Regulation of PPi Levels Through the Vacuolar Membrane H+-Pyrophosphatase
Author:
Publisher
Springer Berlin Heidelberg
Link
http://link.springer.com/content/pdf/10.1007/978-3-642-38797-5_5
Reference88 articles.
1. Avaeva S, Grigorjeva O, Mitkevich V, Sklyankina V, Varfolomeyev S (1999) Interaction of Escherichia coli inorganic pyrophosphatase active sites. FEBS Lett 464:169–173
2. Baltcheffsky M (1967) Inorganic pyrophosphate as an energy donor in photosynthetic and respiratory electron transport phosphorylation systems. Biochem Biophys Res Commun 28:270–276
3. Baltcheffsky M, Baltcheffsky H (1992) Inorganic pyrophosphate and inorganic pyrophosphatases. In: Ernster L (ed) Molecular mechanisms in bioenergetics. Elsevier, Amsterdam, pp 331–348
4. Barrôco RM, Peres A, Droual AM, De Veylder L, le Nguyen SL, De Wolf J, Mironov V, Peerbolte R, Beemster GT, Inzé D, Broekaert WF, Frankard V (2006) The cyclin-dependent kinase inhibitor Orysa; KRP1 plays an important role in seed development of rice. Plant Physiol 142:1053–1064
5. Beemster GT, Fiorani F, Inzé D (2003) Cell cycle: the key to plant growth control? Trends Plant Sci 8:154–158
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