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SANS 揭示了来自 H. volcanii 的跨膜天冬氨酸蛋白酶的脂依赖性寡聚化。

SANS reveals lipid-dependent oligomerization of an intramembrane aspartyl protease from H. volcanii.

机构信息

School of Chemistry & Biochemistry, Georgia Institute of Technology, Atlanta, Georgia.

Neutron Scattering Division, Oak Ridge National Laboratory, Oak Ridge, Tennessee.

出版信息

Biophys J. 2024 Jul 2;123(13):1846-1856. doi: 10.1016/j.bpj.2024.05.029. Epub 2024 Jun 1.

Abstract

Reactions that occur within the lipid membrane involve, at minimum, ternary complexes among the enzyme, substrate, and lipid. For many systems, the impact of the lipid in regulating activity or oligomerization state is poorly understood. Here, we used small-angle neutron scattering (SANS) to structurally characterize an intramembrane aspartyl protease (IAP), a class of membrane-bound enzymes that use membrane-embedded aspartate residues to hydrolyze transmembrane segments of biologically relevant substrates. We focused on an IAP ortholog from the halophilic archaeon Haloferax volcanii (HvoIAP). HvoIAP purified in n-dodecyl-β-D-maltoside (DDM) fractionates on size-exclusion chromatography (SEC) as two fractions. We show that, in DDM, the smaller SEC fraction is consistent with a compact HvoIAP monomer. Molecular dynamics flexible fitting conducted on an AlphaFold2-generated monomer produces a model in which loops are compact alongside the membrane-embedded helices. In contrast, SANS data collected on the second SEC fraction indicate an oligomer consistent with an elongated assembly of discrete HvoIAP monomers. Analysis of in-line SEC-SANS data of the HvoIAP oligomer, the first such experiment to be conducted on a membrane protein at Oak Ridge National Lab (ORNL), shows a diversity of elongated and spherical species, including one consistent with the tetrameric assembly reported for the Methanoculleus marisnigri JR1 IAP crystal structure not observed previously in solution. Reconstitution of monomeric HvoIAP into bicelles increases enzyme activity and results in the assembly of HvoIAP into a species with similar dimensions as the ensemble of oligomers isolated from DDM. Our study reveals lipid-mediated HvoIAP self-assembly and demonstrates the utility of in-line SEC-SANS in elucidating oligomerization states of small membrane proteins.

摘要

脂质膜内的反应至少涉及酶、底物和脂质之间的三元复合物。对于许多系统,脂质在调节活性或寡聚状态方面的影响尚未得到充分理解。在这里,我们使用小角中子散射(SANS)对一种跨膜天冬氨酸蛋白酶(IAP)进行结构表征,IAP 是一类膜结合酶,利用膜嵌入的天冬氨酸残基水解生物相关底物的跨膜片段。我们专注于来自嗜盐古菌 Haloferax volcanii(HvoIAP)的 IAP 同源物。在正十二烷基-β-D-麦芽糖苷(DDM)中纯化的 HvoIAP 在尺寸排阻层析(SEC)上按两个分数进行分级。我们表明,在 DDM 中,较小的 SEC 分数与紧凑的 HvoIAP 单体一致。在 AlphaFold2 生成的单体上进行的分子动力学灵活拟合产生了一个模型,其中环与嵌入膜的螺旋紧密排列。相比之下,在 SEC 第二部分收集的 SANS 数据表明,寡聚体与离散 HvoIAP 单体的拉长组装一致。对 HvoIAP 寡聚体的在线 SEC-SANS 数据的分析,这是在橡树岭国家实验室(ORNL)对膜蛋白进行的首次此类实验,表明存在多种拉长和球形物种,包括一种与 Methanoculleus marisnigri JR1 IAP 晶体结构中报道的四聚体组装一致的物种,而之前在溶液中未观察到。将单体 HvoIAP 重新组装到双体中可提高酶活性,并导致 HvoIAP 组装成与从 DDM 中分离的寡聚体集合相似尺寸的物种。我们的研究揭示了脂质介导的 HvoIAP 自组装,并证明了在线 SEC-SANS 在阐明小膜蛋白寡聚状态方面的效用。

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