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抗钙素®蛋白:从实验室到临床

Anticalin® proteins: from bench to bedside.

作者信息

Deuschle Friedrich-Christian, Ilyukhina Elena, Skerra Arne

机构信息

Chair of Biological Chemistry, School of Life Sciences, Technical University of Munich, Freising, Germany.

出版信息

Expert Opin Biol Ther. 2021 Apr;21(4):509-518. doi: 10.1080/14712598.2021.1839046. Epub 2020 Nov 1.

Abstract

INTRODUCTION

Anticalin proteins are engineered versions of lipocalins that constitute a novel class of clinical-stage biopharmaceuticals. The lipocalins exhibit a central β-barrel with eight antiparallel β-strands and an α-helix attached to its side. Four structurally variable loops at the open end of the β-barrel form a pronounced binding pocket, which can be reshaped to generate specificities toward diverse disease-relevant molecular targets.

AREAS COVERED

This article reviews the current status of Anticalin engineering, from the basic principles to the development of Anticalins with high target affinity and specificity via combinatorial protein design and directed evolution, including examples of Anticalin-based drug candidates under preclinical and clinical development.

EXPERT OPINION

Combinatorial gene libraries together with powerful molecular selection techniques have enabled the expansion of the natural ligand specificities of lipocalins from small molecules to peptides and proteins. This biomolecular concept has been validated by structural analyses of a series of Anticalin•target complexes. Promising Anticalin lead candidates have reached different preclinical and clinical development stages in the areas of (immuno)oncology, metabolic, and respiratory diseases, as antidotes to treat intoxications and as novel antibiotics. Thus, Anticalins offer an alternative to antibodies with promising and potentially superior features as next-generation biologics.

摘要

引言

抗钙素蛋白是脂钙素的工程化版本,构成了一类新型的临床阶段生物制药。脂钙素呈现出一个由八条反平行β链组成的中心β桶以及一条连接在其侧面的α螺旋。β桶开口端的四个结构可变环形成了一个明显的结合口袋,可对其进行重塑以产生针对多种与疾病相关分子靶点的特异性。

涵盖领域

本文综述了抗钙素工程的现状,从基本原理到通过组合蛋白设计和定向进化开发具有高靶点亲和力和特异性的抗钙素,包括处于临床前和临床开发阶段的基于抗钙素的候选药物实例。

专家观点

组合基因文库与强大的分子筛选技术使脂钙素的天然配体特异性从小分子扩展到肽和蛋白质。这一生物分子概念已通过一系列抗钙素•靶点复合物的结构分析得到验证。有前景的抗钙素先导候选物已在(免疫)肿瘤学、代谢和呼吸系统疾病领域进入不同的临床前和临床开发阶段,作为治疗中毒的解毒剂和新型抗生素。因此,抗钙素作为下一代生物制品,为抗体提供了一种具有前景且可能更优越特性的替代方案。

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