bacterial components induce the expression of proinflammatory cytokines. Furthermore, recent studies suggest that viral and bacterial DNA also induce interferons in a Toll-independent mechanism, possibly through unidentified cytoplasmic receptor(s).
No abstract is provided for this article.
Macrophages play a critical role in the pathogenesis of metabolic diseases including gout and type 2 diabetes. The Nod‐like receptor ( NLR ) family, pyrin domain containing 3 ( NLRP3 ) forms the inflammasome with apoptosis‐associated speck‐like protein containing a CARD ( ASC ), the adaptor protein, and mediates inflammatory responses by macrophages. By compound screening, we found that tubulin polymerization inhibitors suppress NLRP3 inflammasome activation. NLRP3 inflammasome inducers reduce the NAD + level to inactivate the α‐tubulin deacetylase Sirtuin 2, resulting in accumulation of acetylated α‐tubulin. Acetylated α‐tubulin mediates mitochondrial transport and subsequent proximity of ASC on mitochondria to NLRP3 on the endoplasmic reticulum. Thus, microtubule‐driven transport of mitochondria is required for NLRP3 inflammasome activation. Macrophages are comprised of two subsets, M1 (inflammatory) and M2 (anti‐inflammatory). Trib1 is an adaptor protein involved in protein degradation of immune‐related transcription factors. We found that Trib1 is critical for the differentiation of F4 /80 + MR + tissue‐resident M2 ‐like macrophages. Mice lacking Trib1 in haematopoietic cells show severe lipodystrophy owing to increased lipolysis, even on a normal diet. In response to a high‐fat diet, the mice show hypertriglyceridaemia and insulin resistance, together with increased proinflammatory cytokine production. Thus, Trib1 is critical for adipose tissue maintenance and suppression of metabolic disorders by controlling the differentiation of tissue‐resident M2 ‐like macrophages.