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向生长中的公牛供应蛋氨酸会影响蛋氨酸合酶和甜菜碱-同型半胱氨酸甲基转移酶的肝脏活性,但不会影响胱硫醚合酶的活性。

Methionine supply to growing steers affects hepatic activities of methionine synthase and betaine-homocysteine methyltransferase, but not cystathionine synthase.

作者信息

Lambert Barry D, Titgemeyer Evan C, Stokka Gerald L, DeBey Brad M, Löest Clint A

机构信息

Department of Animal Sciences and Industry, Kansas State University, Manhattan 66506-1600, USA.

出版信息

J Nutr. 2002 Jul;132(7):2004-9. doi: 10.1093/jn/132.7.2004.

Abstract

The effects of supplemental methionine (Met), supplied abomasally, on the activities of methionine synthase (MS), cystathionine synthase (CS) and betaine-homocysteine methyltransferase (BHMT) were studied in growing steers. Six Holstein steers (205 kg) were used in a replicated 3 x 3 Latin square experiment. Steers were fed 2.6 kg dry matter daily of a diet containing 83% soybean hulls and 8% wheat straw. Ruminal infusions of 180 g/d acetate, 180 g/d propionate, 45 g/d butyrate, and abomasal infusion of 300 g/d dextrose provided additional energy. An amino acid mixture (299 g/d) limiting in Met was infused into the abomasum to ensure that nonsulfur amino acids did not limit growth. Treatments were infused abomasally and included 0, 5 or 10 g/d L-Met. Retained N (20.5, 26.9 and 31.6 g/d for 0, 5 and 10 g/d L-Met, respectively) increased (P < 0.01) linearly with increased supplemental Met. Hepatic Met, vitamin B-12, S-adenosylmethionine and S-adenosylhomocysteine were not affected by Met supplementation. Hepatic folates tended (P = 0.07) to decrease linearly with Met supplementation. All three enzymes were detected in hepatic tissue of our steers. Hepatic CS activity was not affected by Met supplementation. Hepatic MS decreased (P < 0.01) linearly with increasing Met supply, and hepatic BHMT activity responded quadratically (P = 0.04), with 0 and 10 g/d Met being higher than the intermediate level. Data from this experiment indicate that sulfur amino acid metabolism may be regulated differently in cattle than in other tested species.

摘要

研究了在生长育肥牛中,通过皱胃灌注补充蛋氨酸(Met)对蛋氨酸合酶(MS)、胱硫醚合酶(CS)和甜菜碱 - 高半胱氨酸甲基转移酶(BHMT)活性的影响。选用6头荷斯坦育肥牛(体重205千克)进行重复的3×3拉丁方试验。育肥牛每日饲喂2.6千克干物质日粮,日粮含83%大豆皮和8%麦秸。瘤胃每日灌注180克乙酸盐、180克丙酸盐、45克丁酸盐,皱胃每日灌注300克葡萄糖以提供额外能量。向皱胃灌注一种蛋氨酸含量受限的氨基酸混合物(299克/天),以确保非硫氨基酸不限制生长。处理方式为通过皱胃灌注,包括0、5或10克/天的L - 蛋氨酸。随着补充蛋氨酸量增加,氮潴留量(分别为0、5和10克/天L - 蛋氨酸时,氮潴留量为20.5、26.9和31.6克/天)呈线性增加(P < 0.01)。补充蛋氨酸对肝脏中的蛋氨酸、维生素B - 12、S -腺苷甲硫氨酸和S -腺苷高半胱氨酸无影响。随着蛋氨酸补充量增加,肝脏叶酸含量呈线性下降趋势(P = 0.07)。在我们的育肥牛肝脏组织中检测到了这三种酶。补充蛋氨酸对肝脏CS活性无影响。随着蛋氨酸供应量增加,肝脏MS活性呈线性下降(P < 0.01),肝脏BHMT活性呈二次反应(P = 0.04),0和10克/天蛋氨酸组的活性高于中间水平。本试验数据表明,牛的硫氨基酸代谢调控方式可能与其他受试物种不同。

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