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The acyl chains of phosphoinositide PIP3 alter the structure and function of nuclear receptor steroidogenic factor-1

机译:磷酸阳性PIP3的酰基链改变了核受体甾体系重量-1的结构和功能

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摘要

Nuclear receptors are transcription factors that bind lipids, an event that induces a structural conformation of the receptor that favors interaction with transcriptional coactivators. The nuclear receptor steroidogenic factor-1 (SF-1, NR5A1) binds the signaling phosphoinositides PI(4,5)P2 (PIP2) and PI(3,4,5)P3 (PIP3), and our previous crystal structures showed how the phosphoinositide headgroups regulate SF-1 function. However, what role the acyl chains play in regulating SF-1 structure remains unaddressed. Here, we used X-ray crystallography with in vitro binding and functional assays to examine how the acyl chains of PIP3 regulate human SF-1 ligand-binding domain structure and function. Altering acyl chain length and unsaturation regulates apparent binding of all tested phosphoinositides to SF-1. Mass spectrometry–based lipidomics data suggest C16 and C18 phospholipids preferentially associate with SF-1 expressed ectopically in bacteria. We then solved the 2.5 Å crystal structure of SF-1 bound to dioleoyl PIP3(18:1/18:1) to compare it with a matched structure of SF-1 bound to dipalmitoyl PIP3(16:0/16:0). The dioleoyl-bound structure was severely disordered in a specific SF-1 region associated with pathogenic human polymorphisms and within the coactivator-binding region critical for SF-1 function while inducing increased sensitivity to protease digestion in solution. Validating these structural observations, in vitro functional studies showed dioleoyl PIP3 induced 6-fold poorer affinity of a peroxisome proliferator-activated receptor gamma coactivator 1-alpha coactivator peptide for SF-1 compared with dipalmitoyl PIP3. Together, these data suggest the chemical nature of the phosphoinositide acyl chains controls the ordered state of specific, clinically important structural regions in SF-1, regulating SF-1 function in vitro.
机译:核受体是转录因子结合的脂质,事件诱导有利于与转录共激活因子相互作用的受体的结构构象。核受体的类固醇生成因子1(SF-1,NR5A1)结合的信令磷酸肌醇PI(4,5)P2(PIP2)和PI(3,4,5)P3(PIP3),和我们以前的晶体结构表明如何磷酸肌醇头部基团调节SF-1的功能。然而,什么样的作用酰基链调节SF-1结构发挥仍然没有得到解决。在这里,我们使用X射线晶体在体外结合和功能测定法来检查PIP3的酰基链是如何调节人SF-1配体结合结构域的结构和功能。改变酰基链长和不饱和调节表观所有测试的磷酸肌醇到SF-1的结合。基于质谱的脂质组学数据表明C16和C18磷脂优先与SF-1关联在细菌中异位表达。然后,我们解决了结合到二油酰PIP3 SF-1的2.5的晶体结构(18:1/18:1)将其与结合于二棕榈酰PIP3 SF-1的一个匹配结构比较(16:0/16:0)。的二油酰 - 结合的结构中的特定致病人类多态性而诱导溶液到蛋白酶消化的敏感性增加为SF-1功能重要的共活化剂结合区域内相关联的SF-1区域被严重紊乱。验证这些结构的观察,在体外功能研究表明二油酰PIP3诱导的二棕榈酰PIP3相比,SF-1 6倍过氧化物酶体增殖物激活受体γ共激活因子1-α共活化剂肽的较差亲和性。总之,这些数据表明磷酸肌醇的化学性质的酰基链控制特定的有序状态,临床上重要的结构区在SF-1,调节体外SF-1的功能。

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