Proteomics

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Proteomics analysis of ALKBH8 KO mice


ABSTRACT: Proteomics analysis targeting cerebral cortex, hippocampus and cerebellum derived from AlkB homologues 8 (ALKBH8) knockout mice was conducted to identify differentially expressed proteins. Peptides were analyzed by DIA proteome analysis method using Orbitrap Eclipse, and proteins with variable expression were comprehensively analyzed by library-free method using DIA-NN.

ORGANISM(S): Mus Musculus (mouse)

SUBMITTER: Kazutake Tsujikawa 

PROVIDER: PXD046196 | JPOST Repository | Fri Oct 18 00:00:00 BST 2024

REPOSITORIES: jPOST

Dataset's files

Source:
Action DRS
20230218_ALKBH8KO_sample1.raw Raw
20230218_ALKBH8KO_sample10.raw Raw
20230218_ALKBH8KO_sample11.raw Raw
20230218_ALKBH8KO_sample12.raw Raw
20230218_ALKBH8KO_sample13.raw Raw
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Publications

ALKBH8 contributes to neurological function through oxidative stress regulation.

Honda Kohei K   Hase Hiroaki H   Tanikawa Sayaka S   Okawa Katsuya K   Chen Lu L   Yamaguchi Takumi T   Nakai Manami M   Kitae Kaori K   Ago Yukio Y   Nakagawa Shinsaku S   Tsujikawa Kazutake K  

PNAS nexus 20240328 3


Transfer RNA (tRNA) modification is essential for proper protein translation, as these modifications play important roles in several biological functions and disease pathophysiologies. AlkB homolog 8 (ALKBH8) is one of the nine mammalian ALKBH family molecules known to regulate selenoprotein translation through the modification of the wobble uridine (U34) in tRNA; however, its specific biological roles remain unclear. In this study, we investigated the role of ALKBH8 using <i>Alkbh8</i>-knockout  ...[more]

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