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安格斯阉牛四个生产阶段小肠上皮中阳离子氨基酸转运体-1 mRNA的鉴定及表达模式

Identification and expression pattern of cationic amino acid transporter-1 mRNA in small intestinal epithelia of Angus steers at four production stages.

作者信息

Liao S F, Vanzant E S, Boling J A, Matthews J C

机构信息

Department of Animal and Food Sciences, University of Kentucky, Lexington 40546-0215, USA.

出版信息

J Anim Sci. 2008 Mar;86(3):620-31. doi: 10.2527/jas.2006-727. Epub 2007 Nov 12.

Abstract

Although dietary supplementation of cationic AA (CAA), especially l-Lys, is known to be essential for optimal growth of beef cattle, the proteins responsible for absorption of CAA by bovine intestinal epithelia have not been described. Cationic AA transporter-1 (CAT-1) is a major intestinal CAA transporter, demonstrating a high-affinity (muM) transport activity for l-Lys in other mammals, and is widely expressed by small intestinal epithelia of nonruminants, but neither sequence nor expression pattern data exist for CAT-1 in cattle. Therefore, the goal of this research was to compare the relative expression (putative) of CAT-1 mRNA by duodenal, jejunal, or ileal small intestinal epithelia across and within commercially relevant beef cattle production and development stages. Twenty-four Angus steers were assigned randomly (n = 6) to 1 of 4 treatments (suckling, weanling, growing, and finishing) after all steers were born. Duodenal, jejunal, and ileal epithelia were scraped, and total RNA was extracted after the steers were killed at 32, 184, 248, or 423 d of age. Average daily gains of the steers did not differ (1.09 +/- 0.05 kg/d) among stages, whereas the small intestinal length relative to BW decreased (P < 0.01) with steer development. Using standard reverse transcription-PCR cloning techniques, we generated a partial-length bovine CAT-1 complementary DNA (695 bp; GenBank accession no. DQ399522) from jejunal mRNA samples, which possessed 89 and 87% identities to pig and human CAT-1 orthologs, respectively. On the basis of this bovine-specific genetic data, a real-time PCR-based assay of reverse-transcribed mRNA was developed and used to measure relative changes in bovine CAT-1 mRNA abundance in intestinal epithelia as steers developed. The CAT-1 mRNA was expressed by the duodenum, jejunum, and ileum of all 4 production stages. In contrast to expression by duodenal or ileal epithelium, jejunal expression of CAT-1 mRNA by growing steers was greater (P = 0.005) than that by suckling, weanling, or finishing steers. In terms of the expression of CAT-1 mRNA within production stage, jejunal expression was greater (P = 0.002) than that by duodenum or ileum for growing steers. In contrast, no intestinal site difference was found for suckling, weanling, or finishing steers. These data indicate that previously reported Na(+)-independent uptake of Lys by jejunal and ileal epithelia likely occurred by CAT-1, and that the potential capacity for CAT-1-mediated uptake of CAA for beef steers may be greatest for the "growing" phenotype.

摘要

虽然日粮中补充阳离子氨基酸(CAA),尤其是L-赖氨酸,已知对肉牛的最佳生长至关重要,但负责牛肠道上皮吸收CAA的蛋白质尚未见报道。阳离子氨基酸转运体-1(CAT-1)是主要的肠道CAA转运体,在其他哺乳动物中对L-赖氨酸表现出高亲和力(微摩尔级)转运活性,并且在非反刍动物的小肠上皮中广泛表达,但牛CAT-1的序列和表达模式数据均不存在。因此,本研究的目的是比较商业相关肉牛生产和发育阶段中十二指肠、空肠或回肠小肠上皮中CAT-1 mRNA的相对表达(推测)。所有公牛出生后,将24头安格斯公牛随机(n = 6)分配到4种处理(哺乳、断奶、生长和育肥)中的1种。在公牛32、184、248或423日龄宰杀后,刮取十二指肠、空肠和回肠上皮,并提取总RNA。各阶段公牛的平均日增重无差异(1.09±0.05 kg/d),而相对于体重的小肠长度随公牛发育而缩短(P < 0.01)。使用标准逆转录-聚合酶链反应克隆技术,我们从空肠mRNA样本中生成了一个部分长度的牛CAT-1互补DNA(695 bp;GenBank登录号DQ399522),其与猪和人CAT-1直系同源物的同源性分别为89%和87%。基于这些牛特异性遗传数据,开发了一种基于实时PCR的逆转录mRNA检测方法,并用于测量随着公牛发育肠道上皮中牛CAT-1 mRNA丰度的相对变化。所有4个生产阶段的十二指肠、空肠和回肠均表达CAT-1 mRNA。与十二指肠或回肠上皮的表达相比,生长公牛空肠中CAT-1 mRNA的表达高于哺乳、断奶或育肥公牛(P = 0.005)。就生产阶段内CAT-1 mRNA的表达而言,生长公牛空肠中的表达高于十二指肠或回肠(P = 0.002)。相比之下,哺乳、断奶或育肥公牛未发现肠道部位差异。这些数据表明,先前报道的空肠和回肠上皮对赖氨酸的不依赖Na+的摄取可能是由CAT-1介导的,并且对于“生长”表型的肉牛,CAT-1介导的CAA摄取的潜在能力可能最大。

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