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Franz Narberhaus

Explore the profile of Franz Narberhaus including associated specialties, affiliations and a list of published articles. Areas
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Articles 141
Citations 3135
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Recent Articles
11.
Pienkoss S, Javadi S, Chaoprasid P, Holler M, Rossmanith J, Dersch P, et al.
J Mol Biol . 2022 Jun; 434(18):167667. PMID: 35667470
The type III secretion system (T3SS) is indispensable for successful host cell infection by many Gram-negative pathogens. The molecular syringe delivers effector proteins that suppress the host immune response. Synthesis...
12.
Czolkoss S, Safronov X, Rexroth S, Knoke L, Aktas M, Narberhaus F
Front Microbiol . 2021 Dec; 12:754486. PMID: 34899640
Cell membranes are not homogenous but compartmentalized into lateral microdomains, which are considered as biochemical reaction centers for various physiological processes in eukaryotes and prokaryotes. Due to their special lipid...
13.
Pienkoss S, Javadi S, Chaoprasid P, Nolte T, Twittenhoff C, Dersch P, et al.
PLoS Pathog . 2021 Nov; 17(11):e1009650. PMID: 34767606
Many bacterial pathogens use a type III secretion system (T3SS) as molecular syringe to inject effector proteins into the host cell. In the foodborne pathogen Yersinia pseudotuberculosis, delivery of the...
14.
Wullner D, Gesper M, Haupt A, Liang X, Zhou P, Dietze P, et al.
Antimicrob Agents Chemother . 2021 Nov; 66(1):e0087821. PMID: 34748386
Pseudomonas aeruginosa is among the highest priority pathogens for drug development because of its resistance to antibiotics, extraordinary adaptability, and persistence. Antipseudomonal research is strongly encouraged to address the acute...
15.
Kleetz J, Vasilopoulos G, Czolkoss S, Aktas M, Narberhaus F
Appl Microbiol Biotechnol . 2021 Oct; 105(23):8837-8851. PMID: 34709431
Escherichia coli is the daily workhorse in molecular biology research labs and an important platform microorganism in white biotechnology. Its cytoplasmic membrane is primarily composed of the phospholipids phosphatidylethanolamine (PE),...
16.
Czolkoss S, Borgert P, Poppenga T, Holzl G, Aktas M, Narberhaus F
Environ Microbiol . 2021 Sep; 23(11):6993-7008. PMID: 34528360
The bacterial membrane is constantly remodelled in response to environmental conditions and the external supply of precursor molecules. Some bacteria are able to acquire exogenous lyso-phospholipids and convert them to...
17.
Kleetz J, Welter L, Mizza A, Aktas M, Narberhaus F
Appl Environ Microbiol . 2021 Jul; 87(19):e0110521. PMID: 34288711
One of the most common pathways for the biosynthesis of the phospholipid phosphatidylcholine (PC) in bacteria is the successive 3-fold -methylation of phosphatidylethanolamine (PE) catalyzed by phospholipid -methyltransferases (Pmts). Pmts...
18.
Scheller D, Twittenhoff C, Becker F, Holler M, Narberhaus F
Front Microbiol . 2021 Jul; 12:687260. PMID: 34220779
The outer membrane protein OmpA is a virulence factor in many mammalian pathogens. In previous global RNA structure probing studies, we found evidence for a temperature-modulated RNA structure in the...
19.
Kouse A, Righetti F, Kortmann J, Narberhaus F, Murphy E
PLoS One . 2021 Jun; 16(6):e0252744. PMID: 34061913
[This corrects the article DOI: 10.1371/journal.pone.0063781.].
20.
Vasilopoulos G, Moser R, Petersen J, Aktas M, Narberhaus F
Biochim Biophys Acta Mol Cell Biol Lipids . 2021 Mar; 1866(7):158926. PMID: 33766680
Bacterial membranes are primarily composed of phosphatidylethanolamine (PE), phosphatidylglycerol (PG) and cardiolipin (CL). In the canonical PE biosynthesis pathway, phosphatidylserine (PS) is decarboxylated by the Psd enzyme. CL formation typically...