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Stereochemical Studies on Cyclic Peptides. IX. Conformational Studies on Cyclic Tetrapeptides Containing Alternating cis and trans Peptide Units

机译:环状肽的立体化学研究。九。包含交替的顺式和反式肽单元的环状四肽的构象研究

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摘要

Conformational analyses of cyclic tetrapeptides consisting of alternating cis and trans peptide units have been made using contact criteria and energy calculations. This study has been restricted to those structures having a symmetry element in the backbone ring, such as a twofold axis (d) or a center of inversion (i). There are five main results. (1) There are two distinct types of conformations, which are stereochemically favorable corresponding to each of twofold and inversion-symmetrical structures, designated as $d_1, d_2$ (for twofold symmetrical) and $i_1, i_2$ (for inversion-symmetrical). Among these, the $i_1$ type has the lowest energy when glycyl residues occur at all four lpha -carbon atoms. (2) With the glycyl residue at all four lpha -carbon atoms, methyl substitution at the cis peptide nitrogen atoms is possible in all the four types, whereas the substitution at trans peptide nitrogen atoms is possible only for the $i_1$ type. Thus only in the $i_1$ type can all the nitrogen atoms be methylated simultaneously. The conformation of the molecule in the crystal structure of cyclotetrasarcosyl belongs to the $i_1$ type. (3) When alanyl residues occur at all four lpha -carbon atoms, the possible symmetrical type is dependent on the enantiomorphic form and the actual sequence of the alanyl residues. (4) The methyl substitution at peptide nitrogen atoms for cyclic tetrapeptides having alanyl residues causes more stereochemical restriction in the allowed conformations than with glycyl residues. (5) The prolyl residue can be incorporated favorably at the cis-trans junction of both d and i types of structures. The results of the present study are compared with the data on cyclic tetrapeptides available from the crystal structure and nmr studies. The results show an overall agreement both regarding the type of symmetry and the conformational parameters.
机译:使用接触标准和能量计算,对由交替的顺式和反式肽单元组成的环状四肽进行了构象分析。这项研究仅限于那些在骨架环中具有对称元素的结构,例如双轴(d)或反转中心(i)。有五个主要结果。 (1)有两种截然不同的构象类型,分别对应于双重和反向对称结构的立体化学构型,分别命名为$ d_1,d_2 $(对于双重对称)和$ i_1,i_2 $(对于反向对称) 。其中,当甘氨酸残基出现在所有四个α-碳原子上时,$ i_1 $型能量最低。 (2)在所有四个α-碳原子上都有甘氨酰基残基时,在所有四种类型中都可以在顺式肽氮原子上进行甲基取代,而仅在$ i_1 $类型中可以在反式肽氮原子处进行取代。因此,只有在$ i_1 $类型中,所有氮原子才能同时被甲基化。环四糖基晶体结构中分子的构象属于$ i_1 $型。 (3)当在所有四个α-碳原子上都出现丙氨酰基残基时,可能的对称类型取决于丙氨酰基残基的对映体形式和实际序列。 (4)具有丙氨酰基残基的环状四肽在肽氮原子上的甲基取代比甘氨酰基残基在允许的构象上引起更多的立体化学限制。 (5)脯氨酰残基可以有利地结合在d和i型结构的顺式-反式连接处。将本研究的结果与可从晶体结构和nmr研究获得的环状四肽数据进行比较。结果显示关于对称类型和构象参数的总体一致性。

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    Manjula G; Ramakrishnan C;

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  • 年度 1979
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