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日粮维生素B-6缺乏和过量对青春期后小母猪两块肌肉中氨基转移酶、糖原磷酸化酶活性及磷酸吡哆醛含量的影响

Effect of deficient and excess dietary vitamin B-6 on amino transaminase and glycogen phosphorylase activity and pyridoxal phosphate content in two muscles from postpubertal gilts.

作者信息

Russell L E, Bechtel P J, Easter R A

出版信息

J Nutr. 1985 Sep;115(9):1124-35. doi: 10.1093/jn/115.9.1124.

Abstract

Postpubertal gilts averaging 111 kg and gaining 2.7 kg/wk were fed daily 1.9 kg/d of a diet providing 0.45, 2.1 or 83 mg of vitamin B-6/d. An additional group of animals were fed the high vitamin B-6 diet providing 83 mg of vitamin B-6/d for the initial 57 d of the experiment and then switched to 0.45 mg of vitamin B-6/d for the remainder of the 121-d experiment (61 gilts total). On d 0, 57 and 121, animals from each treatment were killed, and samples of the semitendinosus (ST) and semimembranosus (SM) were removed. Glutamic-oxaloacetic transaminase (GOT), glutamic-pyruvic transaminase (GPT), glycogen phosphorylase and pyridoxal phosphate (PLP) were measured in muscle tissues. The erythrocyte GOT activity coefficient indicated that gilts consuming 0.45 or 2.1 mg of vitamin B-6/d developed a vitamin B-6 deficiency. A vitamin B-6 deficiency resulted in the loss of whole-muscle transaminase activity (enzyme activity X muscle weight) with little effect on whole-muscle total phosphorylase or total PLP content. Excess dietary vitamin B-6 increased whole-muscle total PLP and total phosphorylase content with small decreases in whole-muscle transaminase. Under these conditions, muscle tissue acts as a nonmobile reservoir of PLP. Sixty to 95% of muscle PLP was bound to muscle glycogen phosphorylase.

摘要

平均体重111千克、每周增重2.7千克的青春期后小母猪,每天饲喂1.9千克/天的日粮,日粮中维生素B-6的含量分别为0.45、2.1或83毫克/天。另一组动物在实验的最初57天饲喂含83毫克维生素B-6/天的高维生素B-6日粮,然后在为期121天的实验剩余时间内改为饲喂含0.45毫克维生素B-6/天的日粮(总共61头小母猪)。在第0、57和121天,对每种处理的动物进行宰杀,并取出半腱肌(ST)和半膜肌(SM)样本。测定肌肉组织中的谷草转氨酶(GOT)、谷丙转氨酶(GPT)、糖原磷酸化酶和磷酸吡哆醛(PLP)。红细胞GOT活性系数表明,每天摄入0.45或2.1毫克维生素B-6的小母猪出现了维生素B-6缺乏症。维生素B-6缺乏导致全肌转氨酶活性(酶活性×肌肉重量)丧失,而对全肌总磷酸化酶或总PLP含量影响很小。日粮中维生素B-6过量会增加全肌总PLP和总磷酸化酶含量,同时全肌转氨酶略有下降。在这些条件下,肌肉组织充当PLP的非移动储存库。60%至95%的肌肉PLP与肌肉糖原磷酸化酶结合。

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