Islet amyloidosis by IAPP contributes to pancreatic β-cell death in diabetes, but the nature of toxic IAPP species remains elusive. Using concurrent time-resolved biophysical and biological measurements, we define the toxic species produced during IAPP amyloid formation and link their properties to induction of rat INS-1 β-cell and murine islet toxicity. These globally flexible, low order oligomers upregulate pro-inflammatory markers and induce reactive oxygen species. They do not bind 1-anilnonaphthalene-8-sulphonic acid and lack extensive β-sheet structure. Aromatic interactions modulate, but are not required for toxicity. Not all IAPP oligomers are toxic; toxicity depends on their partially structured conformational states. Some anti-amyloid agents paradoxically prolong cytotoxicity by prolonging the lifetime of the toxic species. The data highlight the distinguishing properties of toxic IAPP oligomers and the common features that they share with toxic species reported for other amyloidogenic polypeptides, providing information for rational drug design to treat IAPP induced β-cell death.
Time-resolved studies define the nature of toxic IAPP intermediates, providing insight for anti-amyloidosis therapeutics.
时间分辨研究确定了有毒的 IAPP 中间体的性质,为抗淀粉样变性疗法提供了见解
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作者:Abedini Andisheh, Plesner Annette, Cao Ping, Ridgway Zachary, Zhang Jinghua, Tu Ling-Hsien, Middleton Chris T, Chao Brian, Sartori Daniel J, Meng Fanling, Wang Hui, Wong Amy G, Zanni Martin T, Verchere C Bruce, Raleigh Daniel P, Schmidt Ann Marie
| 期刊: | Elife | 影响因子: | 6.400 |
| 时间: | 2016 | 起止号: | 2016 May 23; 5:e12977 |
| doi: | 10.7554/eLife.12977 | 研究方向: | 其它 |
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