Han Sungwon, Binns Derk D, Chang Yu-Fang, Goodman Joel M
Department of Pharmacology, University of Texas Southwestern Medical School, Dallas, TX, 75390-9041, USA.
Department of Molecular Biology and Genetics, Cornell University, Ithaca, NY, 14853-2703, USA.
BMC Cell Biol. 2015 Dec 4;16:29. doi: 10.1186/s12860-015-0075-3.
Seipin is required for the correct assembly of cytoplasmic lipid droplets. In the absence of the yeast seipin homolog Sei1p (formerly Fld1p), droplets are slow to bud from the endoplasmic reticulum, lack the normal component of proteins on their surface, are highly heterogeneous in size and shape, often bud into the nucleus, and promote local proliferation of the endoplasmic reticulum in which they become tangled. But the mechanism by which seipin catalyzes lipid droplet formation is still uncertain.
Seipin prevents a localized accumulation of phosphatidic acid (PA puncta) at ER-droplet junctions. PA puncta were detected with three different probes: Opi1p, Spo20p(51-91) and Pah1p. A system of droplet induction was used to show that PA puncta were not present until droplets were formed; the puncta appeared regardless of whether droplets consisted of triacylglycerol or steryl ester. Deletion strains were used to demonstrate that a single phosphatidic acid-producing enzyme is not responsible for the generation of the puncta, and the puncta remain resistant to overexpression of enzymes that metabolize phosphatidic acid, suggesting that this lipid is trapped in a latent compartment. Suppression of PA puncta requires the first 14 amino acids of Sei1p (Nterm), a domain that is also important for initiation of droplet assembly. Consistent with recent evidence that Ldb16p and Sei1p form a functional unit, the PA puncta phenotype in the ldb16Δ sei1Δ strain was rescued by human seipin. Moreover, PA puncta in the sei1Δ strain expressing Sei1p(ΔNterm) was suppressed by overexpression of Ldb16p, suggesting a functional interaction of Nterm with this protein. Overexpression of both Sei1p and Ldb16p, but not Sei1p alone, is sufficient to cause a large increase in droplet number. However, Ldb16p alone increases triacylglycerol accumulation in the ldb16Δ sei1Δ background.
We hypothesize that seipin prevents formation of membranes with extreme curvature at endoplasmic reticulum/droplet junctions that would attract phosphatidic acid. While Ldb16p alone can affect triacylglycerol accumulation, proper droplet formation requires the collaboration of Sei1p and Ldb16.
内质网脂滴的正确组装需要seipin。在缺乏酵母seipin同源物Sei1p(以前称为Fld1p)的情况下,脂滴从内质网出芽缓慢,表面缺乏正常的蛋白质成分,大小和形状高度异质,经常出芽进入细胞核,并促进它们缠绕其中的内质网局部增殖。但是seipin催化脂滴形成的机制仍不确定。
Seipin可防止磷脂酸(PA点)在内质网-脂滴连接处局部积累。使用三种不同的探针检测到PA点:Opi1p、Spo20p(51-91)和Pah1p。使用脂滴诱导系统表明,直到脂滴形成才出现PA点;无论脂滴由三酰甘油还是甾醇酯组成,都会出现这些点。使用缺失菌株证明单一的磷脂酸产生酶并不负责这些点的产生,并且这些点对代谢磷脂酸的酶的过表达具有抗性,这表明这种脂质被困在一个潜在的区室中。抑制PA点需要Sei1p的前14个氨基酸(N端),该结构域对脂滴组装的起始也很重要。与最近的证据一致,即Ldb16p和Sei1p形成一个功能单元,人seipin挽救了ldb16Δ sei1Δ菌株中的PA点表型。此外,表达Sei1p(ΔN端)的sei1Δ菌株中的PA点通过Ldb16p的过表达得到抑制,这表明N端与该蛋白存在功能相互作用。Sei1p和Ldb16p两者的过表达,但单独的Sei1p不行,足以导致脂滴数量大幅增加。然而,单独的Ldb16p会增加ldb16Δ sei1Δ背景下的三酰甘油积累。
我们假设seipin可防止在内质网/脂滴连接处形成会吸引磷脂酸的具有极端曲率的膜。虽然单独的Ldb16p可以影响三酰甘油的积累,但正确的脂滴形成需要Sei1p和Ldb16的协作。