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Islet amyloid and type 2 diabetes: from molecular misfolding to islet pathophysiology.胰岛淀粉样变与2型糖尿病:从分子错误折叠到胰岛病理生理学
Biochim Biophys Acta. 2001 Nov 29;1537(3):179-203. doi: 10.1016/s0925-4439(01)00078-3.
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Islet amyloid development in a mouse strain lacking endogenous islet amyloid polypeptide (IAPP) but expressing human IAPP.在一种缺乏内源性胰岛淀粉样多肽(IAPP)但表达人IAPP的小鼠品系中胰岛淀粉样变的发展。
Mol Med. 2000 Dec;6(12):998-1007.
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Identification of a novel human islet amyloid polypeptide beta-sheet domain and factors influencing fibrillogenesis.一种新型人类胰岛淀粉样多肽β-折叠结构域的鉴定及影响纤维形成的因素
J Mol Biol. 2001 May 4;308(3):515-25. doi: 10.1006/jmbi.2001.4593.
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Preparation of synthetic human islet amyloid polypeptide (IAPP) in a stable conformation to enable study of conversion to amyloid-like fibrils.制备具有稳定构象的合成人胰岛淀粉样多肽(IAPP),以利于研究其向淀粉样纤维的转化。
FEBS Lett. 2000 Mar 17;470(1):55-60. doi: 10.1016/s0014-5793(00)01287-4.
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Transthyretin binds amyloid beta peptides, Abeta1-42 and Abeta1-40 to form complex in the autopsied human kidney - possible role of transthyretin for abeta sequestration.转甲状腺素蛋白与淀粉样β肽、Aβ1-42和Aβ1-40结合,在尸检的人肾脏中形成复合物——转甲状腺素蛋白在Aβ隔离中的可能作用。
Neurosci Lett. 2000 Mar 10;281(2-3):171-4. doi: 10.1016/s0304-3940(00)00834-x.
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Isolation and identification of cyclic imide and deamidation products in heat stressed pramlintide injection drug product.热应激下普兰林肽注射剂药品中环酰亚胺和脱酰胺产物的分离与鉴定
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Quantification of beta-sheet amyloid fibril structures with thioflavin T.用硫黄素T对β-折叠淀粉样纤维结构进行定量分析。
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Islet amyloid: a long-recognized but underappreciated pathological feature of type 2 diabetes.胰岛淀粉样变:2型糖尿病一种早已被认识但未得到充分重视的病理特征。
Diabetes. 1999 Feb;48(2):241-53. doi: 10.2337/diabetes.48.2.241.
9
Reduced amylin release is a characteristic of impaired glucose tolerance and type 2 diabetes in Japanese Americans.胰岛淀粉样多肽分泌减少是日裔美国人糖耐量受损和2型糖尿病的一个特征。
Diabetes. 1998 Apr;47(4):640-5. doi: 10.2337/diabetes.47.4.640.
10
Release of incompletely processed proinsulin is the cause of the disproportionate proinsulinemia of NIDDM.未完全加工的胰岛素原的释放是2型糖尿病患者胰岛素原血症不成比例的原因。
Diabetes. 1997 Nov;46(11):1725-32. doi: 10.2337/diab.46.11.1725.

胰腺β细胞颗粒肽形成抑制胰岛淀粉样多肽原纤维形成的异分子复合物。

Pancreatic beta-cell granule peptides form heteromolecular complexes which inhibit islet amyloid polypeptide fibril formation.

作者信息

Jaikaran Emma T A S, Nilsson Melanie R, Clark Anne

机构信息

Diabetes Research Laboratories, Oxford Centre for Diabetes, Churchill Hospital, Oxford OX3 7LJ, U.K.

出版信息

Biochem J. 2004 Feb 1;377(Pt 3):709-16. doi: 10.1042/BJ20030852.

DOI:10.1042/BJ20030852
PMID:14565847
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1223903/
Abstract

Islet amyloid polypeptide (IAPP), or 'amylin', is co-stored with insulin in secretory granules of pancreatic islet beta-cells. In Type 2 diabetes, IAPP converts into a beta-sheet conformation and oligomerizes to form amyloid fibrils and islet deposits. Granule components, including insulin, inhibit spontaneous IAPP fibril formation in vitro. To determine the mechanism of this inhibition, molecular interactions of insulin with human IAPP (hIAPP), rat IAPP (rIAPP) and other peptides were examined using surface plasmon resonance (BIAcore), CD and transmission electron microscopy (EM). hIAPP and rIAPP complexed with insulin, and this reaction was concentration-dependent. rIAPP and insulin, but not pro-insulin, bound to hIAPP. Insulin with a truncated B-chain, to prevent dimerization, also bound hIAPP. In the presence of insulin, hIAPP did not spontaneously develop beta-sheet secondary structure or form fibrils. Insulin interacted with pre-formed IAPP fibrils in a regular repeating pattern, as demonstrated by immunoEM, suggesting that the binding sites for insulin remain exposed in hIAPP fibrils. Since rIAPP and hIAPP form complexes with insulin (and each other), this could explain the lack of amyloid fibrils in transgenic mice expressing hIAPP. It is likely that IAPP fibrillogenesis is inhibited in secretory granules (where the hIAPP concentration is in the millimolar range) by heteromolecular complex formation with insulin. Alterations in the proportions of insulin and IAPP in granules could disrupt the stability of the peptide. The increase in the proportion of unprocessed pro-insulin produced in Type 2 diabetes could be a major factor in destabilization of hIAPP and induction of fibril formation.

摘要

胰岛淀粉样多肽(IAPP),即“胰淀素”,与胰岛素共同储存在胰岛β细胞的分泌颗粒中。在2型糖尿病中,IAPP转变为β-折叠构象并寡聚化形成淀粉样纤维和胰岛沉积物。包括胰岛素在内的颗粒成分在体外可抑制IAPP的自发纤维形成。为确定这种抑制机制,利用表面等离子体共振(BIAcore)、圆二色光谱(CD)和透射电子显微镜(EM)研究了胰岛素与人IAPP(hIAPP)、大鼠IAPP(rIAPP)及其他肽段的分子相互作用。hIAPP和rIAPP与胰岛素形成复合物,且该反应呈浓度依赖性。rIAPP和胰岛素而非胰岛素原与hIAPP结合。为防止二聚化而截短B链的胰岛素也能与hIAPP结合。在有胰岛素存在的情况下,hIAPP不会自发形成β-折叠二级结构或纤维。免疫电镜显示,胰岛素以规则的重复模式与预先形成的IAPP纤维相互作用,提示胰岛素的结合位点在hIAPP纤维中仍暴露在外。由于rIAPP和hIAPP可与胰岛素(以及彼此)形成复合物,这或许可以解释表达hIAPP的转基因小鼠中缺乏淀粉样纤维的现象。很可能在分泌颗粒中(hIAPP浓度处于毫摩尔范围),通过与胰岛素形成异分子复合物抑制了IAPP的纤维形成。颗粒中胰岛素和IAPP比例的改变可能会破坏肽的稳定性。2型糖尿病中未加工胰岛素原比例的增加可能是hIAPP不稳定和诱导纤维形成的主要因素。