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Reynolds, S. D.

Publications and source records attributed to Reynolds, S. D..

2 recordsLinked to original sources

MUCOSECRETORY LUNG DISEASE: DIFFERENT ASSEMBLIES OF JAG1 AND JAG2 DETERMINE TRACHEOBRONCHIAL CELL FATE

Mucosecretory lung disease compromises airway epithelial function and is characterized by goblet cell hyperplasia and ciliated cell hypoplasia. These cell types are derived from tracheobronchial stem/progenitor cells via a Notch dependent mechanism. Although specific arrays of Notch receptors regulate cell fate determination, the function of the ligands Jagged1 (JAG1) and Jagged2 (JAG2) is unclear. This study used primary human bronchial air-liquid- interface cultures, gamma secretase inhibition, and neutralizing antibodies to show: 1) JAG1 and JAG2 were necessary for secretory progenitor cell fate determination; 2) JAG2 suppressed squamous differentiation; and 3) pausing of the ciliated cell differentiation process after Notch inhibition. Histological, cell fractionation, cell surface biotinylation, and ubiquitination analyses demonstrated that all cells were JAG1 positive but that little JAG1 was present on the cell surface. In contrast, JAG2 was expressed in a positive-negative pattern and was abundant on the cell surface. Glycogen synthase kinase 3 (GSK3) and tankyrase inhibition studies showed that GSK3 regulated JAG2 trafficking, and that this mechanism was WNT-independent. Collectively, these data indicate that variation in JAG2 trafficking creates regions of high, medium, and low ligand expression. Thus, distinct assemblies of JAG1 and JAG2 may regulate Notch signal strength and determine the fate of tracheobronchial stem/progenitor cells. O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=86 SRC="FIGDIR/small/478334v2_ufig1.gif" ALT="Figure 1"> View larger version (15K): org.highwire.dtl.DTLVardef@37bb51org.highwire.dtl.DTLVardef@eaeaf5org.highwire.dtl.DTLVardef@e791dcorg.highwire.dtl.DTLVardef@1193d73_HPS_FORMAT_FIGEXP M_FIG O_FLOATNOGraphical AbstractC_FLOATNO Different assemblies of JAG1 and JAG2 may determine Notch signal strength and cell fate within the tracheobronchial epithelium. A cell which interacts with JAG1+ cells (blue squares) receives a low Notch signal (light yellow square). A cell which interacts with a mixture of JAG1+ and JAG1+/JAG2+ cells (purple squares) receives a medium (med) Notch signal (medium yellow square). A cell which interacts with JAG1+/JAG2+ cells receives a high Notch signal (bright yellow square). C_FIG

cell biology↗

REPEATED INJURY PROMOTES TRACHEOBRONCHIAL TISSUE STEM CELL ATTRITION

Chronic lung disease has been attributed to stem cell aging and/or exhaustion. To address this issue, we investigated the lifespan of tracheobronchial tissue stem cells (TSC) over time and in response to repeated injury. Chromatin and nucleotide labeling studies in mice indicated that: 1) injury activated a subset of the TSC pool and that this process conserved TSC over time; and 2) activated TSC were predisposed to further proliferation and this activated state lead to terminal differentiation. Analysis of human TSC and clonal isolates indicated that repeated TSC proliferation led to telomere shortening and analysis of TSC from Dyskeratosis Congenita donors indicated that mutations in telomere biology genes accelerated TSC depletion. RNAseq and functional studies indicated that human TSC terminated as a secretory committed cell. These data support a model in which a repeated epithelial injury depletes the TSC pool and initiates the abnormal repair associated with chronic lung disease.

cell biology↗