Robert F Standaert
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Explore the profile of Robert F Standaert including associated specialties, affiliations and a list of published articles.
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40
Citations
782
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Recent Articles
1.
Scott H, Burns-Casamayor V, Dixson A, Standaert R, Stanley C, Stingaciu L, et al.
Biochim Biophys Acta Biomembr
. 2024 May;
1866(7):184349.
PMID: 38815687
Cell membranes are responsible for a range of biological processes that require interactions between lipids and proteins. While the effects of lipids on proteins are becoming better understood, our knowledge...
2.
Morgan J, Jelenska J, Hensley D, Li P, Srijanto B, Retterer S, et al.
J Vis Exp
. 2023 Sep;
(197).
PMID: 37677009
The delivery of biomolecules and impermeable dyes to intact plants is a major challenge. Nanomaterials are up-and-coming tools for the delivery of DNA to plants. As exciting as these new...
3.
Morgan J, Jelenska J, Hensley D, Retterer S, Morrell-Falvey J, Standaert R, et al.
Front Plant Sci
. 2022 Dec;
13:1051340.
PMID: 36507425
Transient transformation in plants is a useful process for evaluating gene function. However, there is a scarcity of minimally perturbing methods for gene delivery that can be used on multiple...
4.
Mou Z, Eakes J, Cooper C, Foster C, Standaert R, Podar M, et al.
Proteins
. 2020 Oct;
89(3):336-347.
PMID: 33118210
Predicting the range of substrates accepted by an enzyme from its amino acid sequence is challenging. Although sequence- and structure-based annotation approaches are often accurate for predicting broad categories of...
5.
Garcia D, Mohr B, Dovgan J, Hurst G, Standaert R, Doktycz M
Synth Biol (Oxf)
. 2020 Sep;
3(1):ysy006.
PMID: 32995514
Living systems possess a rich biochemistry that can be harnessed through metabolic engineering to produce valuable therapeutics, fuels and fine chemicals. In spite of the tools created for this purpose,...
6.
Chakraborty S, Doktorova M, Molugu T, Heberle F, Scott H, Dzikovski B, et al.
Proc Natl Acad Sci U S A
. 2020 Aug;
117(36):21896-21905.
PMID: 32843347
Cholesterol is an integral component of eukaryotic cell membranes and a key molecule in controlling membrane fluidity, organization, and other physicochemical parameters. It also plays a regulatory function in antibiotic...
7.
Nickels J, Poudel S, Chatterjee S, Farmer A, Cordner D, Campagna S, et al.
Front Microbiol
. 2020 Jun;
11:914.
PMID: 32499768
Developing cultivation methods that yield chemically and isotopically defined fatty acid (FA) compositions within bacterial cytoplasmic membranes establishes an experimental platform to study membrane biophysics and cell membrane regulation using...
8.
Garcia D, Cheng X, Land M, Standaert R, Morrell-Falvey J, Doktycz M
ACS Chem Biol
. 2019 Nov;
14(12):2867-2875.
PMID: 31693336
Elucidating the interaction networks associated with secondary metabolite production in microorganisms is an ongoing challenge made all the more daunting by the rate at which DNA sequencing technology reveals new...
9.
Patabadige D, Millet L, Aufrecht J, Shankles P, Standaert R, Retterer S, et al.
Sci Rep
. 2019 Jul;
9(1):10272.
PMID: 31312009
Spatial and temporal profiling of metabolites within and between living systems is vital to understanding how chemical signaling shapes the composition and function of these complex systems. Measurement of metabolites...
10.
Doktorova M, Heberle F, Eicher B, Standaert R, Katsaras J, London E, et al.
Nat Protoc
. 2018 Sep;
13(9):2086-2101.
PMID: 30190552
Freely suspended liposomes are widely used as model membranes for studying lipid-lipid and protein-lipid interactions. Liposomes prepared by conventional methods have chemically identical bilayer leaflets. By contrast, living cells actively...