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介孔二氧化硅中植物醇修饰的血红素:作为血红蛋白模型的共轭物。

Phytol-modified heme in mesoporous silica: conjugates as models of hemoproteins.

作者信息

Itoh Tetsuji, Yano Kazuhisa, Kajino Tsutomu, Inada Yuji, Fukushima Yoshiaki

机构信息

Toyota Central R&D Labs., Inc., Yokomichi, Nagakute, Aichi, Japan.

出版信息

Biotechnol Bioeng. 2006 Feb 20;93(3):476-84. doi: 10.1002/bit.20734.

Abstract

A ferriprotoporphyrin, hemin (Fe(3+)), modified with 3,7,11,15-tetramethyl-2-hexadecen-1-ol, phytol, was adsorbed in nano-spaces of about 4 nm in diameter in mesoporous silica (FSM; folded-sheet mesoporous material) forming a phytol-modified hemin (Fe(3+))-FSM nano-conjugate. The properties and the structure of the conjugate were studied by UV-visible light absorption, IR absorption spectroscopy, and a nitrogen adsorption isotherm. Although the hemin without phytol could not be adsorbed to the mesoporous silica, modification with phytol imparted preferential adsorption properties. The conjugate was not only stable but also had a peroxidase-like activity in a 0.1% hydrogen peroxide solution, while free hemin in the solution was easily destroyed. The hemin (Fe(3+)) in the FSM was reduced to heme (Fe(2+)) by hydrazine. The phytol-modified heme (Fe(2+))-FSM conjugate formed an O(2)-heme complex with a superoxide type structure, resembling oxyhemoglobin or oxymyoglobin, which has not been previously observed for free heme in solution. The addition of carbon monoxide or nitrogen monoxide to the phytol-modified heme (Fe(2+))-FSM conjugate caused the formation of CO- or NO-heme complex in the nano-spaces of the FSM. These properties are attributed not only to the Fe-complex but also to the cooperative functions of the heme with mesoporous silica, resembling properties of a natural heme-protein conjugate; hemoglobin or peroxidase. These results are an elegant example of biomimetic nano-technology.

摘要

一种铁原卟啉,即血红素(Fe(3+)),用3,7,11,15-四甲基-2-十六碳烯-1-醇(叶绿醇)进行修饰后,被吸附在介孔二氧化硅(FSM;折叠片层介孔材料)中直径约4纳米的纳米空间内,形成了叶绿醇修饰的血红素(Fe(3+))-FSM纳米共轭物。通过紫外-可见光吸收、红外吸收光谱和氮吸附等温线研究了该共轭物的性质和结构。虽然未修饰叶绿醇的血红素不能被吸附到介孔二氧化硅上,但叶绿醇修饰赋予了其优先吸附特性。该共轭物不仅稳定,而且在0.1%的过氧化氢溶液中具有类过氧化物酶活性,而溶液中的游离血红素很容易被破坏。FSM中的血红素(Fe(3+))被肼还原为血红素(Fe(2+))。叶绿醇修饰的血红素(Fe(2+))-FSM共轭物形成了具有超氧化物类型结构的O(2)-血红素复合物,类似于氧合血红蛋白或氧合肌红蛋白,而这在溶液中的游离血红素中从未被观察到。向叶绿醇修饰的血红素(Fe(2+))-FSM共轭物中添加一氧化碳或一氧化氮会在FSM的纳米空间内形成CO-或NO-血红素复合物。这些性质不仅归因于铁络合物,还归因于血红素与介孔二氧化硅的协同作用,类似于天然血红素-蛋白质共轭物(血红蛋白或过氧化物酶)的性质。这些结果是仿生纳米技术的一个出色例子。

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