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Nanoscale inhibition of polymorphic and ambidextrous lAPP amyloid aggregation with small molecules 被引量:5
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作者 Aleksandr Kakinen Jozef Adamcik +5 位作者 Bo Wang Xinwei Ge Raffaele Mezzenga thomas p. davis Feng Ding pu Chun Ke 《Nano Research》 SCIE EI CAS CSCD 2018年第7期3636-3647,共12页
Understanding how small molecules interface with amyloid fibrils at the nanoscale is of importance for developing therapeutic treatments against amyloid-based diseases. Here, we show for the first time that human isle... Understanding how small molecules interface with amyloid fibrils at the nanoscale is of importance for developing therapeutic treatments against amyloid-based diseases. Here, we show for the first time that human islet amyloid polypeptides (LAPP) in the fibrillar form are polymorphic, ambidextrous, and possess multiple periodicities. Upon interfacing with the small molecule epigallocatechin gallate (EGCG), IAPP aggregation was rendered off-pathway and assumed a form with soft and disordered clusters, while mature IAPP fibrils displayed kinks and branching but conserved the twisted fibril morphology. These nanoscale phenomena resulted from competitive interactions between EGCG and the IAPP amyloidogenic region, as well as end capping of the fibrils by the small molecule. This information is crucial in delineating IAPP toxicity implicated in type 2 diabetes and for developing new inhibitors against amyloidogenesis. 展开更多
关键词 islet amyloid polypeptides(LAPP) fibriUization persistence length small molecule discrete moleculardynamics (DMD)simulations INHIBITION
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