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首页> 外文期刊>Amino acids >Binding specificity of the L-arginine transport systems in mouse macrophages and human cells overexpressing the cationic amino acid transporter hCAT-1
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Binding specificity of the L-arginine transport systems in mouse macrophages and human cells overexpressing the cationic amino acid transporter hCAT-1

机译:L-精氨酸转运系统在小鼠巨噬细胞和人类细胞中过表达阳离子氨基酸转运蛋白hCAT-1的结合特异性

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摘要

The uptake of L-arginine into mouse peritoneal macrophages can be inhibited by numerous amino acids and derivatives.Kinetic studies showed an almost entirely competitive inhibition for both cationic and neutral amino acids and derivatives suggesting that the comparison of their binding specificity by using a quantitative structure-activity relationship(QSAR)study is reasonable.The properties of the most efficient inhibitors were the following:the length of the aliphatic side chain,a general structural similarity to L-arginine(>0.79),cationic character,L-configuration,the presence of an a-amino group(with a mean pK_a of 9.41),the van der Waals volume(mean 225 A~3)and a low logP value(mean:-2.99).The significance of four other descriptors(neutral character,presence and the pK_a of an α-carboxyl group,and the presence of a modified guanidino group)is much lower.Similar results were obtained for the hCAT-1 cell line,but the significance of the descriptors was slightly different.The L-configuration,van der Waals volume,the low logP value and the length of aliphatic side chain were the most significant,while the pK_a value of the side chain(mean pK_a = 11.6)was found to be more important than that of the a-amino group.In addition,the general similarity to L-arginine,the presence of an amino group in the terminal position of the side chain(Orn,Lys)and the basic character were significant descriptors,while the significance of the acidity is negligibly low.As a final conclusion,the following descriptors were found to be important generally for the cationic transporters:the van der Waals volume,hydrophobicity(log P);L-configuration;the size of the side chain;the general similarity to L-arginine;the presence of an a-amino group;the general basicity of the molecule;the pK_a values of the a-amino group(in macrophages)or that of the side chain(in CAT-1 cells).These descriptors can be regarded as the general structurally important binding characteristics of the cationic amino transporters.
机译:大量氨基酸和衍生物可以抑制L-精氨酸向小鼠腹膜巨噬细胞的吸收。运动学研究表明,对阳离子和中性氨基酸及其衍生物几乎都具有竞争性抑制作用,这表明通过定量结构比较它们的结合特异性-活性关系(QSAR)研究是合理的。最有效的抑制剂的特性如下:脂族侧链的长度,与L-精氨酸的一般结构相似性(> 0.79),阳离子性质,L-构型,存在a-氨基(平均pK_a为9.41),范德华体积(平均225 A〜3)和低logP值(平均:-2.99)。其他四个描述符的重要性(中性, α-羧基的存在和pK_a,以及修饰的胍基的存在)要低得多.hCAT-1细胞系获得了相似的结果,但描述符的意义略有不同。胶度,范德华体积,低logP值和脂族侧链长度最显着,而侧链的pK_a值(平均pK_a = 11.6)比α-氨基更重要另外,与L-精氨酸的一般相似性,侧链末端(Orn,Lys)末端氨基的存在和基本特性是重要的描述因素,而酸度的意义可忽略不计。作为最后的结论,发现以下描述物对于阳离子转运蛋白通常是重要的:范德华体积,疏水性(log P); L-构型;侧链的大小;与L-精氨酸的一般相似性;以及与L-精氨酸的相似性。 α-氨基的存在;分子的一般碱性;α-氨基(在巨噬细胞中)或侧链(在CAT-1细胞中)的pK_a值。这些描述符可被视为阳离子氨基反式的一般结构上重要的结合特征运动员。

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