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首页> 外文期刊>Journal of Animal Science >Modulation of renal calcium and phosphate transporting proteins by dietary nitrogen and/or calcium in young goats
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Modulation of renal calcium and phosphate transporting proteins by dietary nitrogen and/or calcium in young goats

机译:饮食氮气和/或幼鸽中钙钙和磷酸盐输送蛋白的调节

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摘要

In young goats, a reduction in dietary nitrogen (N) had an impact on mineral homeostasis although ruminants are able to recycle N effectively due to rumino-hepatic circulation. A solitary calcium (Ca) reduction stimulated calcitriol synthesis and Ca concentrations remained unchanged, whereas a dietary N reduction led to a decrease in calcitriol, which could not be prevented by a simultaneous reduction of N and Ca. In a previous study, it was shown that a reduced dietary N intake caused a decrease in intestinal Ca absorption due to a reduction of intestinal Ca transporting proteins. As no data on the potential role of the kidneys are available, it was the aim of the present study to evaluate whether an N- and/or Ca-reduced diet had an impact on renal Ca and phosphate (P-i) transporting protein expression in young goats. The animals were divided into 4 feeding groups, each receiving an adequate N and Ca supply, a reduced N supply, a reduced Ca supply, or a combined N and Ca reduction for 6 to 9 wk. The protein expression of the renal Ca channel transient receptor potential cation channel subfamily V member 5 (TRPV5) was diminished in N-reduced fed goats (P = 0.03), whereas in Ca restricted animals, the expression remained unaltered. The mRNA and protein expression of the Ca-binding protein calbindin-D28K (CaBP D28K) and the sodium-Ca exchanger 1 (NCX1) were significantly decreased due to the N-reduced feeding (mRNA, P = 0.003; P < 0.0001; protein, P = 0.002; P = 0.02), whereas dietary Ca reduction increased the CaBP D28K and NCX1 mRNA expression (P = 0.05; P = 0.01). The mRNA and protein expression of the parathyroid hormone receptor (PTHR) decreased due to the N-reduced feeding (P = 0.02; P = 0.03). These results confirm that a reduced dietary N intake led to decreased TRPV5, CaBP D28K, PTHR, and NCX1 expression levels, contributing to low levels of calcitriol and plasma Ca. In contrast to this, sodium-phosphate cotransporter type IIa expression and plasma P-i concentration were increased during dietary N reduction, thus indicating that P i homeostasis is modulated in a calcitriol-independent manner. In conclusion, the modulation of Ca transporting proteins expression in the kidney is not able to prevent changes in mineral homeostasis in young goats receiving an N-reduced diet.
机译:在幼鸽中,膳食氮气(n)的减少对矿物质稳态产生了影响,尽管反刍动物由于Rumino-Hepatic循环而有效地再循环n。孤立性钙(CA)还原刺激的钙二醇合成和Ca浓度保持不变,而膳食N还原导致钙二醇的降低,这不能通过同时减少N和Ca来防止。在先前的研究中,表明由于肠道CA输送蛋白的还原,降低的膳食N摄入量导致肠道显性降低。由于没有关于肾脏潜在作用的数据,目前的目前的目的是评估N-和/或CA-DELLED饮食是否对肾CA和磷酸盐(PI)的蛋白表达进行了影响山羊。将动物分成4个进料组,每个进料组接收足够的N和Ca供应,降低的N供应,减少的Ca供应,或者组合N和Ca,减少6至9周。肾Ca通道瞬态受体电位电位阳离子通道亚家族V构件5(TRPV5)的蛋白质表达在N减少喂养山羊(P = 0.03)中,而在Ca受限制的动物中,表达仍未置换。由于N-减少进给(mRNA,p = 0.003; p <0.0001;蛋白质,Ca结合蛋白Calbindin-d28k(Cabp D28k)和钠-CA交换器1(NCX1)的mRNA和蛋白质表达显着降低了(mRNA,p = 0.003;蛋白质,p = 0.002; p = 0.02),而膳食CA降低增加CABP D28K和NCX1 mRNA表达(P = 0.05; P = 0.01)。由于N-减少进料(P = 0.02; P = 0.03),甲状旁腺激素受体(PTH)的mRNA和蛋白表达降低(P = 0.02)。这些结果证实,降低的膳食N摄入量导致TRPV5,CABP D28K,PPTH和NCX1表达水平降低,有助于低水平的钙质和血浆CA。与此相反,在膳食N还原期间增加了磷酸钠COT转换器型IIA表达和血浆P-I浓度,因此表明P I稳态以偶胆醇无关的方式调节。总之,肾脏中Ca输送蛋白表达的调节不能防止幼山羊矿物质稳态的变化,接受N减少饮食。

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