Role of IAPP in Islet Dysfunction in Diabetes
Role of IAPP in Islet Dysfunction in Diabetes
批准号:
7491374
负责人:
Peter Cawood Butler
金额:
$3.28万
依托单位国家:
美国
项目类别:
财政年份:
2001
资助国家:
美国
项目状态:
已结题
起止时间:
2001-06-01 至 2010-03-31
关键词:
AddressAdultAlzheimer&aposs DiseaseAmyloidAntibodiesApoptosisCellsDNA NucleotidylexotransferaseDefectDegenerative DisorderDepositionDevelopmentDiabetes MellitusEndoplasmic ReticulumExtravasationFelis catusFigs - dietaryFree RadicalsFunctional disorderGlucoseGoalsGrantHumanHyperglycemiaImpaired fasting glycaemiaInsulinInsulin ResistanceIon ChannelLabelLightLipidsLongitudinal StudiesMediatingMembraneMembrane LipidsMethodsModelingMonkeysMusNeurodegenerative DisordersNon-Insulin-Dependent Diabetes MellitusParkinson DiseasePathway interactionsPatientsPlayProlineProteinsRateRattusReportingResearchResearch PersonnelRodentRoleSolutionsStaining methodStainsStressTestingTissuesToxic effectTransgenic OrganismsVaccinationbasedesigninsulin secretioninsulin sensitizing drugsisletislet amyloid polypeptidemouse modelnon-diabeticnovelpreventprogramsprophylacticresponsetrafficking
中文摘要
这项研究的总体目标是建立导致胰岛功能障碍的机制。
2型糖尿病,其更广泛的目标是促进旨在预防或
逆转2型糖尿病。2型糖尿病患者的胰岛以胰岛为特征
淀粉样蛋白来源于胰岛淀粉样多肽(IAPR),这是一种与IAPR共同表达和分泌的蛋白质
胰岛素。人IAPP(h-IAPP)在溶液中有形成低聚物的倾向。这些低聚物会导致
脂膜中的非选择性离子通道,并可诱导细胞凋亡。
在之前的资助周期中,我们确定患有T2 DM的人的p细胞质量减少了~65%,在
至少部分原因是p细胞凋亡率增加了约10倍。我们还报告了p细胞质量为~50%
空腹血糖(IFG)受损的人降低,这意味着p细胞质量的丧失先于
出现高血糖。我们建立了h-IAPP转基因大鼠(HIP)和小鼠模型
发展为糖尿病,其特征是由于p细胞凋亡增加而导致p细胞质量进行性缺陷。
初步研究表明,h-IAPP的毒性是通过内质网应激介导的,并且
这在T2 DM患者中是活跃的。
在拟议的研究中,我们试图解决以下问题。
1)IFG患者的0细胞凋亡率增加了吗?
2)h-iapp诱导0-细胞凋亡的机制是什么?该机制是否活跃?
在患有IFG和T2 DM的人类中?
3)有毒的IAPP寡聚体是否在细胞内形成并引起内质网
膜渗漏?
4)我们能预防HIP(h-IAPP转基因)大鼠糖尿病的发生吗?
这项研究计划将使我们能够揭示人类p细胞丧失的根本原因,
并建立一种合理的方法来防止这种情况。
英文摘要
The overall goals of this research program is to establish the mechanisms leading to islet dysfunction in
type 2 diabetes with a wider goal of facilitating rationale design of approaches designed to prevent or
reverse type-2 diabetes. The islet in humans with type 2 diabetes mellitus (T2DM) is characterized by islet
amyloid derived from islet amyloid polypeptide (IAPR), a protein that is co-expressed and secreted with
insulin. Human IAPP (h-IAPP) has the propensity to form oligomers in solution. These oligomers cause
non-selective ion channels in lipid membranes and can induce apoptosis.
In the prior grant cycle we established that p-cell mass is decreased by ~65% in humans with T2DM, at
least in part due to a ~10-fold increase in p-cell apoptosis. We also reported that p-cell mass is ~50%
decreased in humans with impaired fasting glucose (IFG), implying that the loss of p-cell mass precedes
development of hyperglycemia. We established h-IAPP transgenic rat (HIP) and mouse models which
develop diabetes characterized by a progressive defect in p-cell mass due to increased p-cell apoptosis.
Preliminary studies suggest h-IAPP toxicity is mediated through endoplasmic reticulum stress, and that
this is active in patients with T2DM.
In the proposed studies we seek to address the following questions.
1) Is 0-cell apoptosis increasedin humans with IFG?
2) What is the mechanism of h-IAPP induced0-cell apoptosis, and is this mechanism active
in humans with IFGand T2DM?
3) Do toxic IAPP oligomers form intracellularly and cause endoplasmic reticulum
membrane leakage?
4) Can weprevent development of diabetes in the HIP(h-IAPP transgenic) rat?
This program of studies would allow us to shed light into the underlying cause of loss of p-cells in humans,
and to establish a rationale approach to preventing this.
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会议论文
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