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Kalaidzidis, I.

Publications and source records attributed to Kalaidzidis, I..

2 recordsLinked to original sources

Villin-SNAP25 interaction regulates insulin secretion downstream of ICA512 signaling

Pancreatic islet {beta}-cells step-up insulin production and secretion in response to the elevation of blood glucose levels. ICA512/PTPRN is a transmembrane cargo of the insulin secretory granules (SGs). Upon SG exocytosis, its Ca2+/calpain mediated cleavage at the plasma membrane generates an ICA512-cleaved cytosolic fragment (ICA512-CCF) which as a decoy phosphatase prolongs phospho-STAT5/3 activities, thereby enhancing the transcription of mRNAs for SG cargoes, including insulin and its own, to replenish SG stores. In addition, ICA512 positively regulates the expression of F-actin modifier villin. Villin, in turn, modulates the size of actin cages surrounding cortical SGs, hence regulating SG mobility and exocytosis. Here we show that villin controls the number of SG docking sites for exocytosis by directly interacting at low glucose with the t-SNARE SNAP-25, thus restricting in this condition SG access to fusion sites and insulin release. Replacement of ICA512-CCF N-terminal ubiquitin-acceptor lysine 609 (K609) with valine (V) stabilized ICA512-CCF in insulinoma cells and homozygous ICA512K609V mice and enhanced the levels of phospho-STAT5/3 and villin. In ICA512K609V female mice these molecular traits correlated with reduced body weight, improved insulin sensitivity, reduced basal insulin secretion and onset time for glucose stimulated insulin secretion. Taken together, these data demonstrates that SG exocytosis induced ICA512 retrograde signaling acts in concert with the novel SNARE complex regulator villin to plastically adapt {beta}-cell actin cytoskeleton and access to SG docking sites for optimal control of insulin secretion in response to variations in extracellular glucose levels. O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=110 SRC="FIGDIR/small/699220v1_ufig1.gif" ALT="Figure 1"> View larger version (27K): org.highwire.dtl.DTLVardef@37d835org.highwire.dtl.DTLVardef@5389f1org.highwire.dtl.DTLVardef@855d98org.highwire.dtl.DTLVardef@1c3c639_HPS_FORMAT_FIGEXP M_FIG Graphical abstract Model of ICA512 and STAT3/5-dependent regulation of -cell function. At basal conditions, villin limits secretory granule (SG) docking by interacting with SNAP-25, restricting insulin release (1). Increased metabolic load triggers hyperglycemia-induced ICA512 processing and growth factor-mediated STAT3/5 phosphorylation (2-4), enhancing ISG mRNAs, granule biogenesis, and villin expression (5,6). Villin modulates SNARE protein availability, controlling SG docking and secretion. Together, ICA512 retrograde signaling and villin-mediated SNARE regulation dynamically remodel the -cell actin cytoskeleton, adjusting SG docking site access to ensure appropriate insulin secretion in response to fluctuating glucose levels. C_FIG

cell biology↗

GGA2-depletion in beta cells by Enteroviruses causes Golgi acidification, premature activation of cathepsins and alters the MHC class I immunopeptidome

Enteroviruses (EVs), such as Coxsackievirus B5 (CVB5), are linked to pancreatic beta cell autoimmunity in type 1 diabetes (T1D). CVB5 infection of beta cells blocks their cap-dependent translation but spares cap-independent translation of insulin secretory granule (SG) cargoes, including major T1D autoantigens. Despite this, insulin SG stores are depleted. We show that CVB5 protease 2A rapidly depletes Golgi-associated sorting factor GGA2 in beta cells due to its short half-life. Immunostaining of pancreas sections from recent-onset T1D donors confirmed reduced GGA2 in beta cells expressing EV capsid protein VP1. Both GGA2 depletion and CVB5 2A expression impair SG biogenesis at the TGN without affecting MHC class I trafficking. They also disrupt the sorting of vacuolar ATPase and cathepsins, leading to TGN acidification and premature lysosomal hydrolase activation, which typically generate peptides presented in HLA-II alleles. Notably, the unique immunopeptidome of EV-infected, GGA2-depleted ECN90 beta-like cells is mainly presented via HLA-B alleles with an average isoelectric point (pI) of [~]5, compared to a pI of [~]7 of the prevailing HLA-I A allele immunopeptidome of non-infected cells. We propose that delayed sorting at the acidified TGN promotes cathepsin-mediated processing of in-transit secretory proteins, including SG cargoes, thereby generating novel peptides that may replace HLA class I antigens due to the acidic environment. This novel cross-presentation mechanism could have implications for T1D pathogenesis and antigen presentation in general.

cell biology↗