z-logo
Premium
Proteomics analysis for asymmetric inheritance of preexisting proteins between mother and daughter cells in budding yeast
Author(s) -
Okada Mitsuhiro,
Kusunoki Shunta,
Ishibashi Yuko,
Kito Keiji
Publication year - 2017
Publication title -
genes to cells
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.912
H-Index - 115
eISSN - 1365-2443
pISSN - 1356-9597
DOI - 10.1111/gtc.12497
Subject(s) - biology , cell division , asymmetric cell division , microbiology and biotechnology , proteomics , inheritance (genetic algorithm) , organelle , genetics , daughter , yeast , intracellular , cell , gene , evolutionary biology
In budding yeast, a mother cell can produce a finite number of daughter cells over its life. The accumulation of a variety of types of damaged components has an impact on the aging process. Asymmetrical inheritance during cell division causes these aberrant intracellular constituents to be retained in mother cells and prevents them from segregating to daughter cells. However, the understanding of asymmetrical inheritance of individual proteins that are damaged or old age, and their relevance to the aging process, has been limited. The aim of this study is to propose a proteomics strategy for asymmetrical inheritance of preexisting proteins between mother and daughter cells. During synchronous culture for one generation, newly synthesized proteins were labeled with stable isotope amino acids to discriminate preexisting proteins originally expressed in mother cells, followed by separation of mother and daughter cells using a conventional method based on biotin labeling. Isotope incorporation ratios for individual proteins were quantified using mass spectrometry. We successfully identified 21 proteins whose preexisting versions were asymmetrically inherited in mother cells, including plasma membrane transporter involved in the aging process and organelle‐anchoring proteins related to the stress response to misfolded proteins. Thus, our approach would be useful for making catalog of asymmetrically inherited proteins.

This content is not available in your region!

Continue researching here.

Having issues? You can contact us here