Zobrazeno 1 - 10
of 190
pro vyhledávání: '"Michael G. Palmgren"'
Autor:
Sarah evan Veen, Danny Mollerup Sorensen, Tine eHolemans, Henrik Waldal Holen, Michael G. Palmgren, Peter eVangheluwe
Publikováno v:
Frontiers in Molecular Neuroscience, Vol 7 (2014)
Mutations in ATP13A2 lead to Kufor-Rakeb syndrome, a parkinsonism with dementia. ATP13A2 belongs to the P-type transport ATPases, a large family of primary active transporters that exert vital cellular functions. However, the cellular function and tr
Externí odkaz:
https://doaj.org/article/51219466d4f348188e8dabefc29bd6d7
Publikováno v:
Plant Physiol
The lipid bilayer of biological membranes has a complex composition, including high chemical heterogeneity, the presence of nanodomains of specific lipids, and asymmetry with respect to lipid composition between the two membrane leaflets. In membrane
Publikováno v:
Biochemical Journal. 477:3769-3790
P4 ATPase lipid flippases are ATP-driven transporters that translocate specific lipids from the exoplasmic to the cytosolic leaflet of biological membranes, thus establishing a lipid gradient between the two leaflets that is essential for many cellul
Autor:
Anja T. Fuglsang, Khalid Mahmood, Astrid Kristensen, Sergey Shabala, Michael G. Palmgren, Lana Shabala, Sisse K. Gjetting
Publikováno v:
The Plant Journal. 104:433-446
Acidification of the apoplastic space facilitates cell wall loosening and is therefore a key step in cell expansion. PSY1 is a growth-promoting secreted tyrosine-sulfated glycopeptide whose receptor directly phosphorylates and activates the plasma me
Autor:
Michael G. Palmgren, Dirk Becker, Sönke Scherzer, Antonella Reyer, Khaled A. S. Al-Rascheid, Jesper Torbøl Pedersen, Georg Nagel, Melanie Häßler, Shouguang Huang, Ingo Dreyer, Rainer Hedrich, Ernst Bamberg
Publikováno v:
Proc Natl Acad Sci U S A
In plants, environmental stressors trigger plasma membrane depolarizations. Being electrically interconnected via plasmodesmata, proper functional dissection of electrical signaling by electrophysiology is basically impossible. The green alga Chlamyd
Autor:
Sven-Erik Jacobsen, Davide Visintainer, Toni Wendt, Michael G. Palmgren, Max Moog, Caixia Gao, Christoph Dockter, Rosa L. López-Marqués, Morten Egevang Jørgensen, Jeppe Thulin Østerberg, Sergey Shabala, Andrés Torres Salvador, Rainer Hedrich, Anton F. Nørrevang, Peter Ache
Publikováno v:
Journal of Experimental Botany
Climate change is challenging food production worldwide. We propose a strategy to accelerate the improvement of a nutritious resilient crop to meet the future food production demands in a changing climate.
Crops tolerant to drought and salt stre
Crops tolerant to drought and salt stre
Publikováno v:
Nature Food. 1:200-205
CRISPR technology, which is widely used for plant genome editing, will accelerate the breeding of food crops beyond what was imaginable before its development. Here we provide a brief overview of CRISPR technology, its most important applications for
Autor:
Stephen C McDowell, Rosa L López-Marqués, Taylor eCohen, Elizabeth eBrown, Alexa eRosenberg, Michael G Palmgren, Jeffrey F Harper
Publikováno v:
Frontiers in Plant Science, Vol 6 (2015)
Members of the P4 subfamily of P-type ATPases are thought to create and maintain lipid asymmetry in biological membranes by flipping specific lipids between membrane leaflets. In Arabidopsis, 7 of the 12 Aminophospholipid ATPase (ALA) family members
Externí odkaz:
https://doaj.org/article/4b800b2e325046138d252b73150d6b8f
Proton and calcium pumping P-type ATPases and their regulation of plant responses to the environment
Autor:
Anja T. Fuglsang, Michael G. Palmgren
Publikováno v:
Plant Physiol
Plant plasma membrane H+-ATPases and Ca2+-ATPases maintain low cytoplasmic concentrations of H+ and Ca2+, respectively, and are essential for plant growth and development. These low concentrations allow plasma membrane H+-ATPases to function as elect
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::925be197706b3d8c1f8a96856ea64ee5
https://europepmc.org/articles/PMC8644242/
https://europepmc.org/articles/PMC8644242/
Autor:
Lisbeth R. Poulsen, Jeppe Thulin Østerberg, Sebastian J. Nintemann, Michael G. Palmgren, Rosa L. López-Marqués
Publikováno v:
Biochimica et Biophysica Acta (BBA) - Biomembranes. 1861:1135-1151
In all eukaryotic cells, P4 ATPases, also named phospholipid flippases, generate phospholipid asymmetry across biological membranes. This process is essential for cell survival, as it is required for vesicle budding and fusion in the secretory pathwa