Proteomics

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Absolute quantification of peptides from TIM23 or PINK1-3HA using AQUA peptides


ABSTRACT: To quantify TIM23 and PINK1-3HA in the immunoprecipitates, control or PINK1-3HA expressing HeLa cells were treated with CCCP and subjected to immunoprecipitation with anti-HA antibody bound to magnetic beads. After spiked with 200 fmol stable isotope-labeled AQUA peptides (Cosmo Bio Co Ltd) as standards, proteins on the beads were digested with 400 ng trypsin/LysC mixture at 37ºC overnight. The digests were reduced, alkylated, acidified, desalted, evaporated, and dissolved in 0.1% trifluoroacetic acid and 3% acetonitrile. The absolute amounts of tryptic peptides derived from TIM23 and PINK1-3HA were measured by PRM. Targeted MS/MS scans were acquired by a time-scheduled inclusion list at a resolution of 70,000, an AGC target of 2e5, an isolation window of 2.0 m/z, a maximum injection time of 300 ms, and a normalized collision energy of 27. Time alignment and quantification of the transitions of three biological replicates were performed using Skyline software.

ORGANISM(S): Homo Sapiens (human)

SUBMITTER: Hidetaka Kosako 

PROVIDER: PXD041244 | JPOST Repository | Fri Apr 07 00:00:00 BST 2023

REPOSITORIES: jPOST

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Publications

TIM23 facilitates PINK1 activation by safeguarding against OMA1-mediated degradation in damaged mitochondria.

Akabane Shiori S   Watanabe Kiyona K   Kosako Hidetaka H   Yamashita Shun-Ichi SI   Nishino Kohei K   Kato Masahiro M   Sekine Shiori S   Kanki Tomotake T   Matsuda Noriyuki N   Endo Toshiya T   Oka Toshihiko T  

Cell reports 20230508 5


PINK1 is activated by autophosphorylation and forms a high-molecular-weight complex, thereby initiating the selective removal of damaged mitochondria by autophagy. Other than translocase of the outer mitochondrial membrane complexes, members of PINK1-containing protein complexes remain obscure. By mass spectrometric analysis of PINK1 co-immunoprecipitates, we identify the inner membrane protein TIM23 as a component of the PINK1 complex. TIM23 downregulation decreases PINK1 levels and significant  ...[more]

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