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Comparative Study of the Fatty Acid Binding Process of a New FABP from Cherax quadricarinatus by Fluorescence Intensity, Lifetime and Anisotropy

机译:荧光强度,寿命和各向异性对Cerax quadricarinatus新型FABP脂肪酸结合过程的比较研究

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摘要

Fatty acid-binding proteins (FABPs) are small cytosolic proteins, largely distributed in invertebrates and vertebrates, which accomplish uptake and intracellular transport of hydrophobic ligands such as fatty acids. Although long chain fatty acids play multiple crucial roles in cellular functions (structural, energy metabolism, regulation of gene expression), the precise functions of FABPs, especially those of invertebrate species, remain elusive. Here, we have identified and characterized a novel FABP family member, Cq-FABP, from the hepatopancreas of red claw crayfish Cherax quadricarinatus. We report the characterization of fatty acid-binding affinity of Cq-FABP by four different competitive fluorescence-based assays. In the two first approaches, the fluorescent probe 8-Anilino-1-naphthalenesulfonate (ANS), a binder of internal cavities of protein, was used either by directly monitoring its fluorescence emission or by monitoring the fluorescence resonance energy transfer occurring between the single tryptophan residue of Cq-FABP and ANS. The third and the fourth approaches were based on the measurement of the fluorescence emission intensity of the naturally fluorescent cis-parinaric acid probe or the steady-state fluorescence anisotropy measurements of a fluorescently labeled fatty acid (BODIPY-C16), respectively. The four methodologies displayed consistent equilibrium constants for a given fatty acid but were not equivalent in terms of analysis. Indeed, the two first methods were complicated by the existence of non specific binding modes of ANS while BODIPY-C16 and cis-parinaric acid specifically targeted the fatty acid binding site. We found a relationship between the affinity and the length of the carbon chain, with the highest affinity obtained for the shortest fatty acid, suggesting that steric effects primarily influence the interaction of fatty acids in the binding cavity of Cq-FABP. Moreover, our results show that the binding affinities of several fatty acids closely parallel their prevalences in the hepatopancreas of C. quadricarinatus as measured under specific diet conditions.
机译:脂肪酸结合蛋白(FABP)是小的胞质蛋白,主要分布在无脊椎动物和脊椎动物中,可以完成疏水性配体(如脂肪酸)的摄取和细胞内运输。尽管长链脂肪酸在细胞功能(结构,能量代谢,基因表达的调节)中起着至关重要的作用,但FABP的确切功能,尤其是无脊椎动物的功能,仍然难以捉摸。在这里,我们从红爪小龙虾Cherax quadricarinatus的肝胰腺中鉴定并鉴定了一个新的FABP家族成员Cq-FABP。我们通过四个不同的基于竞争荧光的分析报告了Cq-FABP的脂肪酸结合亲和力的表征。在前两种方法中,通过直接监测其荧光发射或通过监测单个色氨酸之间发生的荧光共振能量转移来使用荧光探针8-Anilino-1-萘磺酸盐(ANS)(一种蛋白内部空腔的结合剂) Cq-FABP和ANS的残基。第三和第四种方法分别基于自然荧光顺式-头皮酸探针的荧光发射强度的测量或荧光标记脂肪酸(BODIPY-C16)的稳态荧光各向异性测量。四种方法对于给定的脂肪酸显示出一致的平衡常数,但在分析方面并不相同。实际上,由于ANS的非特异性结合模式的存在而使前两种方法变得复杂,而BODIPY-C16和顺式腮腺酸特异地靶向脂肪酸结合位点。我们发现亲和力与碳链长度之间的关系,对于最短的脂肪酸具有最高的亲和力,这表明空间效应主要影响脂肪酸在Cq-FABP结合腔中的相互作用。此外,我们的结果表明,在特定饮食条件下测得,几种脂肪酸的结合亲和力与它们在四边形梭菌肝胰脏中的流行密切相关。

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