首页> 美国卫生研究院文献>Biophysical Journal >Hydrogen bond stabilities in membrane-reconstituted alamethicin from amide-resolved hydrogen-exchange measurements.
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Hydrogen bond stabilities in membrane-reconstituted alamethicin from amide-resolved hydrogen-exchange measurements.

机译:从酰胺分解的氢交换测量中膜重构的阿拉美霉素中的氢键稳定性。

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摘要

Amide-resolved hydrogen-deuterium exchange-rate constants were measured for backbone amides of alamethicin reconstituted in dioleoylphosphatidylcholine vesicles by an exchange-trapping method combined with high-resolution nuclear magnetic resonance spectroscopy. In vesicles containing alamethicin at molar ratios between 1:20 and 1:100 relative to lipid, the exchange-rate constants increased with increasing volume of the D20 buffer in which the vesicles were suspended, indicating that exchange under these conditions is dominated by partitioning of the peptide into the aqueous phase. This was supported by observation of a linear relationship between the exchange-rate constants for amides in membrane-reconstituted alamethicin and those for amides in alamethicin dissolved directly into D2O buffer. Significant protection of amides from exchange with D2O buffer in membrane-reconstituted alamethicin is interpreted in terms of stabilization by helical hydrogen bonding. Under conditions in which amide exchange occurred by partitioning of the peptide into solution, only lower limits for hydrogen-bond stabilities in the membrane were determined; all the potentially hydrogen-bonded amides of alamethicin are at least 1000-fold exchange protected in the membrane-bound state. When partitioning of alamethicin into the aqueous phase was suppressed by hydration of reconstituted vesicles in a limiting volume of water [D2O:dioleoylphosphatidylcholine:alamethicin; 220:1:0.05; (M:M:M)], the exchange-protection factors exhibited helical periodicity with highly exchange-protected, and less well-protected, amides on the nonpolar and polar helix faces, respectively. The exchange data indicate that, under the conditions studied, alamethicin adopts a stable helical structure in DOPC bilayers in which all the potentially hydrogen-bonded amides are stabilized by helical hydrogen bonds. The protection factors define the orientation of the peptide helix with respect to an aqueous phase, which is either the bulk solution or water within parallel or antiparallel transmembrane arrays of reconstituted alamethicin.
机译:通过交换俘获方法结合高分辨率核磁共振波谱法,测定了在二油酰磷脂酰胆碱囊泡中重构的Alamethicin主链酰胺的酰胺分辨氢-氘交换速率常数。在含有相对于脂质的摩尔比为1:20至1:100的阿乐美辛的囊泡中,交换速率常数随悬浮于囊泡中的D20缓冲液体积的增加而增加,这表明在这些条件下的交换作用主要是通过分配肽进入水相。通过观察膜重构的阿乐霉素中酰胺的交换速率常数与直接溶于D2O缓冲液中的阿乐霉素中酰胺的交换速率常数之间的线性关系,可以证明这一点。从通过螺旋氢键的稳定作用的角度来解释对酰胺的重要保护,以防止其与D2O缓冲液交换。在通过将肽分配到溶液中发生酰胺交换的条件下,仅确定了膜中氢键稳定性的下限;在膜结合状态下,alamethicin的所有可能与氢键合的酰胺都受到至少1000倍的交换保护。当通过在有限体积的水中[D2O:二油酰基磷脂酰胆碱:丙氨苄青霉素;水]中重构的囊泡水合来抑制丙氨苄青霉素分配到水相中时。 220:1:0.05; (M:M:M)],交换保护因子表现出螺旋周期性,在非极性和极性螺旋面上分别具有高度交换保护和保护程度较低的酰胺。交换数据表明,在所研究的条件下,乐果霉素在DOPC双层中采用稳定的螺旋结构,其中所有潜在的氢键合酰胺均通过螺旋氢键稳定。保护因子定义了肽螺旋相对于水相的方向,该水相是重构的阿乐霉素的平行或反平行跨膜阵列中的整体溶液或水。

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