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工程化铁蛋白用于镧系元素结合。

Engineered ferritin for lanthanide binding.

机构信息

Department of Biochemical Sciences "Alessandro Rossi Fanelli", Sapienza University of Rome, Rome Italy.

Molirom srl, Rome, Italy.

出版信息

PLoS One. 2018 Aug 13;13(8):e0201859. doi: 10.1371/journal.pone.0201859. eCollection 2018.

Abstract

Ferritin H-homopolymers have been extensively used as nanocarriers for diverse applications in the targeted delivery of drugs and imaging agents, due to their unique ability to bind the transferrin receptor (CD71), highly overexpressed in most tumor cells. In order to incorporate novel fluorescence imaging properties, we have fused a lanthanide binding tag (LBT) to the C-terminal end of mouse H-chain ferritin, HFt. The HFt-LBT possesses one high affinity Terbium binding site per each of the 24 subunits provided by six coordinating aminoacid side chains and a tryptophan residue in its close proximity and is thus endowed with strong FRET sensitization properties. Accordingly, the characteristic Terbium emission band at 544 nm for the HFt-LBT Tb(III) complex was detectable upon excitation of the tag enclosed at two order of magnitude higher intensity with respect to the wtHFt protein. X-ray data at 2.9 Å and cryo-EM at 7 Å resolution demonstrated that HFt-LBT is correctly assembled as a 24-mer both in crystal and in solution. On the basis of the intrinsic Tb(III) binding properties of the wt protein, 32 additional Tb(III) binding sites, located within the natural iron binding sites of the protein, were identified besides the 24 Tb(III) ions coordinated to the LBTs. HFt-LBT Tb(III) was demonstrated to be actively uptaken by selected tumor cell lines by confocal microscopy and FACS analysis of their FITC derivatives, although direct fluorescence from Terbium emission could not be singled out with conventional, 295-375 nm, fluorescence excitation.

摘要

铁蛋白 H-同聚物由于能够结合转铁蛋白受体(CD71),而被广泛应用于各种药物和成像剂的靶向递送纳米载体,转铁蛋白受体在大多数肿瘤细胞中高度过表达。为了整合新的荧光成像特性,我们已经将镧系元素结合标签(LBT)融合到小鼠 H 链铁蛋白(HFt)的 C 末端。HFt-LBT 每个由六个配位氨基酸侧链和其附近的色氨酸残基提供的 24 个亚基都具有一个高亲和力的铽结合位点,因此具有很强的 FRET 敏化特性。因此,HFt-LBT Tb(III) 配合物在 544nm 处的特征铽发射带可以在标签的激发下检测到,标签的激发强度比 wtHFt 蛋白高两个数量级。2.9Å 的 X 射线数据和 7Å 分辨率的 cryo-EM 表明,HFt-LBT 在晶体和溶液中都正确地组装成 24 聚体。基于 wt 蛋白的固有 Tb(III)结合特性,除了与 LBTs 配位的 24 个 Tb(III)离子外,还在蛋白的天然铁结合位点内鉴定出 32 个额外的 Tb(III)结合位点。通过共聚焦显微镜和 FITC 衍生物的 FACS 分析,证明 HFt-LBT Tb(III) 被选定的肿瘤细胞系主动摄取,尽管不能通过传统的 295-375nm 荧光激发来单独检测铽发射的直接荧光。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b542/6089422/5cd20c258c89/pone.0201859.g001.jpg

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