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DESCRIPTION (provided by applicant): Our long-term objective is to understand the regulation of insulin secretion via coordination of ionic and hormonal pathways. To help understand the ionic path, we cloned and expressed the high-affinity sulfonylurea receptor, SUR1, the regulatory subunit of Beta-cell SUR1/klR6.2 KATP channels. Mutations in SUR1 and KIR6.2 cause a recessive form of persistent hyperinsulinemic hypoglycemia of infancy, HI, characterized by excess insulin secretion despite severe hypoglycemia. Paradoxically, Sun null (Sur 1 KO) mice are normoglycemic, although they share the electrophysiologic phenotype seen in HI Beta-cells Our recent work on SurIKO mice identify two 'compensatory' responses: 1) they retain a 'basal' glucose-dependent, Ca2+-dependent regulation of insulin release, albeit with altered release kinetics, and 2) unexpectedly Sur 1KO islets show no response to the incretins, GLP- 1 and GIP. This defect is secondary to an impaired response to elevated cAMP and serves to disrupt the enteroinsular axis, effectively removing a potent stimulus for insulin secretion in the Sur1 KO animals. We have shown that potentiation of glucose-induced insulin secretion by incretins occurs via a PKA independent pathway. Our results imply SUR1 interacts with non-PKA dependent pathway which we hypothesize involves the cAMP-GEF or Epac family of guanine-nucleotide exchange factors and that loss of this pathway disrupts cAMP sensing. We will test this hypothesis by directly measuring and characterizing SURI -Epac interactions. We will identify the affected cAMP effector pathway(s) by comparing activation of several kinase cascades and the Rab3A/Rim path, of known importance for exocytosis, in control vs Sur1KO islets. We will test the hypothesis that the dramatic difference in glucose homeostasis between HI neonates vs Sur1KO mice is the result of the latter completely lacking SURI by making transgenic mice expressing mutant SUR1 on the Sur1KO background. These studies will provide insight into sulfonylurea receptor function, understanding of how cAMP potentiates secretion, a deeper understanding of how insulin secretion is regulated and the importance of the enteroinsular axis in this regulation, and may suggest novel therapeutic strategies for HI and targets for the design of novel drugs.
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Docking and fusion of insulin secretory granules in SUR1 knock out mouse beta-cells observed by total internal reflection fluorescence microscopy.
全内反射荧光显微镜观察到,SUR1 中胰岛素分泌颗粒的对接和融合敲除小鼠 β 细胞。
DOI: --
发表时间: 2005
期刊: FEBS Lett. 579
影响因子: --
作者: [Kikuta, T., Ohara-Imaizumi, M., Nakazaki, M., Nishiwaki, C., Nakamichi, Y, Tei, C., Aguilar-Bryan, L., Bryan, J., Nagamatsu, S.]
通讯作者: S.
Glucose stimulates Ca2+ influx and insulin secretion in 2-week-old beta-cells lacking ATP-sensitive K+ channels.
葡萄糖会刺激缺乏 ATP 敏感 K 通道的 2 周大 β 细胞中 Ca2+ 流入和胰岛素分泌。
DOI: 10.1074/jbc.m609875200
发表时间: 2007
期刊: The Journal of biological chemistry
影响因子: --
作者: [Szollosi,Andras, Nenquin,Myriam, Aguilar-Bryan,Lydia, Bryan,Joseph, Henquin,Jean-Claude]
通讯作者: Henquin,Jean-Claude
Challenging the Dominant Model for ATP Regulation of KATP Channels
Challenging the Dominant Model for ATP Regulation of KATP Channels
Challenging the dominant model for ATP regulation of KATP channels
Challenging the Dominant Model for ATP Regulation of KATP Channels
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