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首页> 外文期刊>Bioorganic and Medicinal Chemistry >The interaction of glycine, aspartic acid, and lysine by the protonated macrocyclic ligand 6,19-bis(2-hydroxypropyl)-3,6,9,16,19,22-hexaaza-tricyclo-(22.2.2.2(11,14) )triaconta-11,13,24,26,27,29-hexaene.
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The interaction of glycine, aspartic acid, and lysine by the protonated macrocyclic ligand 6,19-bis(2-hydroxypropyl)-3,6,9,16,19,22-hexaaza-tricyclo-(22.2.2.2(11,14) )triaconta-11,13,24,26,27,29-hexaene.

机译:质子化大环配体6,19-双(2-羟丙基)-3,6,9,16,19,22-六氮杂-三环-(22.2.2.2(11,14)对甘氨酸,天冬氨酸和赖氨酸的相互作用))triaconta-11,13,24,26,27,29-己烯。

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摘要

A new hexaaza macrocyclic ligand (L) bearing two 2-hydroxypropyl pendants, 6,19-bis(2-hydroxypropyl)-3,6,9,16,19,22-hexaaza-tricyclo-[22.2.2.2(11,14) ]triaconta-11,13,24,26,27,29-hexaene has been synthesized and characterized. The macrocyclic ligand was isolated as a colorless crystal, monoclinic, P2(1), with a=10.757(2), b=14.214(3), c=13.746(3) A, beta=101.40(3) degrees, V=2060.3(7) A3, Z=2, R1=0.0695, and wR2=0.1538 [I>2sigma(I)]. Potentiometric studies of the macrocyclic ligand and three types of amino acids, glycine (equal numbers of carboxylate and amino groups), aspartic acid (more carboxylate groups than amino group), and lysine (more amino groups than carboxylate group) have been performed. The stability constants for the new macrocycle and binary complexes of the amino acid with the macrocyclic ligand are reported. Binary complexes are formed in aqueous solution as a result of hydrogen bonding interaction and electrostatic attraction between the host and the guest. The binding Schemes for the recognition of amino acids are suggested. From the results, it seems that this new macrocyclic ligand is able to bind three different amino acids with selectivity in aqueous solution, and the strength of binding is of the order lysine < glycine < aspartic acid.
机译:一个新的六氮杂大环配体(L)带有两个2-羟丙基侧基,6,19-双(2-羟丙基)-3,6,9,16,19,22-hexaaza-tricyclo- [22.2.2.2(11,14 )合成并表征了triaconta-11,13,24,26,27,29-己烯。大环配体被分离为无色晶体,单斜晶,P2(1),a=10.757(2),b = 14.214(3),c = 13.746(3)A,β= 101.40(3)度, V = 2060.3(7)A3,Z = 2,R1 = 0.0695,和wR2 = 0.1538 [I>2σ(I)]。对大环配体和三种类型的氨基酸(甘氨酸(羧酸根和氨基的数量相等),天冬氨酸(羧酸根的数量多于氨基)和赖氨酸(氨基比羧基的数量多)进行了电位测定。报道了新的大环氨基酸和氨基酸与大环配体的二元复合物的稳定性常数。由于氢键相互作用和主体与客体之间的静电吸引,在水溶液中形成了二元络合物。提出了用于识别氨基酸的结合方案。从结果看来,这种新的大环配体能够在水溶液中选择性地结合三种不同的氨基酸,并且结合强度为赖氨酸<甘氨酸<天冬氨酸。

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