TY - JOUR
T1 - Regulation of lipid droplets by metabolically controlled Ldo isoforms
T2 - Report
AU - Teixeira, Vitor
AU - Johnsen, Lisa
AU - Martínez-Montañés, Fernando
AU - Grippa, Alexandra
AU - Buxó, Laura
AU - Idrissi, Fatima-Zahra
AU - Ejsing, Christer S
AU - Carvalho, Pedro
N1 - © 2018 Teixeira et al.
PY - 2018/1/2
Y1 - 2018/1/2
N2 - Storage and consumption of neutral lipids in lipid droplets (LDs) are essential for energy homeostasis and tightly coupled to cellular metabolism. However, how metabolic cues are integrated in the life cycle of LDs is unclear. In this study, we characterize the function of Ldo16 and Ldo45, two splicing isoforms of the same protein in budding yeast. We show that Ldo proteins interact with the seipin complex, which regulates contacts between LDs and the endoplasmic reticulum (ER). Moreover, we show that the levels of Ldo16 and Ldo45 depend on the growth stage of cells and that deregulation of their relative abundance alters LD morphology, protein localization, and triglyceride content. Finally, we show that absence of Ldo proteins results in defects in LD morphology and consumption by lipophagy. Our findings support a model in which Ldo proteins modulate the activity of the seipin complex, thereby affecting LD properties. Moreover, we identify ER-LD contacts as regulatory targets coupling energy storage to cellular metabolism.
AB - Storage and consumption of neutral lipids in lipid droplets (LDs) are essential for energy homeostasis and tightly coupled to cellular metabolism. However, how metabolic cues are integrated in the life cycle of LDs is unclear. In this study, we characterize the function of Ldo16 and Ldo45, two splicing isoforms of the same protein in budding yeast. We show that Ldo proteins interact with the seipin complex, which regulates contacts between LDs and the endoplasmic reticulum (ER). Moreover, we show that the levels of Ldo16 and Ldo45 depend on the growth stage of cells and that deregulation of their relative abundance alters LD morphology, protein localization, and triglyceride content. Finally, we show that absence of Ldo proteins results in defects in LD morphology and consumption by lipophagy. Our findings support a model in which Ldo proteins modulate the activity of the seipin complex, thereby affecting LD properties. Moreover, we identify ER-LD contacts as regulatory targets coupling energy storage to cellular metabolism.
U2 - 10.1083/jcb.201704115
DO - 10.1083/jcb.201704115
M3 - Journal article
C2 - 29187528
SN - 0021-9525
VL - 217
SP - 127
EP - 138
JO - Journal of Cell Biology
JF - Journal of Cell Biology
IS - 1
ER -