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Biology subjects

Kuellmer, K.

Publications and source records attributed to Kuellmer, K..

3 recordsLinked to original sources

Reduced intestinal GLP-1+ cell numbers are associated with an inflammation-related epithelial metabolic signature

Background & AimsEnteroendocrine cells (EECs) are known for their role in digestion and metabolism, yet their role in intestinal inflammation remains unclear. In inflammatory bowel diseases (IBD), a contribution of EECs to pathogenesis is indicated by autoantibodies affecting EEC function and general disease symptoms like insulin resistance and altered intestinal motility. Particularly, the L cell-derived hormone glucagon-like peptide 1 (GLP-1), suggested to orchestrate metabolic-inflammatory responses may influence inflammatory pathways in the intestine. MethodsWe quantified numbers of GLP-1+ cells in 4 different mouse models of intestinal inflammation and performed transcriptional analyses of colonic epithelial cells from inflamed interleukin (IL)10-deficient mice. Using a publicly available single-cell RNA sequencing dataset including mucosal biopsies from Crohns disease (CD) patients, we confirmed findings from the murine models. A model of mitochondrial dysfunction (ClpP{Delta}IEC mice) as well as murine and human intestinal organoids were used to study molecular mechanisms. ResultsNumbers of GLP-1 expressing cells are consistently reduced at the site of active disease in mouse models and CD patients. Despite this reduction, L cells from inflamed IL-10-deficient mice remained functional regarding GLP-1 secretion. Transcriptional analyses of intestinal epithelial cells indicate altered differentiation correlating with an inflammatory metabolic fingerprint. Reduced GLP-1+ cells in ClpP{Delta}IEC mice and inhibition of respiration in organoid cultures supports a causative role for metabolism in steering differentiation. ConclusionReduction of GLP-1+ cells represents a general feature of ileal and colonic inflammation in mice and human. Given the numerous properties of GLP-1, this reduction likely affects inflammatory processes in the mucosa and disease-related symptoms on multiple levels, and therefore, should be considered a therapeutic target in IBD. Data TransparencyAll data generated or analyzed during this study are included in this published article. Additional datasets, including raw data, are available from the corresponding author upon reasonable request. SynopsisThis study examines GLP-1+ cells in intestinal inflammation, showing consistent reductions in inflamed areas. Findings from mouse models and human data reveal an inflammatory metabolic profile linked to altered epithelial differentiation. GLP-1, involved in endocrine-immune crosstalk, may impact mucosal inflammation and symptoms, making it a therapeutic target. Graphical Abstract O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=80 SRC="FIGDIR/small/641577v2_ufig1.gif" ALT="Figure 1"> View larger version (29K): org.highwire.dtl.DTLVardef@136158borg.highwire.dtl.DTLVardef@1c08461org.highwire.dtl.DTLVardef@332635org.highwire.dtl.DTLVardef@117d5f_HPS_FORMAT_FIGEXP M_FIG C_FIG

molecular biology↗

From Planning Stage To FAIR Data: A Practical Metadatasheet For Biomedical Scientists

Datasets consist of measurement data and metadata. Metadata provides context, essential for understanding and (re-)using data. Various metadata standards exist for different methods, systems and contexts. However, relevant information resides at differing stages across the data-lifecycle. Often, this information is defined and standardized only at publication stage, which can lead to data loss and workload increase. In this study, we developed Metadatasheet, a metadata standard based on interviews with members of two biomedical consortia and systematic screening of data repositories. It aligns with the data-lifecycle allowing synchronous metadata recording within Microsoft Excel, a widespread data recording software. Additionally, we provide an implementation, the Metadata Workbook, that offers user-friendly features like automation, dynamic adaption, metadata integrity checks, and export options for various metadata standards. By design and due to its extensive documentation, the proposed metadata standard simplifies recording and structuring of metadata for biomedical scientists, promoting practicality and convenience in data management. This framework can accelerate scientific progress by enhancing collaboration and knowledge transfer throughout the intermediate steps of data creation.

bioinformatics↗

Interaction of adenylate cyclase CyaC with regulators Smc01817 and Clr of Sinorhizobium meliloti: cAMP as an ON/OFF trigger in sensor-regulator complexes?

The symbiotic bacterium Sinorhizobium meliloti contains a large number of adenylate cyclases (AC) for the control of different life styles. ACs produce cyclic AMP (cAMP) as a secondary messenger. Earlier, the redox responsive membrane-intrinsic AC CyaC has been shown to produce a trimeric signalling complex CyaCxCycRxcAMP-Clr. Here, use of the bacterial two-hybrid system BACTH showed that the LysR-type transcriptional regulator Smc01817 interacts in vivo with CyaC and the general cAMP-regulator Clr, suggesting the formation of a sensor-regulator complex CyaCxSmc01817xcAMP-Clr. Therefore, formation of sensor-regulator complexes from ACs and transcriptional regulators seems to be a means in S. meliloti to setup specific signalling routes in a background with a large number of signalling routes applying the same signalling molecule (cAMP). Use of caged cAMP allows to address a specific signalling route and set of regulators, which is at variance with the classical role of cAMP as a diffusing secondary messenger.

microbiology↗