化学
胰淀素
功能(生物学)
程序性细胞死亡
细胞
生物物理学
内科学
生物化学
细胞生物学
糖尿病
内分泌学
细胞凋亡
医学
小岛
生物
作者
Md Asrafuddoza Hazari,Gautam Kannan,Subrata Dasgupta,Musale Krushna Pavan,Akash Kumar Jha,Farhin Sultana,Soumya Ranjan Pujahari,Simran Singh,Sarbajeet Dutta,Sai P. Pydi,Sankhadeep Dutta,Hamim Zafar,Prasenjit Bhaumik,Ashutosh Kumar,Shamik Sen
摘要
Amyloid deposition of the neuroendocrine peptide amylin in islet tissues is a hallmark of type 2 diabetes (T2DM), leading to β-cell toxicity through nutrient deprivation, membrane rupture, and apoptosis. Though accumulation of toxic amylin aggregates in islet matrices is well documented, the role of the islet extracellular matrix in mediating amylin aggregation and its pathological consequences remains elusive. Here, we address this question by probing amylin interaction with collagen I (Col)─whose expression in the islet tissue increases during diabetes progression. By combining multiple biophysical techniques, we show that hydrophobic, hydrophilic, and cation-π interactions regulate amylin binding to Col, with fibrillar Col driving faster amylin aggregation. Amylin-entangled Col matrices containing high amounts of amylin induce death and loss of function in INS1E β-cells. Together, our results illustrate how amylin incorporation in islet matrices through amylin-Col interactions drives T2DM progression by impacting β-cell viability and insulin secretion.
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