首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Differences in the Structure and Dynamics of the Apo- and Palmitate-ligated Forms of Aedes aegypti Sterol Carrier Protein 2 (AeSCP-2)
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Differences in the Structure and Dynamics of the Apo- and Palmitate-ligated Forms of Aedes aegypti Sterol Carrier Protein 2 (AeSCP-2)

机译:埃及伊蚊固醇载体蛋白2(AeSCP-2)的Apo-和棕榈酸酯连接形式的结构和动力学差异

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摘要

Sterol carrier protein-2 (SCP-2) is a nonspecific lipid-binding protein expressed ubiquitously in most organisms. Knockdown of SCP-2 expression in mosquitoes has been shown to result in high mortality in developing adults and significantly lowered fertility. Thus, it is of interest to determine the structure of mosquito SCP-2 and to identify its mechanism of lipid binding. We report here high quality three-dimensional solution structures of SCP-2 from Aedes aegypti determined by NMR spectroscopy in its ligand-free state (AeSCP-2) and in complex with palmitate. Both structures have a similar mixed α/β fold consisting of a five-stranded β-sheet and four α-helices arranged on one side of the β-sheet. Ligand-free AeSCP-2 exhibited regions of structural heterogeneity, as evidenced by multiple two-dimensional 15N heteronuclear single-quantum coherence peaks for certain amino acids; this heterogeneity disappeared upon complex formation with palmitate. The binding of palmitate to AeSCP-2 was found to decrease the backbone mobility of the protein but not to alter its secondary structure. Complex formation is accompanied by chemical shift differences and a loss of mobility for residues in the loop between helix αI and strand βA. The structural differences between the αI and βA of the mosquito and the vertebrate SCP-2s may explain the differential specificity (insect versus vertebrate) of chemical inhibitors of the mosquito SCP-2.
机译:甾醇载体蛋白2(SCP-2)是在大多数生物中普遍表达的非特异性脂质结合蛋白。敲除蚊子中的SCP-2表达已显示可导致成年发展中国家的高死亡率,并显着降低其生育能力。因此,确定蚊子SCP-2的结构并确定其脂质结合机制是很有意义的。我们在这里报告了由埃及伊蚊(Aedes aegypti)形成的高质量三维二维溶液结构,该结构由NMR光谱测定,处于无配体状态(AeSCP-2)且与棕榈酸酯复合。两种结构都具有相似的混合α/β折叠,由五链β-折叠和排列在β-折叠一侧的四个α-螺旋组成。无配体的AeSCP-2表现出结构异质性区域,某些氨基酸的多个二维 15 N异核单量子相干峰证明了这一点。与棕榈酸酯形成复合物后,这种异质性消失了。发现棕榈酸酯与AeSCP-2的结合降低了蛋白质的骨架移动性,但没有改变其二级结构。复合物的形成伴随着化学位移的差异以及螺旋αI和βA链之间环中残基的迁移率损失。蚊子和脊椎动物SCP-2的αI和βA之间的结构差异可能解释了蚊子SCP-2的化学抑制剂的差异特异性(昆虫与脊椎动物)。

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