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特异性肽抗体交叉识别揭示脑己糖激酶与线粒体孔蛋白的同嗜性锚定

Homophilic anchorage of brain-hexokinase to mitochondria-porins revealed by specific-peptide antibody cross recognition.

作者信息

Oudard Stéphane, Miccoli Laurent, Beurdeley-Thomas Arnaud, Dutrillaux Bernard, Poupon Marìe-France

机构信息

CNRS UMR 147, Institut Curie, 75248 Paris Cedex 05, France.

出版信息

Bull Cancer. 2004 Jun;91(6):E184-200.

Abstract

In brain tumors the main source of energy is from glycolysis, which is initiated by hexokinase 1 (HK1), an enzyme bound to the mitochondrial porin. Disruption of HK binding greatly affects tumor cell survival. Little is known about the acceptor site of HK1. Therefore, a polyclonal antibody (Pab) directed to MIAAQLLAYYFTELK (MK) peptide, corresponding to the 15-amino acids of the N-terminal sequence of brain HK1 was obtained. Anti MK antibody (aMK-Pab)bound specifically to HK as shown by ELISA. The aMK-Pab binding to MK peptide was antibody-concentration dependent and was completely abolished by its preincubation with the peptide at 6 x 10-8 M. The aMK-Pab recognized cytosolic HK (cHK) and HK solubilized (sHK)from rat-brain mitochondrial preparations, but not the yeast HK which does not have the MK sequence. An anti-brain HK Pab (aHK-Pab) directed to purified HK recognized the MK peptide; aHK-Pab bound to MK and this binding was inhibited by preincubation of the antibody with the MK peptide. It was previously demonstrated that brain HK anchors to mitochondria porins, also designated as voltage dependent-anion channels (VDAC) via the MK sequence. A specific anti-VDAC antibody (aVDAC-Pab) which specifically bound the N and C-terminal sequences of VDACwas found to bind to c-HK, sHK and MK-coated wells and this binding was abolished by aVDACPabpreincubation with MK peptide. These data suggest that the three Pabs cross-react with an epitope present in HK and VDAC, and which was presented in the MK peptide. Comparison of alignment of HK or VDAC sequences, available in the protein data bank (PDB), did not allow putative homologues responsible for the cross-reaction to be identified, suggesting that the epitope is conformational. This, added to inhibition of mitochondria-isolated HK binding by the MK peptide,suggests that there is an homophilic-type interaction between HK and porin, through a peptidic structure represented at least in part in the MK peptide.

摘要

在脑肿瘤中,能量的主要来源是糖酵解,它由己糖激酶1(HK1)启动,HK1是一种与线粒体孔蛋白结合的酶。HK结合的破坏极大地影响肿瘤细胞的存活。关于HK1的受体位点知之甚少。因此,获得了一种针对MIAAQLLAYYFTELK(MK)肽的多克隆抗体(Pab),该肽对应于脑HK1 N端序列的15个氨基酸。如ELISA所示,抗MK抗体(aMK-Pab)特异性结合HK。aMK-Pab与MK肽的结合呈抗体浓度依赖性,并在与6×10-8 M的肽预孵育后完全消除。aMK-Pab识别大鼠脑线粒体制剂中的胞质HK(cHK)和溶解的HK(sHK),但不识别没有MK序列的酵母HK。一种针对纯化HK的抗脑HK Pab(aHK-Pab)识别MK肽;aHK-Pab与MK结合,并且该结合通过抗体与MK肽的预孵育而被抑制。先前已证明脑HK通过MK序列锚定到线粒体孔蛋白,也称为电压依赖性阴离子通道(VDAC)。发现一种特异性结合VDAC N端和C端序列的特异性抗VDAC抗体(aVDAC-Pab)与c-HK、sHK和MK包被的孔结合,并且该结合通过aVDAC-Pab与MK肽的预孵育而被消除。这些数据表明这三种Pab与HK和VDAC中存在的一个表位发生交叉反应,并且该表位存在于MK肽中。蛋白质数据库(PDB)中HK或VDAC序列比对的比较无法鉴定负责交叉反应的推定同源物,表明该表位是构象性的。这与MK肽对线粒体分离的HK结合的抑制作用相结合,表明HK和孔蛋白之间存在一种同型相互作用,通过至少部分存在于MK肽中的肽结构实现。

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