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用2-叠氮基[α-32P]二磷酸腺苷光标记法对牛心线粒体ADP/ATP载体中核苷酸结合位点进行定位。

Mapping of the nucleotide-binding sites in the ADP/ATP carrier of beef heart mitochondria by photolabeling with 2-azido[alpha-32P]adenosine diphosphate.

作者信息

Dalbon P, Brandolin G, Boulay F, Hoppe J, Vignais P V

机构信息

Département de Recherche Fondamentale, Centre d'Etudes Nucléaires, Grenoble, France.

出版信息

Biochemistry. 1988 Jul 12;27(14):5141-9. doi: 10.1021/bi00414a029.

Abstract

2-Azido[alpha-32P]adenosine diphosphate (2-azido[alpha-32P]ADP) has been used to photolabel the ADP/ATP carrier in beef heart mitochondria. In reversible binding assays carried out in the dark, this photoprobe was found to inhibit ADP/ATP transport in beef heart mitochondria and to bind to two types of specific sites of the ADP/ATP carrier characterized by high-affinity binding (Kd = 20 microM) and low-affinity binding (Kd = 400 microM). In contrast, it was unable to bind to specific carrier sites in inverted submitochondrial particles. Upon photoirradiation of beef heart mitochondria in the presence of 2-azido[alpha-32P]ADP, the ADP/ATP carrier was covalently labeled. After purification, the photolabeled carrier protein was cleaved chemically by acidolysis or cyanogen bromide and enzymatically with the Staphylococcus aureus V8 protease. In the ADP/ATP carrier protein, which is 297 amino acid residues in length, two discrete regions extending from Phe-153 to Met-200 and from Tyr-250 to Met-281 were labeled by 2-azido[alpha-32P]ADP. The peptide fragments corresponding to these regions were sequenced, and the labeled amino acids were identified. As 2-azido-ADP is not transported into mitochondria and competes against transport of externally added ADP, it is concluded that the two regions of the carrier which are photolabeled are facing the cytosol. Whether the two photolabeled regions are located in a single peptide chain of the carrier or in different peptide chains of an oligomeric structure is discussed.

摘要

2-叠氮基[α-³²P]二磷酸腺苷(2-叠氮基[α-³²P]ADP)已被用于对牛心线粒体中的ADP/ATP载体进行光标记。在黑暗中进行的可逆结合测定中,发现这种光探针可抑制牛心线粒体中的ADP/ATP转运,并与ADP/ATP载体的两种特定类型的位点结合,其特征分别为高亲和力结合(Kd = 20 μM)和低亲和力结合(Kd = 400 μM)。相比之下,它无法与反向亚线粒体颗粒中的特定载体位点结合。在2-叠氮基[α-³²P]ADP存在下对牛心线粒体进行光照射后,ADP/ATP载体被共价标记。纯化后,通过酸解或溴化氰进行化学切割,并使用金黄色葡萄球菌V8蛋白酶进行酶切,从而得到光标记的载体蛋白。在长度为297个氨基酸残基的ADP/ATP载体蛋白中,从Phe-153至Met-200以及从Tyr-250至Met-281延伸的两个离散区域被2-叠氮基[α-³²P]ADP标记。对与这些区域相对应的肽片段进行测序,并鉴定出标记的氨基酸。由于2-叠氮基-ADP不被转运到线粒体中且能与外部添加的ADP的转运竞争,因此得出结论,载体中被光标记的两个区域面向细胞质溶胶。文中还讨论了这两个光标记区域是位于载体的单条肽链中还是位于寡聚结构的不同肽链中。

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