Matthias Rogner
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Explore the profile of Matthias Rogner including associated specialties, affiliations and a list of published articles.
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76
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1110
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Recent Articles
1.
Li J, Hamaoka N, Makino F, Kawamoto A, Lin Y, Rogner M, et al.
Commun Biol
. 2022 Sep;
5(1):951.
PMID: 36097054
Photosystem I (PSI) is a light driven electron pump transferring electrons from Cytochrome c (Cyt c) to Ferredoxin (Fd). An understanding of this electron transfer process is hampered by a...
2.
Caspy I, Neumann E, Fadeeva M, Liveanu V, Savitsky A, Frank A, et al.
Nat Plants
. 2021 Aug;
7(9):1314-1322.
PMID: 34462576
Photosynthesis in deserts is challenging since it requires fast adaptation to rapid night-to-day changes, that is, from dawn's low light (LL) to extreme high light (HL) intensities during the daytime....
3.
Wang P, Frank A, Zhao F, Szczesny J, Junqueira J, Zacarias S, et al.
Angew Chem Int Ed Engl
. 2020 Oct;
60(4):2000-2006.
PMID: 33075190
Well-defined assemblies of photosynthetic protein complexes are required for an optimal performance of semi-artificial energy conversion devices, capable of providing unidirectional electron flow when light-harvesting proteins are interfaced with electrode...
4.
Nikkanen L, Santana Sanchez A, Ermakova M, Rogner M, Cournac L, Allahverdiyeva Y
Plant J
. 2020 May;
103(4):1460-1476.
PMID: 32394539
In oxygenic photosynthetic organisms, excluding angiosperms, flavodiiron proteins (FDPs) catalyze light-dependent reduction of O to H O. This alleviates electron pressure on the photosynthetic apparatus and protects it from photodamage....
5.
Kannchen D, Zabret J, Oworah-Nkruma R, Dyczmons-Nowaczyk N, Wiegand K, Lobbert P, et al.
Biochim Biophys Acta Bioenerg
. 2020 Apr;
1861(8):148208.
PMID: 32339488
Photosynthetic microorganisms such as the cyanobacterium Synechocystis sp. PCC 6803 (Synechocystis) can be exploited for the light-driven synthesis of valuable compounds. Thermodynamically, it is most beneficial to branch-off photosynthetic electrons...
6.
Zhao F, Ruff A, Rogner M, Schuhmann W, Conzuelo F
J Am Chem Soc
. 2019 Mar;
141(13):5102-5106.
PMID: 30888806
The development of bioelectrochemical assemblies for sustainable energy transformation constitutes an increasingly important field of research. Significant progress has been made in the development of semiartificial devices for conversion of...
7.
Zhao F, Hardt S, Hartmann V, Zhang H, Nowaczyk M, Rogner M, et al.
Nat Commun
. 2018 May;
9(1):1973.
PMID: 29773789
Interfacing photosynthetic proteins specifically photosystem 1 (PS1) with electrodes enables light-induced charge separation processes for powering semiartificial photobiodevices with, however, limited long-term stability. Here, we present the in-depth evaluation of...
8.
Bothe H, Happe T, Trebst S, Rogner M
Photosynth Res
. 2018 May;
137(3):341-359.
PMID: 29767344
The life and work of Achim Trebst (1929-2017) was dedicated to photosynthesis, involving a wide span of seminal contributions which cumulated in more than five decades of active research: Major...
9.
Kubota-Kawai H, Mutoh R, Shinmura K, Setif P, Nowaczyk M, Rogner M, et al.
Nat Plants
. 2018 Apr;
4(4):218-224.
PMID: 29610537
Photosystem I (PSI), a large protein complex located in the thylakoid membrane, mediates the final step in light-driven electron transfer to the stromal electron carrier protein ferredoxin (Fd). Here, we...
10.
Zhao F, Conzuelo F, Hartmann V, Li H, Stapf S, Nowaczyk M, et al.
Biosens Bioelectron
. 2017 Mar;
94:433-437.
PMID: 28334627
The development of a versatile microbiosensor for hydrogen detection is reported. Carbon-based microelectrodes were modified with a [NiFe]-hydrogenase embedded in a viologen-modified redox hydrogel for the fabrication of a sensitive...