Abstract

Highly purified 3'-arylazido-ATP (aATP) was obtained by high performance liquid chromatography. In the dark, this photoactivatable ATP analog was a competitive inhibitor of ATP hydrolysis catalyzed by purified sarcoplasmic reticulum (SR) ATPase with a Ki of 10 microM. The analog itself was hydrolyzed by the enzyme in the dark. A biphasic curve of velocity of hydrolysis of the analog versus aATP concentration was obtained, indicating the presence of high and low affinity sites with K0.5 of approximately 10 microM and 300 microM, respectively. Upon irradiation with visible light, a biphasic curve was obtained for the level of covalent photolabeling of the enzyme versus [beta-32P]aATP concentrations. Levels of 6.5-9 nmol of analog/mg of protein and 20-22 nmol of analog/mg of protein were obtained when labeling with 20-30 or with 400 microM aATP, respectively, showing the existence of 1 mol of high affinity sites/mol of ATPase and 1-1.5 mol of low affinity sites/mol of enzyme. The rate of light-dependent incorporation of [beta-32P]aATP was decreased by the presence of ATP, Pi, 2',3'-O-(2,4,6-trinitrocyclohexadienylidene-ATP, or Ca2+ in the illumination media. Photolabeling of the high affinity sites had little effect on the velocity of ATP hydrolysis but significantly inhibited the splitting of additional aATP added in the dark. Photolabeling the low affinity sites caused irreversible inhibition of the ATPase activity. The inhibition was prevented by having ATP in the illumination medium, which protected it from labeling. Gel filtration chromatography in the presence of detergent showed that radioactive photolabel was incorporated in the SR ATPase protein. The results indicate that aATP is a useful tool for stoichiometrically labeling and probing the nucleotide binding domains of the SR ATPase.

Highlights

  • Purified 3”arylazido-ATP (&ATP)was ob- suggested in order to explain the modulation of the turnover tained by high performanceliquid chromatography

  • The rate of light-depend- indicate the existence of 1mol of high affinity sites and1-1.5 ent incorporation of [B-”P]aATPwas decreased by the mol of low affinity nucleotide sites/mol of sarcoplasmicreticpresence of ATP, Pi, 2’,3’-0-(2,4,6-trinitr~yclohex- ulum ATPase

  • On the velocity of ATP hydrolysis but significantly inhibited the splittingof additional aATPadded in the dark

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Summary

MATERIALS AND METHODS

On the velocity of ATP hydrolysis but significantly inhibited the splittingof additional aATPadded in the dark. Alanine (flow rate 3 mllminj, the solvent was changed to 50% (v/v) acetonitrile which resulted in the elution of a sharp, colored peak. This was evaporated in the presence of 5 mM MES, pH 6.0, and rechromatographed as above. The contaminant ATP was usually less than 1%even after 1 week of storage This HPLC purification procedure offers many advantages in comparison to the original thin layer chromatographic technique, being with respect to [Mg-ATP], which has been attributed to an effect of ATP at low affinity reguiatory sites [3,4,5,6].

RESULTS
Photoaffinity Labeling of SR ATPase Nucleotide Sites
Findings
FM nmollmg
Full Text
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