Search for dissertations about: "plant phosphorylation"
Showing result 1 - 5 of 34 swedish dissertations containing the words plant phosphorylation.
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1. Plant aquaporins
Abstract : Aquaporins are integral membrane proteins that specifically transports water. In plants, aquaporins have been identified in the plasma membrane and in the vacuolar membrane. READ MORE
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2. The Plant Plasma Memrbane H+-ATPase: regulation by phosphorylation and 14-3-3 proteins
Abstract : The plant plasma membrane H+-ATPase is a predominant membrane enzyme that provides the energy for secondary active transport across the plasma membrane. Consequently, the H+-ATPase is thought to play a major role in many cell processes, and it is implicated to be regulated by a number of factors, including hormones, blue light, and fungal toxins The plant plasma membrane H+-ATPase is regulated via an autoinhibitory domain located within the C-terminal region of the enzyme. READ MORE
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3. Protein phosphorylation in plant mitochondria
Abstract : Protein phosphorylation in the subcompartments of plant mitochondria was investigated by labelling with [gamma-32P]ATP and by SDS-PAGE/autoradiography. About 20 proteins in inside-out inner mitochondrial membranes from potato tubers were phosphorylated by endogenous protein kinases when incubated with [gamma-32P]ATP. READ MORE
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4. Plant Aquaporins: A study of expression, localization, specificity, and regulation
Abstract : Aquaporins, or Major Intrinsic Proteins (MIPs), are integral proteins that facilitate transport of water and other small neutral solutes across biological membranes. They belong to a well conserved and ancient family of proteins, present in all organisms ranging from bacteria to plants and humans. READ MORE
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5. The Plasma Membrane H+-ATPase - Identification of a 14-3-3 binding motif
Abstract : The P-type plasma membrane H+-ATPases form a group of proteins only found in plants and fungi. The pumping of protons across the plasma membrane, energized by ATP hydrolysis, creates an electrochemical gradient that is essential for solute transport and internal pH regulation. READ MORE