Synaptotagmin-9 and Tomosyn-1 molecular complex regulates Stx1A SNAREs to inhibit insulin secretion from pancreatic beta-cells
Rahman, M. M.; Pathak, A.; Schueler, K. L.; Alsharif, H. A.; Michl, A. N.; Alexander, J.; Kim, J.-a.; Chapman, E. R.; Bhatnagar, S.
Show abstract
Stimulus-coupled insulin secretion from {beta}-cells involves the fusion of insulin granules to the plasma membrane (PM) via SNARE complex formation--a cellular process key for maintaining whole-body glucose homeostasis. Optimal insulin secretion depends on how the clamping of SNAREs is released, rendering granules fusogenic. We show that an insulin granule protein synaptotagmin-9 (Syt9) deletion in lean mice increased glucose clearance, random-fed plasma insulin levels, and insulin secretion (in vivo and ex vivo islets) without affecting insulin sensitivity. These outcomes demonstrate that Syt9 has an inhibitory function in insulin secretion. Moreover, Syt9 interacts with PM-Stx1A and soluble Tomosyn-1 proteins to form non-fusogenic complexes between PM and insulin granules, preventing Stx1A-SNARE formation and insulin secretion. Furthermore, Syt9 inhibits SNARE-complex formation by posttranscriptional regulation of Tomosyn-1. We conclude that Syt9 and Tomosyn-1 are endogenous inhibitors that modulate Stx1A availability to determine {beta}-cell secretory capacity. HighlightsO_LISynaptotagmin-9 inhibits biphasic insulin secretion from {beta}-cells. C_LIO_LISynaptotagmin-9, syntaxin-1A, and Tomosyn-1 forms a molecular complex that decreases the availability of syntaxin-1A to form SNARE complexes in insulin secretion. C_LIO_LISynaptotagmin-9-mediated inhibition of insulin secretion occurs through post-transcriptional regulation of Tomosyn-1. C_LI
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Target deconvolution of an insulin hypersecretion-inducer acting through VDAC1 with a distinct transcriptomic signature in beta-cells 96%
- Purification of age-distinct insulin secretory granules through antigen restriction 93%
- Sex-biased islet β cell dysfunction is caused by the MODY MAFA S64F variant by inducing premature aging and senescence in males 93%
Similar papers in this journal
- DIMT1, a regulator of ribosomal biogenesis, controls beta-cell protein synthesis, mitochondrial function and insulin secretion 94%
- Increased RAMP3 expression enhances GLP-1 mediated Glucose Stimulated Insulin Secretion in a Manner Dependent on Ca2+ Mobilisation 94%
- Disrupting actin filaments enhances glucose-stimulated insulin secretion independent of the cortical actin cytoskeleton 94%
Similar papers in this journal
- Molecular mapping and functional validation of GLP-1R cholesterol binding sites in pancreatic beta cells 95%
- Pharmacologic rescue of circadian β-cell failure through P2Y1 purinergic receptor identified by small-molecule screen 95%
- Microtubules regulate pancreatic beta cell heterogeneity via spatiotemporal control of insulin secretion hot spots 95%
Similar papers in this journal
- The type 2 diabetes gene product STARD10 is a phosphoinositide binding protein that controls insulin secretory granule biogenesis 95%
- Reduced somatostatin signalling leads to hypersecretion of glucagon in mice fed a high fat diet 95%
- Spatiotemporal regulation of GIPR signaling impacts glucose homeostasis as revealed in studies of a common GIPR variant. 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.