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Biology subjects

Sinigaglia, K.

Publications and source records attributed to Sinigaglia, K..

3 recordsLinked to original sources

Global Analysis by LC-MS/MS of N6-Methyladenosine and Inosine in mRNA Reveals Complex Incidence

The precise and unambiguous detection and quantification of internal RNA modifications represents a critical step for understanding their physiological functions. The methods of direct RNA sequencing are quickly developing allowing for the precise location of internal RNA marks. This detection is however not quantitative and still presents detection limits. One of the biggest remaining challenges in the field is still the detection and quantification of m6A, m6Am and m1A modifications. The second intriguing and timely question remaining to be addressed is the extent to which individual marks are coregulated or potentially can affect each other. Here we present a methodological approach to detect and quantify several key mRNA modifications in human total RNA and in mRNA, which is difficult to purify way from contaminating tRNA. We show that the adenosine demethylase FTO primarily targets m6Am marks in noncoding RNAs in HEK293T cells. Surprisingly, we observe little effect of FTO or ALKBH5 depletion on the m6A mRNA levels. Interestingly, upregulation of ALKBH5 is accompanied by an increase in inosine level in overall mRNA.

molecular biology↗

Aberrant activation of the innate immune sensor PKR by self dsRNA is prevented by direct interaction with ADAR1

Loss of dsRNA editing by Adar1 leads to aberrant interferon induction in Adar null mouse embryos. Adar Mavs mutants, in which this interferon induction is prevented, die within two weeks of birth. We show here that early death of pups is reduced in Adar Mavs EIF2k2 (Pkr) mutants, identifying PKR as the second aberrantly activated dsRNA sensor in Adar mutant mice. In intestines of Adar Mavs pups transit amplifying progenitor cells in intestinal crypts die and intestinal villi are lost in pups before death; intestinal defects are prevented in Adar Mavs Eifak2. In human A549 lung cancer cells ADAR1 forms a complex with PKR. AlphaFold modelling predicts a direct inhibitory interaction of ADAR1 dsRBDIII with the PKR near the kinase active site and a new mode for ADAR1 dsRNA-binding. Mutations at residues required for ADAR1 dsRNA binding or for predicted PKR contacts, prevent interaction with PKR.

immunology↗