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Secondary structure analysis of the putative membrane-associated domains of the inward rectifier K+ channel ROMK1

机译:内向整流器K +通道ROMK1的推定膜相关域的二级结构分析

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摘要

The inward rectifier K+ channels contain two putative membrane-spanning domains per subunit (M1, M2) and a 'pore' (P) region, which is similar to the H5 domain of voltage-gated K+ channels. Here we have used Fourier transform infrared (FTIR) and CD spectroscopy to analyse the secondary structures of synthetic peptides corresponding to the M1, M2 and P regions of ROMK1 in aqueous solution, in organic solvents and in phospholipid membranes. A previous CD study was unable to provide any structural data on a similar P peptide [Ben-Efraim and Shai (1997) Biophys. J. 72, 85-96]. However, our FTIR and CD spectroscopic analyses indicate that this peptide adopts an alpha-helical structure when reconstituted into dimyristoyl phosphatidylcholine vesicles and lysophosphatidyl choline (LPC) micelles as well as in trifluoroethanol (TFE) solvent. This result is in good agreement with a previous study on a peptide corresponding to the pore domain of a voltage-gated K+ channel [Haris, Ramesh, Sansom, Kerr, Srai and Chapman (1994) Protein Eng. 7, 255-262]. FTIR spectra of the M1 peptide in LPC micelles displayed a strong absorbance characteristic of an intermolecular beta-sheet structure, suggesting aggregation of the M1 peptide. Sucrose gradient centrifugation was used to separate aggregated peptide from peptide incorporated into micelles in an unaggregated manner; subsequent analysis by FTIR suggested that the M1 peptide adopted an alpha-helical structure when incorporated into phospholipid membranes. FTIR and CD spectra of the M2 peptide in phospholipids and high concentrations of TFE suggest that this peptide adopts an alpha-helical structure. The structural data obtained in these experiments have been used to propose a model for the structure of the membrane-associated core (M1-P-M2) of the inward rectifier K+ channel protein. [References: 32]
机译:内向整流器K +通道每个亚基(M1,M2)包含两个推定的跨膜结构域和一个“孔”(P)区,该区域类似于电压门控K +通道的H5域。在这里,我们已经使用傅里叶变换红外(FTIR)和CD光谱分析了与ROMK1的M1,M2和P区相对应的合成肽的二级结构,该肽在水溶液,有机溶剂和磷脂膜中。先前的CD研究无法提供类似P肽的任何结构数据[Ben-Efraim和Shai(1997)Biophys。 J. 72,85-96]。但是,我们的FTIR和CD光谱分析表明,该肽在重构为二肉豆蔻酰基磷脂酰胆碱囊泡和溶血磷脂酰胆碱(LPC)胶束以及在三氟乙醇(TFE)溶剂中时,会采用α螺旋结构。该结果与先前对对应于电压门控的K +通道的孔结构域的肽的研究[Haris,Ramesh,Sansom,Kerr,Srai和Chapman(1994)Protein Eng.Biol.Acad.Sci.USA,95:1593-1959]。 7,255-262]。 LPC胶束中M1肽的FTIR光谱显示了分子间β-折叠结构的强吸收特性,表明M1肽聚集。用蔗糖梯度离心法以未聚集的方式从掺入胶束的肽中分离出聚集的肽。 FTIR随后的分析表明,当掺入磷脂膜时,M1肽采用α螺旋结构。 M2肽在磷脂中的FTIR和CD光谱以及高浓度的TFE表明该肽采用α-螺旋结构。在这些实验中获得的结构数据已被用来为内向整流器K +通道蛋白的膜相关核心(M1-P-M2)的结构提出模型。 [参考:32]

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