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冷冻电镜结构解析揭示了人源 LECT2 淀粉样纤维核心内的极性梯状网络结构

Cryo-EM structure of a human LECT2 amyloid fibril reveals a network of polar ladders at its core.

机构信息

Department of Chemistry and Biochemistry, UCLA-DOE Institute for Genomics and Proteomics, STROBE, NSF Science and Technology Center, University of California, Los Angeles (UCLA), Los Angeles, CA 90095, USA.

Department of Chemistry and Biochemistry, UCLA-DOE Institute for Genomics and Proteomics, STROBE, NSF Science and Technology Center, University of California, Los Angeles (UCLA), Los Angeles, CA 90095, USA.

出版信息

Structure. 2023 Nov 2;31(11):1386-1393.e3. doi: 10.1016/j.str.2023.08.007. Epub 2023 Aug 31.

Abstract

ALECT2 systemic amyloidosis is associated with deposition of the leukocyte cell-derived chemotaxin-2 (LECT2) protein in the form of fibrils. In ALECT2 amyloidosis, ALECT2 fibrils deposit in the glomerulus, resulting in renal failure. Patients lack effective treatment options outside of renal transplant or dialysis. The structure of globular LECT2 has been determined but structures of ALECT2 amyloid fibrils remain unknown. Using single-particle cryo-EM, we find that recombinant human LECT2 forms robust twisting fibrils with canonical amyloid features. ALECT2 fibrils contain two mating protofilaments spanning residues 55-75 of the LECT2 sequence. The geometry of the ALECT2 fibril displays features in line with other pathogenic amyloids. Its core is tightly packed and stabilized by both hydrophobic contacts and hydrogen-bonded uncharged polar residues. The robustness of ALECT2 fibril cores is illustrated by their resistance to denaturants and proteases. This ALECT2 fibril structure presents a potential new target for treatments against ALECT2 systemic amyloidosis.

摘要

ALECT2 系统性淀粉样变性与白细胞衍生趋化因子-2 (LECT2) 蛋白以纤维的形式沉积有关。在 ALECT2 淀粉样变性中,ALECT2 纤维沉积在肾小球中,导致肾衰竭。除肾移植或透析外,患者缺乏有效治疗选择。球状 LECT2 的结构已被确定,但 ALECT2 淀粉样纤维的结构仍然未知。使用单颗粒冷冻电镜,我们发现重组人 LECT2 形成具有典型淀粉样特征的强扭纤维。ALECT2 纤维包含两个配对原纤维,跨越 LECT2 序列的 55-75 个残基。ALECT2 纤维的几何形状显示出与其他致病性淀粉样物质一致的特征。其核心通过疏水接触和氢键非带电极性残基紧密包装和稳定。ALECT2 纤维核心的坚固性体现在它们对变性剂和蛋白酶的抗性上。这种 ALECT2 纤维结构为针对 ALECT2 系统性淀粉样变性的治疗提供了一个潜在的新靶点。

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