Meinnel

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Meinnel

Meinnel

@meinnel

Gif-sur-Yvette, France Katılım Haziran 2018
59 Takip Edilen37 Takipçiler
Meinnel
Meinnel@meinnel·
Structural proteomic investigation to show the relative impact of Lysine and Glycine myristoylation and how the data inspired the design of potent NMT inhibitors @proteintermini
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Meinnel
Meinnel@meinnel·
Special Issue on "Modifications of Protein Termini" is now open for contributions in International Journal of Molecular Sciences (IF=4,56). Deadline for submissions is February 28 2021. @proteintermini Further information at mdpi.com/si/57917 #mdpiijms via @IJMS_MDPI
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Meinnel
Meinnel@meinnel·
When the crisis is over, analysis of the mortality curves will tell what the true numbers were.
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Meinnel
Meinnel@meinnel·
A coronaviral mortality rate that is highly sensitive to borders... Or rather the meaning of numbers and statistics? Should each country be clearer about their respective policy about how they consider the causal effect of each new death? #COVID19 #Statistics
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Meinnel retweetledi
Nature Communications
Nature Communications@NatureComms·
Hening Lin’s lab @CornellChem reports that human N-terminal glycine myristoyltransferases also myristoylate specific lysine residues and how this regulates the ARF6 GTPase cycle go.nature.com/2uR7sa7
Nature Communications tweet media
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Meinnel
Meinnel@meinnel·
Following recent publication of our @NatureComms paper I was invited to an International Conference on Nursing and Women's Health to speak about innovation in the field. Any overinterpretation of our conclusions? Should I think about a connection?
Nature Communications@NatureComms

. @Giglionelab @meinnel @TateScience and co-workers solved the crystal structures of human N-myristoyltransferase 1 and show that the enzyme also catalyses N-terminal Lys myristoylation go.nature.com/39o6yAX

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Meinnel retweetledi
Nature Communications
Nature Communications@NatureComms·
Hening Lin’s lab @CornellChem reports that human N-terminal glycine myristoyltransferases also myristoylate specific lysine residues and how this regulates the ARF6 GTPase cycle go.nature.com/2uR7sa7
Nature Communications tweet media
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