Egbert J Boekema
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Explore the profile of Egbert J Boekema including associated specialties, affiliations and a list of published articles.
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124
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4928
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Recent Articles
11.
Franken L, Oostergetel G, Pijning T, Puri P, Arkhipova V, Boekema E, et al.
Nat Commun
. 2017 Sep;
8(1):722.
PMID: 28959045
Bacteria downregulate their ribosomal activity through dimerization of 70S ribosomes, yielding inactive 100S complexes. In Escherichia coli, dimerization is mediated by the hibernation promotion factor (HPF) and ribosome modulation factor....
12.
van Bezouwen L, Caffarri S, Kale R, Kouril R, Thunnissen A, Oostergetel G, et al.
Nat Plants
. 2017 Jun;
3:17080.
PMID: 28604725
Photosystem II (PSII) is a light-driven protein, involved in the primary reactions of photosynthesis. In plant photosynthetic membranes PSII forms large multisubunit supercomplexes, containing a dimeric core and up to...
13.
Franken L, Boekema E, Stuart M
Adv Sci (Weinh)
. 2017 May;
4(5):1600476.
PMID: 28546914
Transmission electron microscopy (TEM) provides direct structural information on nano-structured materials and is popular as a characterization tool in soft matter and supramolecular chemistry. However, technical aspects of sample preparation...
14.
Semchonok D, Yadav K, Xu P, Drop B, Croce R, Boekema E
Biochim Biophys Acta Bioenerg
. 2017 Mar;
1858(5):379-385.
PMID: 28257778
Photosynthetic organisms can thermally dissipate excess of absorbed energy in high-light conditions in a process known as non-photochemical quenching (NPQ). In the green alga Chlamydomonas reinhardtii this process depends on...
15.
Yadav K, Miranda-Astudillo H, Colina-Tenorio L, Bouillenne F, Degand H, Morsomme P, et al.
Biochim Biophys Acta Bioenerg
. 2017 Jan;
1858(4):267-275.
PMID: 28089911
Mitochondrial respiratory-chain complexes from Euglenozoa comprise classical subunits described in other eukaryotes (i.e. mammals and fungi) and subunits that are restricted to Euglenozoa (e.g. Euglena gracilis and Trypanosoma brucei). Here...
16.
Yadav K, Semchonok D, Nosek L, Kouril R, Fucile G, Boekema E, et al.
Biochim Biophys Acta Bioenerg
. 2016 Oct;
1858(1):12-20.
PMID: 27755973
Photosystem I (PSI) is a pigment-protein complex required for the light-dependent reactions of photosynthesis and participates in light-harvesting and redox-driven chloroplast metabolism. Assembly of PSI into supercomplexes with light harvesting...
17.
Alboresi A, Le Quiniou C, Yadav S, Scholz M, Meneghesso A, Gerotto C, et al.
New Phytol
. 2016 Sep;
213(2):714-726.
PMID: 27620972
Photosystem I (PSI) is a pigment protein complex catalyzing the light-driven electron transport from plastocyanin to ferredoxin in oxygenic photosynthetic organisms. Several PSI subunits are highly conserved in cyanobacteria, algae...
18.
Nosek L, Semchonok D, Boekema E, Ilik P, Kouril R
Plant J
. 2016 Sep;
89(1):104-111.
PMID: 27598242
Plant photosystem II (PSII) is organized into large supercomplexes with variable levels of membrane-bound light-harvesting proteins (LHCIIs). The largest stable form of the PSII supercomplex involves four LHCII trimers, which...
19.
Semchonok D, Li M, Bruce B, Oostergetel G, Boekema E
Biochim Biophys Acta
. 2016 Jul;
1857(9):1619-1626.
PMID: 27392600
Photosystem I (PSI) of the thermophilic cyanobacterium Chroococcidiopsis sp. TS-821 (TS-821) forms tetramers Li et al. (2014). Two-dimensional maps obtained by single particle electron microscopy (EM) clearly show that the...
20.
Kouril R, Nosek L, Bartos J, Boekema E, Ilik P
New Phytol
. 2016 Mar;
210(3):808-14.
PMID: 27001142
Photosynthesis in plants and algae relies on the coordinated function of photosystems (PS) I and II. Their efficiency is augmented by finely-tuned light-harvesting proteins (Lhcs) connected to them. The most...