The crystal structure of sterol carrier protein 2 from Yarrowia lipolytica and the evolutionary conservation of a large, non-specific lipid-binding cavity.

Federico Perez De Berti, Stefano Capaldi, Raúl Ferreyra, Noelia Burgardt, Juan P Acierno, Sebastián Klinke, Hugo L Monaco, Mario R Ermácora
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引用次数: 10

Abstract

Sterol carrier protein 2 (SCP2), a small intracellular domain present in all forms of life, binds with high affinity a broad spectrum of lipids. Due to its involvement in the metabolism of long-chain fatty acids and cholesterol uptake, it has been the focus of intense research in mammals and insects; much less characterized are SCP2 from other eukaryotic cells and microorganisms. We report here the X-ray structure of Yarrowia lipolytica SCP2 (YLSCP2) at 2.2 Å resolution in complex with palmitic acid. This is the first fungal SCP2 structure solved, and it consists of the canonical five-stranded β-sheet covered on the internal face by a layer of five α-helices. The overall fold is conserved among the SCP2 family, however, YLSCP2 is most similar to the SCP2 domain of human MFE-2, a bifunctional enzyme acting on peroxisomal β-oxidation. We have identified the common structural elements defining the shape and volume of the large binding cavity in all species characterized. Moreover, we found that the cavity of the SCP2 domains is distinctly formed by carbon atoms, containing neither organized water nor rigid polar interactions with the ligand. These features are in contrast with those of fatty acid binding proteins, whose internal cavities are more polar and contain bound water. The results will help to design experiments to unveil the SCP2 function in very different cellular contexts and metabolic conditions.

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脂质体耶氏菌甾醇载体蛋白2的晶体结构及一个大型非特异性脂质结合腔的进化保护
甾醇载体蛋白2 (SCP2)是存在于所有生命形式中的一个小的细胞内结构域,与广泛的脂质具有高亲和力。由于它参与长链脂肪酸的代谢和胆固醇的摄取,它一直是哺乳动物和昆虫研究的重点;来自其他真核细胞和微生物的SCP2的特征要少得多。我们在这里报道了脂性耶氏菌SCP2 (YLSCP2)在2.2 Å分辨率下与棕榈酸配合物的x射线结构。这是第一个被解决的真菌SCP2结构,它由典型的五链β-片组成,在内部表面覆盖了一层五个α-螺旋。SCP2家族的整体折叠是保守的,然而,YLSCP2与人MFE-2的SCP2结构域最为相似,MFE-2是一种作用于过氧化物酶体β-氧化的双功能酶。我们已经确定了共同的结构元素,定义了所有物种的大结合腔的形状和体积。此外,我们发现SCP2结构域的空腔明显是由碳原子形成的,既不包含有组织的水,也不包含与配体的刚性极性相互作用。这些特征与脂肪酸结合蛋白形成对比,脂肪酸结合蛋白的内部空腔更具极性并含有结合水。这些结果将有助于设计实验来揭示SCP2在非常不同的细胞环境和代谢条件下的功能。
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