Islet amyloid polypeptide inserts into phospholipid monolayers as monomer

被引:148
作者
Engel, MFM
Yigittop, H
Elgersma, RC
Rijkers, DTS
Liskamp, RMJ
de Kruijff, B
Höppener, JWM
Killian, JA
机构
[1] Univ Utrecht, Ctr Med, Div Biomed Genet, Dept Metab & Endocrine Dis, NL-3508 AB Utrecht, Netherlands
[2] Univ Utrecht, Biomembrane Inst, Dept Biochem Membranes, Ctr Biomembranes & Lipid Enzymol, NL-3584 CH Utrecht, Netherlands
[3] Univ Utrecht, Utrecht Inst Pharmaceut Sci, Dept Med Chem, NL-3584 CA Utrecht, Netherlands
关键词
amylin; monolayer technique; protein-membrane interactions; amyloid; type; 2; diabetes;
D O I
10.1016/j.jmb.2005.12.020
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Amyloid deposits in the pancreatic islets of Langerhans are thought to be a main factor responsible for death of the insulin-producing islet beta-cells in type 2 diabetes. It is hypothesized that beta-cell death is related to interaction of the 37 amino acid residue human islet amyloid polypeptide (hIAPP), the major constituent of islet amyloid, with cellular membranes. However, the mechanism of hIAPP-membrane interactions is largely unknown. Here, we study the nature and the molecular details of the initial step of HIAPP-membrane interactions by using the monolayer technique. It is shown that both freshly dissolved hIAPP and the non-amyloidogenic mouse IAPP (mIAPP) have a pronounced ability to insert into phospholipid monolayers, even at lipid packing conditions that exceed the conditions that occur in biological membranes. In contrast, the fibrillar form of hIAPP has lost the ability to insert. These results, combined with the observations that both the insertion kinetics and the dependence of insertion on the initial surface pressure are similar for freshly dissolved hIAPP and mIAPP, indicate that hIAPP inserts into phospholipid monolayers most likely as a monomer. In addition, our results suggest that the N-terminal part of WARP, which is nearly identical with that of mIAPP, is largely responsible for insertion. This is supported by experiments with hIAPP fragments, which show that a peptide consisting of the 1.9 N-terminal residues of hIAPP efficiently inserts into phospholipid monolayers, whereas an amyloidogenic decapeptide, consisting of residues 20-29 of MAPP, inserts much less efficiently. The results obtained here suggest that hIAPP monomers might insert with high efficiency in biological membranes in vivo. This process could play an important role as a first step in hIAPP-induced membrane damage in type 2 diabetes. (c) 2005 Elsevier Ltd. All rights reserved.
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收藏
页码:783 / 789
页数:7
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