Chloride binding proteins: mechanistic implications for the oxygen-evolving complex of Photosystem II

Author:

Coleman William J.

Publisher

Springer Science and Business Media LLC

Subject

Cell Biology,Plant Science,Biochemistry,General Medicine

Reference250 articles.

1. Aasa R, Hansson � and V�nng�rd T (1987) EPR studies at 9 and 34 GHz of the multiline and g=4.1 S2 signals. In: Biggins J., ed. Progress in Photosynthesis Research, Vol. 1, pp 577?580. Dordrecht: Martinus Nijhoff

2. Adachi H, Asakura T and Adachi K (1983) Effect of chloride ion on the oxygen affinity of hemoglobin York (?2?146Pro) and S-York hybrid hemoglobin (?2?s?York) (19?2). Role of the ?82 lysyl and ?146 histidyl residues in chloride binding to hemoglobin. J Biol Chem 258: 13422?13424

3. �kerkund H-E and Jansson C (1981) Localization of a 34,000 and 23,000 M r polypeptide to the lumenal side of the thylakoid membrane. FEBS Lett 124: 229?232

4. �kerlund HE, Jansson C and Andersson B (1982) Reconstitution of photosynthetic water splitting in inside-out thylakoid vesicles and identification of a participating polypeptide. Biochim Biophys Acta 681: 1?10

5. Allison RD and Purich DL (1983) Practical considerations in the design of initial velocity enzyme rate assays. In: Purich DL (ed.) Contemporary Enzyme Kinetics and Mechanism, pp 33?52. New York: Academic Press

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