TY - JOUR
T1 - The putative ceramide-conjugation protein Cwh43 regulates G0 quiescence, nutrient metabolism and lipid homeostasis in fission yeast
AU - Nakazawa, Norihiko
AU - Teruya, Takayuki
AU - Sajiki, Kenichi
AU - Kumada, Kazuki
AU - Villar-Briones, Alejandro
AU - Arakawa, Orie
AU - Takada, Junko
AU - Saitoh, Shigeaki
AU - Yanagida, Mitsuhiro
N1 - Funding Information:
This study was supported by grants from the Japan Society for the Promotion of Science (KAKENHI grant JP 17K07394 to S.S.) and by the MEXT-Supported Program for the Strategic Research Foundation at Private Universities from the Ministry of Education, Culture, Sports, Science and Technology, Japan (to S.S.). We are also grateful for the generous support of Okinawa Institute of Science and Technology Graduate University.
Publisher Copyright:
© 2018. Published by The Company of Biologists Ltd.
PY - 2018/8/1
Y1 - 2018/8/1
N2 - Cellular nutrient states control whether cells proliferate, or whether they enter or exit quiescence. Here, we report characterizations of fission yeast temperature-sensitive (ts) mutants of the evolutionarily conserved transmembrane protein Cwh43, and explore its relevance to utilization of glucose, nitrogen source and lipids. GFP-tagged Cwh43 localizes at ER associated with the nuclear envelope and the plasma membrane, as in budding yeast. We found that cwh43 mutants failed to divide in low glucose and lost viability during quiescence under nitrogen starvation. In cwh43 mutants, comprehensive metabolome analysis demonstrated dramatic changes in marker metabolites that altered under low glucose and/ or nitrogen starvation, although cwh43 cells apparently consumed glucose in the culture medium. Furthermore, we found that cwh43 mutant cells had elevated levels of triacylglycerols (TGs) and coenzyme A, and that they accumulated lipid droplets. Notably, TG biosynthesis was required to maintain cell division in the cwh43 mutant. Thus, Cwh43 affects utilization of glucose and nitrogen sources, as well as storage lipid metabolism. These results may fit a notion developed in budding yeast stating that Cwh43 conjugates ceramide to glycosylphosphatidylinositol (GPI)-anchored proteins and maintains integrity of membrane organization.
AB - Cellular nutrient states control whether cells proliferate, or whether they enter or exit quiescence. Here, we report characterizations of fission yeast temperature-sensitive (ts) mutants of the evolutionarily conserved transmembrane protein Cwh43, and explore its relevance to utilization of glucose, nitrogen source and lipids. GFP-tagged Cwh43 localizes at ER associated with the nuclear envelope and the plasma membrane, as in budding yeast. We found that cwh43 mutants failed to divide in low glucose and lost viability during quiescence under nitrogen starvation. In cwh43 mutants, comprehensive metabolome analysis demonstrated dramatic changes in marker metabolites that altered under low glucose and/ or nitrogen starvation, although cwh43 cells apparently consumed glucose in the culture medium. Furthermore, we found that cwh43 mutant cells had elevated levels of triacylglycerols (TGs) and coenzyme A, and that they accumulated lipid droplets. Notably, TG biosynthesis was required to maintain cell division in the cwh43 mutant. Thus, Cwh43 affects utilization of glucose and nitrogen sources, as well as storage lipid metabolism. These results may fit a notion developed in budding yeast stating that Cwh43 conjugates ceramide to glycosylphosphatidylinositol (GPI)-anchored proteins and maintains integrity of membrane organization.
KW - Ceramide
KW - Cwh43
KW - Fission yeast
KW - Lipid droplet
KW - Low glucose
KW - Nitrogen starvation
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U2 - 10.1242/jcs.217331
DO - 10.1242/jcs.217331
M3 - Article
C2 - 30072439
AN - SCOPUS:85052095824
SN - 0021-9533
VL - 131
JO - The Quarterly journal of microscopical science
JF - The Quarterly journal of microscopical science
IS - 16
M1 - jcs.217331
ER -