M@x R.

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M@x R.

M@x R.

@ReuterLM

Project leader, yeast biochemist & geneticist, applying -omics approaches to DNA replication problems

Mainz, Germany เข้าร่วม Aralık 2013
130 กำลังติดตาม91 ผู้ติดตาม
Richvrdwulf
Richvrdwulf@richvrdwulf·
We are in the Zone I am waiting the shift of the internal structure deep sweep interesting to be honest chill and wait for the switch no switch=no long
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Dr. Erin E. Cutts 👩‍🔬
It’s been brilliant setting up my lab in Sheffield! So much to do, and the Peak District on our doorstep will surely be distracting!
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M@x R. รีทวีตแล้ว
SFB 1361 - DNA Repair and Genome Stability
Publication alert! 📰 Great work done by @ReuterLM on the use of high-throughput flow cytometry for analysis of cell cycle stage, replicated DNA, and chromatin-associated proteins! Read their publication here: degruyter.com/document/doi/1…
M@x R.@ReuterLM

Excited to share another story from the lab out in #BiologicalChemistry. 🥳 Fantastic teamwork effort at @imbmainz @uni_mainz @sfb1361 @degruyter_pub check it out here: degruyter.com/document/doi/1…

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Hans-Peter Wollscheid
Hans-Peter Wollscheid@HWollscheid·
Please RT. Are you interested in performing your master thesis with us @imbmainz? We have exciting projects on nuclear myosin VI in genome stability. Details below imb.de/fileadmin/imb/… If interested please apply via the link or contact me directly.
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IMB Mainz
IMB Mainz@imbmainz·
#Mainzer Wissenschaftsmarkt 2024 🔬🧬Unser Postdoc Dr. Maximilian Reuter im Gespräch mit Prof. Dr. Mita Banerjee & Dr. Ruth Gehrmann vom Obama Institute for Transnational American Studies der @unimainz über "Healthy #Ageing zwischen Körper und Kultur".
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M@x R.
M@x R.@ReuterLM·
These protocols are particularly useful for researchers interested in DNA replication related research, as they allow you to quantify DNA content, EdU incorporation and protein chromatic binding at the same time in the same tube!🔬
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M@x R.
M@x R.@ReuterLM·
Here, we provide novel and advanced protocols for high-throughput multidimensional flow cytometry assays in budding yeast and human cells. For the first time, we were able to measure chromatin-bound factors in yeast by flow cytometry.
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M@x R.
M@x R.@ReuterLM·
Heute Nachmittag diskutiere ich mit Kollegen des @sfb1361 und SFB1482 über Altern: Zwischen Körper und Kultur im Herzen @mainz_de. Mit Unterstützung von @imbmainz und #UniMainz.
Uni Mainz – Veranstaltungen@uni_mainz_event

7./8.9.2024 - 22. #MainzerWissenschaftsmarkt auf dem Gutenbergplatz @mainz_de / #UniMainz präsentiert Projekte aus #ExzellenzclusterPRISMA+, Geo- und Altertumswissenschaften, Amerikanistik, Publizistik, Geschichte u.v.m. 👉 wissenschaftsallianz-mainz.de/wissenschaftsm… #MainzerWissenschaftsallianz

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M@x R.
M@x R.@ReuterLM·
3/3: Interestingly, these sites are characterised by specific sequences and structural features that allow curving the DNA to ease DNA insertion into the MCM2-7 hexamer. Finally we found that origins are more compact than expected, fitting everything between two nucleosomes.🧬🔬
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M@x R.
M@x R.@ReuterLM·
2/3: We found that ORC and MCM2-7 have overlapping binding sites in vivo, which cause ORC redistribution across the genome upon DNA licensing. Here, ORC subsequently recognises its two binding sites while loading the MCM2-7 double hexamer.
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Christian Speck
Christian Speck@Speck_Lab·
Happy to announce our new publication in @NatureComms, spearheaded by super-talented project leader @ReuterLM . We identified that helicase loading is a self-limiting reaction supporting equal distribution of the replicative helicase across the genome. rdcu.be/dRTAZ
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