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首页> 外文期刊>Biochemistry >Fatty-Acid-Binding Protein from the Flight Muscle of Locusta migratoria: Evolutionary Variations in Fatty Acid Binding
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Fatty-Acid-Binding Protein from the Flight Muscle of Locusta migratoria: Evolutionary Variations in Fatty Acid Binding

机译:偏斜蝗的飞行肌肉中的脂肪酸结合蛋白:脂肪酸结合的进化变异。

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Intracellular lipid-binding proteins have evolved from a common ancestral gene with the appearance of mitochondrial oxidation,to guarantee,for example,transport of fatty acids through the aqueous cytosol to their site of utilization.The mammalian forms of these lipid carriers are structurally well-characterized and have been categorized,on the basis of sequence similarities and several typical ligand-binding features,into four subfamilies.Only a single complex structure of an invertebrate fatty-acid-binding protein (FABP) has been reported to date,which reveals a unique ligand-binding arrangement yet unknown in vertebrate FABPs.In the present study,the structure of a second invertebrate FABP (locust muscle) complexed with a fatty acid has been determined on the basis of intermolecular NOE connectivities between the protein and the uniformly ~(13)C-enriched oleate ligand.The resulting ligand conformation,although resembling the closely related mammalian heart- and adipocyte-type FABPs,is characterized by certain binding features that differ significantly from the typical hairpin-turn ligand shapes of the latter forms.This is primarily due to an alanine-to-leucine substitution in locust FABPs that produces a steric hindrance for ligand binding.A comparison with an FABP from tobacco hornworm larvae furthermore demonstrates that certain amino acid substitutions that appear to be specific for invertebrates decidedly influence the binding arrangement inside the protein cavity.Hence,as a result of these evolutionary variations,invertebrate FABPs may display a much greater diversity in intracellular lipid binding than observed for the mammalian transport proteins,thus possibly providing new insights for the design of modified lipid carriers.
机译:细胞内脂质结合蛋白已从常见的祖先基因演化而来,具有线粒体氧化的外观,以确保(例如)脂肪酸通过水性细胞溶质转运至其利用位点。这些脂质载体的哺乳动物形式在结构上非常好-根据序列相似性和几种典型的配体结合特征,对它们进行了表征和分类,分为四个亚科。迄今为止,仅报道了一种无脊椎动物脂肪酸结合蛋白(FABP)的单一复杂结构,这揭示了独特的配体结合排列方式在脊椎动物FABPs中尚不清楚。在本研究中,已基于蛋白质与均一〜(〜)之间的分子间NOE连接性确定了第二个与脂肪酸复合的无脊椎动物FABP(刺槐肌肉)的结构。 13)富含C的油酸酯配体。虽然与哺乳动物的心脏和脂肪细胞型FABPs密切相关,但所得配体构象其特征是某些结合特征与后一种形式的典型的发夹转配体形状显着不同,这主要是由于刺槐FABP中丙氨酸至亮氨酸的取代产生了对配体结合的空间位阻。烟草from虫幼虫的FABP进一步证明,某些无脊椎动物特有的氨基酸取代决定性地影响了蛋白腔内的结合排列。因此,由于这些进化的变化,无脊椎动物FABP可能在细胞内脂质中表现出更大的多样性与哺乳动物转运蛋白所观察到的结合相比,这可能为修饰脂质载体的设计提供新的见解。

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