Tran C M, Scheiner-Bobis G, Schoner W, Farley R A
Department of Physiology and Biophysics, University of Southern California School of Medicine, Los Angeles 90033.
Biochemistry. 1994 Apr 12;33(14):4140-7. doi: 10.1021/bi00180a006.
[alpha-32P]-8-N3-ATP, [2-3H]-8-N3-ATP, and non-radioactive 8-N3-ATP have been used as photoaffinity probes of the ATP binding site of dog kidney Na+/K(+)-ATPase. 8-N3-ATP has previously been shown to bind to Na+/K(+)-ATPase with high affinity, to be a substrate for Na+/K(+)-ATPase, and to inactivate the enzyme upon ultraviolet irradiation [Scheiner-Bobis, G., & Schoner, W. (1985) Eur. J. Biochem. 152, 739-746]. 8-N3-ATP competitively inhibits the high-affinity binding of [2,8-3H]-ATP to Na+/K(+)-ATPase with a Ki of 3.4 microM, which is comparable to the reported KD of 3.1 microM for the binding of 8-N3-ATP to the enzyme. The extent of inhibition of ATP hydrolysis by 8-N3-ATP was linearly correlated with the stoichiometry of covalent incorporation of 8-N3-ATP into Na+/K(+)-ATPase up to about 50% inhibition of activity; however, the linkage between the protein and 8-N3-ATP was unstable, and the maximum incorporation of 8-N3-ATP was less than the nucleotide binding capacity of the protein. After photolysis with ultraviolet light, 8-N3-ATP was specifically incorporated into the carboxy-terminal 58-kDa fragment of the alpha-subunit of Na+/K(+)-ATPase generated by limited trypsin digestion in the presence of KCl, and the beta-subunit was not labeled. 8-N3-ATP-labeled Na+/K(+)-ATPase was digested with trypsin, and a single peak containing the nucleotide was identified after HPLC fractionation of the digest.(ABSTRACT TRUNCATED AT 250 WORDS)
[α-32P]-8-N3-ATP、[2-3H]-8-N3-ATP和非放射性的8-N3-ATP已被用作犬肾Na+/K(+)-ATP酶ATP结合位点的光亲和探针。先前已表明8-N3-ATP能以高亲和力结合到Na+/K(+)-ATP酶上,是Na+/K(+)-ATP酶的一种底物,并在紫外线照射后使该酶失活[谢纳-博比斯,G.,& 舍纳,W.(1985年)《欧洲生物化学杂志》152卷,739 - 746页]。8-N3-ATP以3.4微摩尔的Ki值竞争性抑制[2,8-3H]-ATP与Na+/K(+)-ATP酶的高亲和力结合,这与报道的8-N3-ATP与该酶结合的3.1微摩尔KD值相当。8-N3-ATP对ATP水解的抑制程度与8-N3-ATP共价掺入Na+/K(+)-ATP酶的化学计量呈线性相关,直至活性受到约50%的抑制;然而,蛋白质与8-N3-ATP之间的连接不稳定,8-N3-ATP的最大掺入量小于蛋白质的核苷酸结合能力。用紫外线光解后,8-N3-ATP特异性掺入在KCl存在下经有限胰蛋白酶消化产生的Na+/K(+)-ATP酶α亚基的羧基末端58-kDa片段中,而β亚基未被标记。用胰蛋白酶消化8-N3-ATP标记的Na+/K(+)-ATP酶,在对消化产物进行HPLC分级分离后鉴定出一个含有核苷酸的单峰。(摘要截短于250字)