Delta subunit of chloroplast coupling factor 1 inhibits proton leakage through coupling factor O.

Autor(en): Lill, H.
Engelbrecht, S.
Junge, W. 
Stichwörter: adenosine triphosphate, 15237-44-2, 56-65-5, 987-65-5; proton, 12408-02-5, 12586-59-3; proton transporting adenosine triphosphatase; Adenosine Triphosphate, 56-65-5; Macromolecular Substances; Proton-Translocating ATPases, EC 3.6.3.14; Protons; adenosine triphosphate; proton; proton transporting adenosine triphosphatase, article; biosynthesis; chloroplast; electric conductivity; enzymology; kinetics; light; macromolecule; metabolism; plant; spectrophotometry, Adenosine Triphosphate; Chloroplasts; Electric Conductivity; Kinetics; Light; Macromolecular Substances; Plants; Proton-Translocating ATPases; Protons; Spectrophotometry
Erscheinungsdatum: 1988
Journal: The Journal of biological chemistry
Volumen: 263
Ausgabe: 28
Startseite: 14518
Seitenende: 14522
Zusammenfassung: 
The ATP synthase of chloroplasts consists of a proton-conducting portion, CF0, and a catalytic portion, CF1. The smaller subunits of CF1, in particular delta, may play a key role in the coupling of proton transport to ATP synthesis. Purified subunit delta, when added to partially CF1-depleted thylakoid membranes, can restore photophosphorylation (Engelbrecht, S., and Junge, W. (1987) Eur. J. Biochem. 172, 213-218). We report here that it does so by blocking proton conduction through CF0. Thylakoids were CF1-depleted by incubation in hypoosmolar NaCl/EDTA solutions. Variation of the NaCl concentrations and of the incubation times not only changed the overall degree of CF1 depletion but also the subunit composition of solubilized CF1, namely CF1 containing delta and CF1(-delta). This was quantified by immunoelectrophoresis and by fast protein liquid chromatography. Proton conduction was measured by flash spectrophotometry by using standard electrochromic and pH-indicating absorption changes. The removal of integral CF1 was correlated with high electric conductance of thylakoid membranes, an increased extent of rapid proton leakage, and loss of ATP synthesis activity, which exceeded the percentual loss of CF1. The removal of predominantly CF1(-delta) resulted in comparatively lesser effects on the loss of ATP synthesis and on the extent and velocity of proton leakage. On the same line, addition of integral CF1 and of purified delta diminished the electric leak in CF1-depleted thylakoids. Both approaches, the controlled removal of CF1 and CF1(-delta), respectively, and addition of delta and CF1 showed that delta can act as a "stopcock" to the exposed proton channel CF0.
ISSN: 00219258
Externe URL: https://www.scopus.com/inward/record.uri?eid=2-s2.0-0024279301&partnerID=40&md5=ca2e6a7294981be7e20ecd5555d5c2c1

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