Literature DB >> 30768827

Combining Chemical Synthesis and Enzymatic Methylation to Access Short RNAs with Various 5' Caps.

Nils Muthmann1, Théo Guez2, Jean-Jacques Vasseur2, Samie R Jaffrey3, Françoise Debart2, Andrea Rentmeister1.   

Abstract

Eukaryotic RNAs are heavily processed, including co- and post-transcriptional formation of various 5' caps. In small nuclear RNAs (snRNAs) or small nucleolar RNAs (snoRNAs), the canonical 7m G cap is hypermethylated at the N2 -position, whereas in higher eukaryotes and viruses 2'-O-methylation of the first transcribed nucleotide yields the cap1 structure. The function and potential dynamics of several RNA cap modifications have not been fully elucidated, which necessitates preparative access to these caps. However, the introduction of these modifications during chemical solid-phase synthesis is challenging and enzymatic production of defined short and uniform RNAs also faces difficulties. In this work, the chemical synthesis of RNA is combined with site-specific enzymatic methylation by using the methyltransferases human trimethylguanosine synthase 1 (hTgs1), trimethylguanosine synthase from Giardia lamblia (GlaTgs2), and cap methyltransferase 1 (CMTR1). It is shown that RNAs with di-and trimethylated caps, as well as RNAs with caps methylated at the 2'-O-position of the first transcribed nucleotide, can be conveniently prepared. These highly modified RNAs, with a defined and uniform sequence, are hard to access by in vitro transcription or chemical synthesis alone.
© 2019 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim.

Entities:  

Keywords:  RNA; methylation; solid-phase synthesis; synthesis design; transferases

Mesh:

Substances:

Year:  2019        PMID: 30768827      PMCID: PMC6755138          DOI: 10.1002/cbic.201900037

Source DB:  PubMed          Journal:  Chembiochem        ISSN: 1439-4227            Impact factor:   3.164


  33 in total

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Authors:  Stéphane Hausmann; Melissa A Altura; Matthew Witmer; Steven M Singer; Heidi G Elmendorf; Stewart Shuman
Journal:  J Biol Chem       Date:  2004-11-19       Impact factor: 5.157

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Journal:  Proc Natl Acad Sci U S A       Date:  1991-11-15       Impact factor: 11.205

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Authors:  C M Wei; A Gershowitz; B Moss
Journal:  Cell       Date:  1975-04       Impact factor: 41.582

5.  Chemical Synthesis of a 5'-Terminal TMG-Capped Triribonucleotide m(3)(2,2,7)G(5)(')pppAmpUmpA of U1 RNA.

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Journal:  J Org Chem       Date:  1996-06-26       Impact factor: 4.354

Review 6.  Innate recognition of viruses.

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Authors:  Alwin Köhler; Ed Hurt
Journal:  Nat Rev Mol Cell Biol       Date:  2007-10       Impact factor: 94.444

8.  Giardia lamblia RNA cap guanine-N2 methyltransferase (Tgs2).

Authors:  Stéphane Hausmann; Stewart Shuman
Journal:  J Biol Chem       Date:  2005-07-25       Impact factor: 5.157

9.  The hDcp2 protein is a mammalian mRNA decapping enzyme.

Authors:  Zuoren Wang; Xinfu Jiao; Anne Carr-Schmid; Megerditch Kiledjian
Journal:  Proc Natl Acad Sci U S A       Date:  2002-09-06       Impact factor: 11.205

Review 10.  Chaperoning ribonucleoprotein biogenesis in health and disease.

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Journal:  EMBO Rep       Date:  2007-04       Impact factor: 8.807

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  3 in total

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Authors:  Nils Klöcker; Florian P Weissenboeck; Melissa van Dülmen; Petr Špaček; Sabine Hüwel; Andrea Rentmeister
Journal:  Nat Chem       Date:  2022-06-20       Impact factor: 24.274

2.  Quantification of mRNA cap-modifications by means of LC-QqQ-MS.

Authors:  Nils Muthmann; Petr Špaček; Dennis Reichert; Melissa van Dülmen; Andrea Rentmeister
Journal:  Methods       Date:  2021-05-28       Impact factor: 4.647

3.  Practical Synthesis of Cap-4 RNA.

Authors:  Josef Leiter; Dennis Reichert; Andrea Rentmeister; Ronald Micura
Journal:  Chembiochem       Date:  2019-11-08       Impact factor: 3.164

  3 in total

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