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Matthias Leippe

Explore the profile of Matthias Leippe including associated specialties, affiliations and a list of published articles. Areas
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Articles 105
Citations 1894
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Ortjohann M, Leippe M
Dev Comp Immunol . 2025 Feb; 164:105334. PMID: 39909204
The model organism Dictyostelium discoideum functions as a social amoeba that can aggregate, eventually forming a fruiting body composed of a fixed number of cells. This behavior requires a soluble...
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Ortjohann M, Leippe M
Biochemistry . 2024 Oct; 63(21):2768-2777. PMID: 39421968
To combat the permanent exposure to potential pathogens every organism relies on an immune system. Important factors in innate immunity are antimicrobial peptides (AMPs) that are structurally highly diverse. Some...
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Ortjohann M, Leippe M
Dev Comp Immunol . 2024 Sep; 162():105266. PMID: 39303911
Antimicrobial peptides (AMPs) are important players of the innate immune system with a major role in the defense against invading pathogens. AMPs belonging to the family of saposin-like proteins (SAPLIPs)...
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Berndt H, Fuchs S, Kraus-Stojanowic I, Pees B, Gelhaus C, Leippe M
Dev Comp Immunol . 2024 Jun; 159:105220. PMID: 38925432
To overcome bacterial invasion and infection, animals have evolved various antimicrobial effectors such as antimicrobial peptides and lysozymes. Although C. elegans is exposed to a variety of microbes due to...
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Andra J, Aisenbrey C, Sudheendra U, Prudhon M, Brezesinski G, Zschech C, et al.
Biochim Biophys Acta Biomembr . 2023 Dec; 1866(3):184267. PMID: 38159877
NK-2 is an antimicrobial peptide derived from helices 3 and 4 of the pore-forming protein of natural killer cells, NK-lysin. It has potent activities against Gram-negative and Gram-positive bacteria, fungi...
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Preusske N, Sonnichsen F, Leippe M
Biosci Rep . 2023 May; PMID: 37163620
Nowadays, not only biologists, but also researchers from other disciplines such as chemistry, pharmacy, material sciences, or physics are working with antimicrobial peptides. This review is written for researchers and...
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Leipert J, Kaulich P, Steinbach M, Steer B, Winkels K, Blurton C, et al.
Angew Chem Int Ed Engl . 2023 Apr; 62(28):e202301969. PMID: 37066813
While most nanoproteomics approaches for the analysis of low-input samples are based on bottom-up proteomics workflows, top-down approaches enabling proteoform characterization are still underrepresented. Using mammalian cell proteomes, we established...
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Winkels K, Koudelka T, Kaulich P, Leippe M, Tholey A
J Proteome Res . 2022 Aug; 21(9):2185-2196. PMID: 35972260
Bottom-up proteomics (BUP)-based N-terminomics techniques have become standard to identify protein N-termini. While these methods rely on the identification of N-terminal peptides only, top-down proteomics (TDP) comes with the promise...
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Steinbach M, Leipert J, Blurton C, Leippe M, Tholey A
J Proteome Res . 2022 Jun; 21(8):1986-1996. PMID: 35771142
Miniaturization of sample preparation, including omissible manual sample handling steps, is key for reproducible nanoproteomics, as material is often restricted to only hundreds of cells or single model organisms. Here,...