Search results for "Transduction"

showing 10 items of 2149 documents

The B-cell receptor in control of tumor B-cell fitness: Biology and clinical relevance

2019

Surface expression of a functional B cell antigen receptor (BCR) is essential for the survival and proliferation of mature B cells. Most types of B-cell lymphoproliferative disorders retain surface BCR expression, including B-cell non-Hodgkin lymphomas (B-NHL) and chronic lymphocytic leukemia (CLL). Targeting BCR effectors in B-NHL cell lines in vitro has indicated that this signaling axis is crucial for malignant B cell growth. This has led to the development of inhibitors of BCR signaling, which are currently used for the treatment of CLL and several B-NHL subtypes. Recent studies based on conditional BCR inactivation in a MYC-driven mouse B-cell lymphoma model have revisited the role of …

0301 basic medicinetumor cell fitnessChronic lymphocytic leukemiaImmunologyB-cell receptorPopulationReceptors Antigen B-CellLymphoproliferative disorderslymphomaBiologyMice03 medical and health sciences0302 clinical medicineimmune system diseaseshemic and lymphatic diseasesB-cell receptorTumor MicroenvironmentmedicineAnimalsHumansImmunology and AllergyeducationHematologic NeoplasmB cellBCR inhibitorB-Lymphocyteseducation.field_of_studyAnimalB-Lymphocytebreakpoint cluster regionB-cell receptor; BCR inhibitors; c-MYC; lymphoma; lymphoma resistance; tumor cell fitnesslymphoma resistancemedicine.diseaseLymphoproliferative DisordersLymphomaBCR inhibitorsPhenotype030104 developmental biologymedicine.anatomical_structurec-MYCtumor cell fitneCell cultureLymphoproliferative DisorderHematologic NeoplasmsCancer researchHumanSignal Transduction030215 immunology
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OSIP1 is a self‐assembling DUF3129 protein required to protect fungal cells from toxins and stressors

2021

International audience; Secreted proteins are key players in fungal physiology and cell protection against external stressing agents and antifungals. Oak stress-induced protein 1 (OSIP1) is a fungal-specific protein with unknown function. By using Podospora anserina and Phanerochaete chrysosporium as models, we combined both in vivo functional approaches and biophysical characterization of OSIP1 recombinant protein. The P. anserina OSIP1(Delta) mutant showed an increased sensitivity to the antifungal caspofungin compared to the wild type. This correlated with the production of a weakened extracellular exopolysaccharide/protein matrix (ECM). Since the recombinant OSIP1 from P. chrysosporium …

0303 health sciencesAntifungal Agentsbiology030306 microbiologyMutantWild typePhanerochaetebiology.organism_classificationMicrobiologyPodospora anserinalaw.inventionCell biologyFungal Proteins03 medical and health sciencesChaotropic agentSecretory proteinPodosporalawRecombinant DNAExtracellular[PHYS.COND.CM-MS]Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]PhanerochaeteEcology Evolution Behavior and SystematicsSignal Transduction030304 developmental biology
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Ubiquitous Structural Signaling in Bacterial Phytochromes

2015

The phytochrome family of light-switchable proteins has long been studied by biochemical, spectroscopic and crystallographic means, while a direct probe for global conformational signal propagation has been lacking. Using solution X-ray scattering, we find that the photosensory cores of several bacterial phytochromes undergo similar large-scale structural changes upon red-light excitation. The data establish that phytochromes with ordinary and inverted photocycles share a structural signaling mechanism and that a particular conserved histidine, previously proposed to be involved in signal propagation, in fact tunes photoresponse.

0303 health sciencesBacteriaPhytochromeProtein dynamicsta1182BiologyX-ray scattering010402 general chemistryBioinformaticsphytochromes01 natural sciences0104 chemical sciences/dk/atira/pure/sustainabledevelopmentgoals/clean_water_and_sanitation03 medical and health sciencesprotein dynamicsBiophysicsGeneral Materials SciencePhytochromePhysical and Theoretical ChemistrySignal transductionSDG 6 - Clean Water and SanitationHistidinesignal transduction030304 developmental biologyJournal of Physical Chemistry Letters
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2019

Mitochondria have been increasingly recognized as a central regulatory nexus for multiple metabolic pathways, in addition to ATP production via oxidative phosphorylation (OXPHOS). Here we show that inducing mitochondrial DNA (mtDNA) stress in Drosophila using a mitochondrially-targeted Type I restriction endonuclease (mtEcoBI) results in unexpected metabolic reprogramming in adult flies, distinct from effects on OXPHOS. Carbohydrate utilization was repressed, with catabolism shifted towards lipid oxidation, accompanied by elevated serine synthesis. Cleavage and translocation, the two modes of mtEcoBI action, repressed carbohydrate rmetabolism via two different mechanisms. DNA cleavage activ…

0303 health sciencesCancer ResearchCatabolismMetabolismOxidative phosphorylationBiologyMitochondrionPyruvate dehydrogenase complexCell biology03 medical and health sciencesMetabolic pathway0302 clinical medicineLipid oxidationGeneticsSignal transductionMolecular Biology030217 neurology & neurosurgeryGenetics (clinical)Ecology Evolution Behavior and Systematics030304 developmental biologyPLOS Genetics
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2020

Over the last decade, the E3-ubiquitine ligases from IAP (Inhibitor of Apoptosis) family have emerged as potent regulators of immune response. In immune cells, they control signaling pathways driving differentiation and inflammation in response to stimulation of tumor necrosis factor receptor (TNFR) family, pattern-recognition receptors (PRRs), and some cytokine receptors. They are able to control the activity, the cellular fate, or the stability of actors of signaling pathways, acting at different levels from components of receptor-associated multiprotein complexes to signaling effectors and transcription factors, as well as cytoskeleton regulators. Much less is known about ubiquitination …

0303 health sciencesCell signalingbiologymedicine.medical_treatmentGeneral MedicineInhibitor of apoptosisProtein ubiquitinationCell biology03 medical and health sciences0302 clinical medicineCytokineUbiquitin030220 oncology & carcinogenesisbiology.proteinmedicineSignal transductionReceptorTranscription factor030304 developmental biologyCells
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Advanced mechanotherapy: Biotensegrity  for governing metastatic tumor cell fate via modulating the extracellular matrix.

2021

Mechano-transduction is the procedure of mechanical stimulus translation via cells, among substrate shear flow, topography, and stiffness into a biochemical answer. TAZ and YAP are transcriptional coactivators which are recognized as relay proteins that promote mechano-transduction within the Hippo pathway. With regard to healthy cells in homeostasis, mechano-transduction regularly restricts proliferation, and TAZ and YAP are totally inactive. During cancer development a YAP/TAZ - stimulating positive response loop is formed between the growing tumor and the stiffening ECM. As tumor developments, local stromal and cancerous cells take advantage of mechanotransduction to enhance proliferatio…

0303 health sciencesHippo signaling pathwayStromal cellChemistryPharmaceutical ScienceCell Differentiation02 engineering and technologyCell fate determination021001 nanoscience & nanotechnologyPhosphoproteinsMechanotransduction CellularCell biologyExtracellular MatrixExtracellular matrix03 medical and health sciencesMechanobiologyTumor progressionNeoplasmsHumansMechanotransduction0210 nano-technologyMechanotherapy030304 developmental biologyAdaptor Proteins Signal TransducingJournal of controlled release : official journal of the Controlled Release Society
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Stimulus Perception in Bacterial Signal-Transducing Histidine Kinases

2006

SUMMARY Two-component signal-transducing systems are ubiquitously distributed communication interfaces in bacteria. They consist of a histidine kinase that senses a specific environmental stimulus and a cognate response regulator that mediates the cellular response, mostly through differential expression of target genes. Histidine kinases are typically transmembrane proteins harboring at least two domains: an input (or sensor) domain and a cytoplasmic transmitter (or kinase) domain. They can be identified and classified by virtue of their conserved cytoplasmic kinase domains. In contrast, the sensor domains are highly variable, reflecting the plethora of different signals and modes of sens…

0303 health sciencesHistidine Kinase030306 microbiologyKinaseHistidine kinaseReviewsBiologyBacterial Physiological PhenomenaMicrobiologyTwo-component regulatory systemTransmembrane proteinCell biologyHAMP domain03 medical and health sciencesResponse regulatorInfectious DiseasesBacterial ProteinsSignal transductionProtein KinasesMolecular BiologyHistidineSignal Transduction030304 developmental biologyMicrobiology and Molecular Biology Reviews
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Structural and Functional Characterization of Autophosphorylation in Bacterial Histidine Kinases

2019

Autophosphorylation of histidine kinases (HK) is the first step for signal transduction in bacterial two-component signalling systems. As HKs dimerize, the His residue is phosphorylated in cis or trans depending on whether the ATP molecule used in the reaction is bound to the same or the neighboring subunit, respectively. The cis or trans autophosphorylation results from an alternative directionality in the connection between helices α1 and α2 in the HK DHp domain, in such a way that α2 could be oriented almost 90° counterclockwise or clockwise with respect to α1. Sequence and length variability of this connection appears to lie behind the different directionality and is implicated in partn…

0303 health sciencesKinaseChemistryProtein subunitAutophosphorylation03 medical and health sciencesResponse regulator0302 clinical medicineBiophysicsPhosphorylationDirectionalitySignal transduction030217 neurology & neurosurgeryHistidine030304 developmental biology
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Flashing light in sponges through their siliceous fiber network: A new strategy of “neuronal transmission” in animals

2012

Sponges (phylum Porifera) represent a successful animal taxon that evolved prior to the Ediacaran-Cambrian boundary (542 million years ago). They have developed an almost complete array of cell- and tissue-based interaction systems necessary for the establishment of a functional, multicellular body. However, a network of neurons, one cell/tissue-communication system is missing in sponges. This fact is puzzling and enigmatic, because these animals possess receptors known to be involved in the nervous system in evolutionary younger animal phyla. As an example, the metabotropic glutamate/GABA-like receptor has been identified and cloned by us. Recently, we have identified a novel light transmi…

0303 health sciencesMultidisciplinarybiologyHexactinellid030302 biochemistry & molecular biologyAnatomybiology.organism_classificationCell biologySuberites domuncula03 medical and health sciencesSpongeDemospongeSponge spiculeCryptochromeLuciferaseSignal transductionGeneral030304 developmental biologyChinese Science Bulletin
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2019

Cryptochromes are blue-light photoreceptor proteins, which provide input to circadian clocks. The cryptochrome from Drosophila melanogaster (DmCry) modulates the degradation of Timeless and itself. It is unclear how light absorption by the chromophore and the subsequent redox reactions trigger these events. Here, we use nano- to millisecond time-resolved x-ray solution scattering to reveal the light-activated conformational changes in DmCry and the related (6-4) photolyase. DmCry undergoes a series of structural changes, culminating in the release of the carboxyl-terminal tail (CTT). The photolyase has a simpler structural response. We find that the CTT release in DmCry depends on pH. Mutat…

0303 health sciencesMultidisciplinarybiologyTimelessChemistryCircadian clockPhotoreceptor protein010402 general chemistrybiology.organism_classification01 natural sciences0104 chemical sciences03 medical and health sciencesTransduction (biophysics)CryptochromeBiophysicsSignal transductionDrosophila melanogasterPhotolyase030304 developmental biologyScience Advances
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