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CNDP1基因中的一个CTG多态性决定了在Cos-7转染细胞中血清肌肽酶的分泌。

A CTG polymorphism in the CNDP1 gene determines the secretion of serum carnosinase in Cos-7 transfected cells.

作者信息

Riedl Eva, Koeppel Hannes, Brinkkoetter Paul, Sternik Paula, Steinbeisser Herbert, Sauerhoefer Sibylle, Janssen Bart, van der Woude Fokko J, Yard Benito A

机构信息

Department of Nephrology, Endocrinology, and Rheumatology, Fifth Medical Clinic, Mannheim, Germany.

出版信息

Diabetes. 2007 Sep;56(9):2410-3. doi: 10.2337/db07-0128. Epub 2007 Jun 29.

DOI:10.2337/db07-0128
PMID:17601991
Abstract

Recently, we demonstrated that a polymorphism in exon 2 of the serum carnosinase (CNDP1) gene is associated with susceptibility to developing diabetic nephropathy. Based on the number of CTG repeats in the signal peptide, five different alleles coding for 4, 5, 6, 7, or 8 leucines (4L-8L) are known. Diabetic patients without nephropathy are homozygous for the 5L allele more frequently than those with nephropathy. Since serum carnosinase activity correlates with CNDP1 genotype, we hypothesized in the present study that secretion of serum carnosinase is determined by the CNDP1 genotype. To test this hypothesis, we transfected Cos-7 cells with different CNDP1 constructs varying in CTG repeats and assessed the expression of CNDP1 protein in cell extracts and supernatants. Our results demonstrate that CNDP1 secretion is significantly higher in cells expressing variants with more than five leucines in the signal peptide. Hence, our data might explain why individuals homozygous for the 5L allele have low serum carnosinase activity. Because carnosine, the natural substrate for carnosinase, exerts antioxidative effects and inhibits ACE activity and advanced glycation end product formation, our results support the finding that diabetic patients homozygous for CNDP1 5L are protected against diabetic nephropathy.

摘要

最近,我们证明血清肌肽酶(CNDP1)基因外显子2中的一种多态性与糖尿病肾病的易感性相关。根据信号肽中CTG重复序列的数量,已知有五种不同的等位基因编码4、5、6、7或8个亮氨酸(4L - 8L)。无肾病的糖尿病患者比有肾病的患者更频繁地为5L等位基因纯合子。由于血清肌肽酶活性与CNDP1基因型相关,我们在本研究中假设血清肌肽酶的分泌由CNDP1基因型决定。为了验证这一假设,我们用CTG重复序列不同的不同CNDP1构建体转染Cos - 7细胞,并评估细胞提取物和上清液中CNDP1蛋白的表达。我们的结果表明,在信号肽中表达具有超过五个亮氨酸的变体的细胞中,CNDP1分泌显著更高。因此,我们的数据可能解释了为什么5L等位基因纯合个体的血清肌肽酶活性较低。因为肌肽是肌肽酶的天然底物,具有抗氧化作用并抑制ACE活性和晚期糖基化终产物的形成,我们的结果支持了CNDP1 5L纯合的糖尿病患者对糖尿病肾病具有保护作用这一发现。

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