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克隆猪肠道肽转运体(pPepT1)的功能特性

Functional characterization of a cloned pig intestinal peptide transporter (pPepT1).

作者信息

Klang J E, Burnworth L A, Pan Y X, Webb K E, Wong E A

机构信息

Department of Animal and Poultry Sciences, Virginia Polytechnic Institute and State University, Blacksburg 24061-0306, USA.

出版信息

J Anim Sci. 2005 Jan;83(1):172-81. doi: 10.2527/2005.831172x.

Abstract

Absorption of dietary protein can be mediated through the uptake of AA as free AA or small peptides. A H(+)-coupled, peptide transport protein, PepT1, is responsible for the absorption of small peptides arising from digestion of dietary proteins in the small intestine. The magnitude of peptide absorption and the nutritional significance of PepT1 are unknown for many food-producing animals; thus, the objective of this study was to clone and determine the functional characteristics of the pig PepT1 (pPepT1). Two cDNA-encoding pPepT1 were isolated, which contain alternative polyadenylation sites. The predicted pPepT1 is a 708-AA protein, which shows 82.8, 85.7, and 64.7% AA identity to human, sheep, and chicken PepT1, respectively. On northern blots, two pPepT1 mRNA of approximately 2.9 and 3.5 kb were detected in the duodenum, jejunum, and ileum of the small intestine and are presumed to result from alternative polyadenylation. Uptake of [(3)H]-Gly-Sar was measured in Chinese hamster ovary cells transiently transfected with a pPepT1 expression vector to study the functional expression of pPepT1. Peptide transport was H(+)-dependent, with an optimal pH of 6.0 to 6.5. The ability of pPepT1 to transport various peptides was assayed by calculating the concentration of unlabeled peptide that inhibited 50% of [(3)H]-Gly-Sar uptake (IC(50)) in transfected cells. Eleven dipeptides and two tripeptides had IC(50) values that ranged from 0.004 to 0.53 mM. Three peptides, Lys-Lys, Arg-Lys, and Lys-Trp-Lys, had IC(50) values greater than 1. 38 mM and seem to be poor substrates for pPepT1. For all three tetrapeptides examined, uptake of Gly-Sar was too small to measure, even at a concentration of 10 mM tetrapeptide; therefore, IC(50) values could not be calculated. These results demonstrate that pPepT1 can transport a variety of dipeptides and tripeptides but not tetrapeptides.

摘要

膳食蛋白质的吸收可通过以游离氨基酸(AA)或小肽形式摄取氨基酸来介导。一种与氢离子(H⁺)偶联的肽转运蛋白PepT1,负责小肠中膳食蛋白质消化产生的小肽的吸收。对于许多产肉动物而言,肽吸收的程度以及PepT1的营养意义尚不清楚;因此,本研究的目的是克隆并确定猪PepT1(pPepT1)的功能特性。分离出两个编码pPepT1的cDNA,它们含有可变聚腺苷酸化位点。预测的pPepT1是一种含708个氨基酸的蛋白质,与人、绵羊和鸡的PepT1的氨基酸同一性分别为82.8%、85.7%和64.7%。在Northern印迹法中,在小肠的十二指肠、空肠和回肠中检测到两条大小约为2.9 kb和3.5 kb的pPepT1 mRNA,推测这是由可变聚腺苷酸化导致的。用pPepT1表达载体瞬时转染中国仓鼠卵巢细胞,测定[³H]-甘氨酰-肌氨酸的摄取,以研究pPepT1的功能表达。肽转运依赖于H⁺,最适pH为6.0至6.5。通过计算抑制转染细胞中50%的[³H]-甘氨酰-肌氨酸摄取(IC₅₀)的未标记肽的浓度,来测定pPepT1转运各种肽的能力。11种二肽和2种三肽的IC₅₀值范围为0.004至0.53 mM。三种肽,即赖氨酸-赖氨酸、精氨酸-赖氨酸和赖氨酸-色氨酸-赖氨酸,IC₅₀值大于1.38 mM,似乎是pPepT1的不良底物。对于所检测的所有三种四肽,即使在10 mM四肽浓度下,甘氨酰-肌氨酸的摄取量也太小而无法测量;因此,无法计算IC₅₀值。这些结果表明,pPepT1可以转运多种二肽和三肽,但不能转运四肽。

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