Lysine-Specific Molecular Tweezers Are Broad-Spectrum Inhibitors of Assembly and Toxicity of Amyloid Proteins

作者:Sinha Sharmistha; Lopes Dahabada H J; Du Zhenming; Pang Eric S; Shanmugam Akila; Lomakin Aleksey; Talbiersky Peter; Tennstaedt Annette; McDaniel Kirsten; Bakshi Reena; Kuo Pei Yi; Ehrmann Michael; Benedek George B; Loo Joseph A; Klaerner Frank Gerrit; Schrader Thomas; Wang Chunyu; Bitan Gal*
来源:Journal of the American Chemical Society, 2011, 133(42): 16958-16969.
DOI:10.1021/ja206279b

摘要

Amyloidoses are diseases characterized by abnormal protein folding and self-assembly, for which no cure is available. Inhibition or modulation of abnormal protein self-assembly, therefore, is an attractive strategy for prevention and treatment of amyloidoses. We examined Lys-specific molecular tweezers and discovered a lead compound termed CLR01, which is capable of inhibiting the aggregation and toxicity of multiple amyloidogenic proteins by binding to Lys residues and disrupting hydrophobic and electrostatic interactions important for nucleation, oligomerization, and fibril elongation. Importantly, CLR01 shows no toxicity at concentrations substantially higher than those needed for inhibition. We used amyloid beta-protein (A beta) to further explore the binding site(s) of CLAW and the impact of its binding on the assembly process. Mass spectrometry and solution-state NMR demonstrated binding of CLR01 to the Lys residues in A beta at the earliest stages of assembly. The resulting complexes were indistinguishable in size and morphology from A beta oligomers but were nontoxic and were not recognized by the oligomer-specific antibody A11. Thus, CLR01 binds already at the monomer stage and modulates the assembly reaction into formation of nontoxic structures. The data suggest that molecular tweezers are unique, process-specific inhibitors of aberrant protein aggregation and toxicity, which hold promise for developing disease-modifying therapy for amyloidoses.

  • 出版日期2011-10-26