Department of Experimental Medical Science, Lund University, Lund, Sweden.
Contrast Media Mol Imaging. 2013 May-Jun;8(3):252-64. doi: 10.1002/cmmi.1518.
We have engineered apolipoprotein A-I (apoA-I), a major protein constituent of high-density lipoprotein (HDL), to contain DOTA-chelated Gd(III) as an MRI contrast agent for the purpose of imaging reconstituted HDL (rHDL) biodistribution, metabolism and regulation in vivo. This protein contrast agent was obtained by attaching the thiol-reactive Gd[MTS-ADO3A] label at Cys residues replaced at four distinct positions (52, 55, 76 and 80) in apoA-I. MRI of infused mice previously showed that the Gd-labeled apoA-I migrates to both the liver and the kidney, the organs responsible for HDL catabolism; however, the contrast properties of apoA-I are superior when the ADO3A moiety is located at position 55, compared with the protein labeled at positions 52, 76 or 80. It is shown here that continuous wave X-band (9 GHz) electron paramagnetic resonance (EPR) spectroscopy is capable of detecting differences in the Gd(III) signal when comparing the labeled protein in the lipid-free with the rHDL state. Furthermore, the values of NMR relaxivity obtained for labeled variants in both the lipid-free and rHDL states correlate to the product of the X-band Gd(III) spectral width and the collision frequency between a nitroxide spin label and a polar relaxation agent. Consistent with its superior relaxivity measured by NMR, the rHDL-associated apoA-I containing the Gd[MTS-ADO3A] probe attached to position 55 displays favorable dynamic and water accessibility properties as determined by X-band EPR. While room temperature EPR requires >1 m m Gd(III)-labeled and only >10 µ m nitroxide-labeled protein to resolve the spectrum, the volume requirement is exceptionally low (~5 µl). Thus, X-band EPR provides a practical assessment for the suitability of imaging candidates containing the site-directed ADO3A contrast probe.
我们设计了载脂蛋白 A-I(apoA-I),它是高密度脂蛋白(HDL)的主要蛋白成分,使其包含 DOTA 螯合的 Gd(III)作为 MRI 对比剂,用于成像重组 HDL(rHDL)的体内分布、代谢和调节。该蛋白对比剂是通过将硫醇反应性 Gd[MTS-ADO3A]标记物连接到 apoA-I 的四个不同位置(52、55、76 和 80)的 Cys 残基上来获得的。先前对输注小鼠进行的 MRI 研究表明,标记 Gd 的 apoA-I 迁移到肝脏和肾脏,这是负责 HDL 代谢的器官;然而,当 ADO3A 部分位于位置 55 时,apoA-I 的对比特性优于标记在位置 52、76 或 80 的蛋白。本文显示,连续波 X 波段(9 GHz)电子顺磁共振(EPR)光谱能够在比较脂质体游离状态和 rHDL 状态下的标记蛋白时检测到 Gd(III)信号的差异。此外,在脂质体游离和 rHDL 状态下标记变体的 NMR 弛豫率值与 X 波段 Gd(III)光谱宽度与氮氧自由基自旋标记物和极性弛豫剂之间的碰撞频率的乘积相关。与通过 NMR 测量的优越弛豫率一致,在位置 55 处连接 Gd[MTS-ADO3A]探针的 rHDL 相关 apoA-I 显示出有利的动态和水可及性特性,这是通过 X 波段 EPR 确定的。虽然室温 EPR 需要>1 m m Gd(III)标记的和仅>10 µm 氮氧自由基标记的蛋白来解析谱,但体积需求非常低(约 5 µl)。因此,X 波段 EPR 为含有定向 ADO3A 对比探针的成像候选物的适用性提供了实用评估。