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人源化古菌铁蛋白作为细胞靶向递送的工具。

Humanized archaeal ferritin as a tool for cell targeted delivery.

机构信息

Center for Life Nano Science@Sapienza, Istituto Italiano di Tecnologia, V.le Regina Elena 291, Rome 00161, Italy.

Molirom srl, via Ravenna 8, 00161, Rome, Italy.

出版信息

Nanoscale. 2017 Jan 5;9(2):647-655. doi: 10.1039/c6nr07129e.

Abstract

Human ferritins have been extensively studied to be used as nanocarriers for diverse applications and could represent a convenient alternative for targeted delivery of anticancer drugs and imaging agents. However, the most relevant limitation to their applications is the need for highly acidic experimental conditions during the initial steps of particle/cargo assembly, a process that could affect both drug stability and the complete reassembly of the ferritin cage. To overcome this issue the unique assembly of Archaeoglobus fulgidus ferritin was genetically engineered by changing a surface exposed loop of 12 amino acids connecting B and C helices to mimic the sequence of the analogous human H-chain ferritin loop. This new chimeric protein was shown to maintain the unique, cation linked, association-dissociation properties of Archaeoglobus fulgidus ferritin occurring at neutral pH values, while exhibiting the typical human H-homopolymer recognition by the transferrin receptor TfR1. The chimeric protein was confirmed to be actively and specifically internalized by HeLa cells, thus representing a unique nanotechnological tool for cell-targeted delivery of possible payloads for diagnostic or therapeutic purposes. Moreover, it was demonstrated that the 12 amino acids' loop is necessary and sufficient for binding to the transferrin receptor. The three-dimensional structure of the humanized Archaeoglobus ferritin has been obtained both as crystals by X-ray diffraction and in solution by cryo-EM.

摘要

人类铁蛋白已经被广泛研究,可作为纳米载体用于多种应用,并且可能成为靶向输送抗癌药物和成像剂的一种便捷替代方法。然而,其应用最相关的限制是在颗粒/货物组装的初始步骤中需要高度酸性的实验条件,这个过程可能会影响药物的稳定性和铁蛋白笼的完全重组。为了克服这个问题,通过改变连接 B 和 C 螺旋的 12 个氨基酸的暴露表面环,对古菌铁蛋白的独特组装进行了基因工程改造,以模拟类似的人 H 链铁蛋白环的序列。这种新的嵌合蛋白被证明在中性 pH 值下保持古菌铁蛋白独特的、阳离子连接的、缔合-解离特性,同时表现出典型的人 H 同聚物与转铁蛋白受体 TfR1 的识别。嵌合蛋白被证实可以被 HeLa 细胞主动且特异性地内化,因此代表了一种独特的纳米技术工具,可用于细胞靶向递送来诊断或治疗目的的可能有效载荷。此外,已经证明 12 个氨基酸环对于与转铁蛋白受体的结合是必要和充分的。通过 X 射线衍射获得了人源化古菌铁蛋白的三维结构晶体,并且通过 cryo-EM 在溶液中获得了三维结构。

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