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疏水性肽通道和封装的水线。

Hydrophobic peptide channels and encapsulated water wires.

机构信息

Department of Physics, Indian Institute of Science, Bangalore 560012, India.

出版信息

J Am Chem Soc. 2010 Jan 27;132(3):1075-86. doi: 10.1021/ja9083978.

Abstract

Peptide nanotubes with filled and empty pores and close-packed structures are formed in closely related pentapeptides. Enantiomorphic sequences, Boc-(D)Pro-Aib-Xxx-Aib-Val-OMe (Xxx = Leu, 1; Val, 2; Ala, 3; Phe, 4) and Boc-Pro-Aib-(D)Xxx-Aib-(D)Val-OMe ((D)Xxx = (D)Leu, 5; (D)Val, 6; (D)Ala, 7; (D)Phe, 8), yield molecular structures with a very similar backbone conformation but varied packing patterns in crystals. Peptides 1, 2, 5, and 6 show tubular structures with the molecules self-assembling along the crystallographic six-fold axis (c-axis) and revealing a honeycomb arrangement laterally (ab plane). Two forms of entrapped water wires have been characterized in 2: 2a with d(O...O) = 2.6 A and 2b with d(O...O) = 3.5 A. The latter is observed in 6 (6a) also. A polymorphic form of 6 (6b), grown from a solution of methanol-water, was observed to crystallize in a monoclinic system as a close-packed structure. Single-file water wire arrangements encapsulated inside hydrophobic channels formed by peptide nanotubes could be established by modeling the published structures in the cases of a cyclic peptide and a dipeptide. In all the entrapped water wires, each water molecule is involved in a hydrogen bond with a previous and succeeding water molecule. The O-H group of the water not involved in any hydrogen bond does not seem to be involved in an energetically significant interaction with the nanotube interior, a general feature of the one-dimensional water wires encapsulated in hydrophobic environments. Water wires in hydrophobic channels are contrasted with the single-file arrangements in amphipathic channels formed by aquaporins.

摘要

具有填充和空孔以及紧密堆积结构的肽纳米管在密切相关的五肽中形成。对映体序列 Boc-(D)Pro-Aib-Xxx-Aib-Val-OMe(Xxx=Leu,1;Val,2;Aib,3;Phe,4)和 Boc-Pro-Aib-(D)Xxx-Aib-(D)Val-OMe((D)Xxx=(D)Leu,5;(D)Val,6;(D)Ala,7;(D)Phe,8)在晶体中产生具有非常相似的主链构象但不同堆积模式的分子结构。肽 1、2、5 和 6 显示管状结构,分子沿着晶体六重轴(c 轴)自组装,并在横向(ab 平面)显示蜂窝状排列。在 2 中已经鉴定出两种形式的束缚水线:2a 中 d(O...O)=2.6A 和 2b 中 d(O...O)=3.5A。后者也在 6(6a)中观察到。从甲醇-水溶液中生长的 6(6b)的多晶型形式被观察到以紧密堆积结构结晶在单斜晶系中。通过对环状肽和二肽的发表结构进行建模,可以确定封装在由肽纳米管形成的疏水性通道内的单链水线排列。在所有束缚水线中,每个水分子都与前一个和后一个水分子形成氢键。未参与任何氢键的水分子的 O-H 基团似乎不与纳米管内部发生能量显著相互作用,这是在疏水环境中封装的一维水线的一般特征。疏水通道中的水线与由水通道蛋白形成的两亲性通道中的单链排列形成对比。

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