Jolanda Verheul
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Explore the profile of Jolanda Verheul including associated specialties, affiliations and a list of published articles.
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832
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Recent Articles
1.
Mertens L, Liu X, Verheul J, Egan A, Vollmer W, den Blaauwen T
Access Microbiol
. 2024 Nov;
6(11).
PMID: 39539348
The Tol-Pal proteins stabilize the outer membrane during cell division in many Gram-negative bacteria, including . Pal is an outer membrane lipoprotein that can bind peptidoglycan. It accumulates at the...
2.
Mortier J, Govers S, Cambre A, Van Eyken R, Verheul J, den Blaauwen T, et al.
Cell Mol Life Sci
. 2023 Nov;
80(12):360.
PMID: 37971522
Mechanisms underlying deviant cell size fluctuations among clonal bacterial siblings are generally considered to be cryptic and stochastic in nature. However, by scrutinizing heat-stressed populations of the model bacterium Escherichia...
3.
Paulussen F, Schouten G, Moertl C, Verheul J, Hoekstra I, Koningstein G, et al.
J Am Chem Soc
. 2022 Aug;
144(33):15303-15313.
PMID: 35945166
The use of antibiotics is threatened by the emergence and spread of multidrug-resistant strains of bacteria. Thus, there is a need to develop antibiotics that address new targets. In this...
4.
Verheul J, Lodge A, Yau H, Liu X, Boelter G, Liu X, et al.
PLoS Genet
. 2022 May;
18(5):e1010222.
PMID: 35604931
Insertion of new material into the Escherichia coli peptidoglycan (PG) sacculus between the cytoplasmic membrane and the outer membrane requires a well-organized balance between synthetic and hydrolytic activities to maintain...
5.
Banzhaf M, Yau H, Verheul J, Lodge A, Kritikos G, Mateus A, et al.
EMBO J
. 2020 Feb;
39(5):e102246.
PMID: 32009249
The peptidoglycan (PG) sacculus provides bacteria with the mechanical strength to maintain cell shape and resist osmotic stress. Enlargement of the mesh-like sacculus requires the combined activity of peptidoglycan synthases...
6.
Monterroso B, Zorrilla S, Sobrinos-Sanguino M, Robles-Ramos M, Alfonso C, Soderstrom B, et al.
mBio
. 2019 May;
10(3).
PMID: 31138739
Division ring formation at midcell is controlled by various mechanisms in , one of them being the linkage between the chromosomal Ter macrodomain and the Z-ring mediated by MatP, a...
7.
Roseboom W, Nazir M, Meiresonne N, Mohammadi T, Verheul J, Buncherd H, et al.
Int J Mol Sci
. 2018 Sep;
19(10).
PMID: 30261644
Cell division in bacteria is initiated by the polymerization of FtsZ at midcell in a ring-like structure called the Z-ring. ZapA and other proteins assist Z-ring formation and ZapA binds...
8.
Pende N, Wang J, Weber P, Verheul J, Kuru E, Rittmann S, et al.
Curr Biol
. 2018 Mar;
28(7):1039-1051.e5.
PMID: 29576473
To determine the fundamentals of cell growth, we must extend cell biological studies to non-model organisms. Here, we investigated the growth modes of the only two rods known to widen...
9.
Leisch N, Pende N, Weber P, Gruber-Vodicka H, Verheul J, Vischer N, et al.
Nat Microbiol
. 2016 Oct;
2:16182.
PMID: 27723729
The reproduction mode of uncultivable microorganisms deserves investigation as it can largely diverge from conventional transverse binary fission. Here, we show that the rod-shaped gammaproteobacterium thriving on the surface of...
10.
Vischer N, Verheul J, Postma M, van den Berg van Saparoea B, Galli E, Natale P, et al.
Front Microbiol
. 2015 Jul;
6:586.
PMID: 26124755
The rod-shaped Gram-negative bacterium Escherichia coli multiplies by elongation followed by binary fission. Longitudinal growth of the cell envelope and synthesis of the new poles are organized by two protein...