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清道夫受体介导了SUMO和Ftz-f1在果蝇类固醇生成中的作用。

Scavenger receptors mediate the role of SUMO and Ftz-f1 in Drosophila steroidogenesis.

作者信息

Talamillo Ana, Herboso Leire, Pirone Lucia, Pérez Coralia, González Monika, Sánchez Jonatan, Mayor Ugo, Lopitz-Otsoa Fernando, Rodriguez Manuel S, Sutherland James D, Barrio Rosa

机构信息

CIC bioGUNE, Derio, Bizkaia, Spain.

出版信息

PLoS Genet. 2013 Apr;9(4):e1003473. doi: 10.1371/journal.pgen.1003473. Epub 2013 Apr 18.

Abstract

SUMOylation participates in ecdysteroid biosynthesis at the onset of metamorphosis in Drosophila melanogaster. Silencing the Drosophila SUMO homologue smt3 in the prothoracic gland leads to reduced lipid content, low ecdysone titers, and a block in the larval-pupal transition. Here we show that the SR-BI family of Scavenger Receptors mediates SUMO functions. Reduced levels of Snmp1 compromise lipid uptake in the prothoracic gland. In addition, overexpression of Snmp1 is able to recover lipid droplet levels in the smt3 knockdown prothoracic gland cells. Snmp1 expression depends on Ftz-f1 (an NR5A-type orphan nuclear receptor), the expression of which, in turn, depends on SUMO. Furthermore, we show by in vitro and in vivo experiments that Ftz-f1 is SUMOylated. RNAi-mediated knockdown of ftz-f1 phenocopies that of smt3 at the larval to pupal transition, thus Ftz-f1 is an interesting candidate to mediate some of the functions of SUMO at the onset of metamorphosis. Additionally, we demonstrate that the role of SUMOylation, Ftz-f1, and the Scavenger Receptors in lipid capture and mobilization is conserved in other steroidogenic tissues such as the follicle cells of the ovary. smt3 knockdown, as well as ftz-f1 or Scavenger knockdown, depleted the lipid content of the follicle cells, which could be rescued by Snmp1 overexpression. Therefore, our data provide new insights into the regulation of metamorphosis via lipid homeostasis, showing that Drosophila Smt3, Ftz-f1, and SR-BIs are part of a general mechanism for uptake of lipids such as cholesterol, required during development in steroidogenic tissues.

摘要

SUMO化参与黑腹果蝇变态发育开始时的蜕皮激素生物合成。在胸腺中沉默果蝇SUMO同源物smt3会导致脂质含量降低、蜕皮激素滴度降低以及幼虫-蛹转变受阻。在这里,我们表明清道夫受体的SR-BI家族介导SUMO功能。Snmp1水平降低会损害胸腺中的脂质摄取。此外,Snmp1的过表达能够恢复smt3基因敲低的胸腺细胞中的脂滴水平。Snmp1的表达依赖于Ftz-f1(一种NR5A型孤儿核受体),而Ftz-f1的表达又依赖于SUMO。此外,我们通过体外和体内实验表明Ftz-f1被SUMO化。RNAi介导的ftz-f1基因敲低在幼虫到蛹的转变过程中模拟了smt3的基因敲低,因此Ftz-f1是在变态发育开始时介导SUMO某些功能的一个有趣候选者。此外,我们证明SUMO化、Ftz-f1和清道夫受体在脂质捕获和动员中的作用在其他类固醇生成组织如卵巢的卵泡细胞中是保守的。smt3基因敲低以及ftz-f1或清道夫受体基因敲低会耗尽卵泡细胞的脂质含量,而Snmp1的过表达可以挽救这种情况。因此,我们的数据为通过脂质稳态调节变态发育提供了新的见解,表明果蝇Smt3、Ftz-f1和SR-BIs是类固醇生成组织发育过程中所需的胆固醇等脂质摄取的一般机制的一部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0dee/3630131/1cf935d46767/pgen.1003473.g001.jpg

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