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Modulation of renal calcium and phosphate transporting proteins by dietary nitrogen and/or calcium in young goats

机译:日粮氮和/或钙对小山羊肾脏钙和磷酸盐转运蛋白的调节

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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 CaBPD28K 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, CaBPD28K, 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 Pi concentration were increased during dietary N reduction, thus indicating that Pi 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:在幼山羊中,尽管反刍动物由于反刍动物肝循环能够有效地循环利用氮,但减少饲料中的氮(> N )却对矿物质体内稳态产生影响。单独的钙(> Ca )减少刺激了骨化三醇的合成,并且钙的浓度保持不变,而饮食中氮的减少导致骨化三醇的减少,这不能通过同时减少N和Ca来防止。在先前的研究中,研究表明,由于肠道Ca转运蛋白的减少,饮食中氮素摄入的减少导致肠道Ca的吸收减少。由于尚无有关肾脏潜在作用的数据,因此本研究的目的是评估减少N和/或Ca饮食对肾脏Ca和磷酸盐的影响(> P > i )在年轻山羊中转运蛋白表达。将动物分成4个饲喂组,每组接受充足的氮和钙供应,减少的氮供应,减少的钙供应或联合减少氮和钙,持续6至9周。氮减少的饲喂山羊(P = 0.03),肾Ca通道瞬时受体潜在阳离子通道V族亚家族V成员5(> TRPV5 )的蛋白表达降低,而在受Ca限制的动物中,该表达仍然存在保持不变。 Ca结合蛋白calbindin-D28K(> CaBP > D28K )和钠钙交换蛋白1(> NCX1 )的mRNA和蛋白表达分别为由于减少了氮的摄入而显着降低(mRNA,P = 0.003; P <0.0001;蛋白质,P = 0.002; P = 0.02),而饮食中钙的减少会增加CaBPD28K和NCX1 mRNA的表达(P = 0.05; P = 0.01 )。由于减少了N的摄食,甲状旁腺激素受体(> PTHR )的mRNA和蛋白质表达降低(P = 0.02; P = 0.03)。这些结果证实,饮食中氮的摄入减少导致TRPV5,CaBPD28K,PTHR和NCX1表达水平降低,从而导致钙三醇和血浆Ca水平降低。与此相反,在饮食中减少氮的过程中,IIa型磷酸钠共转运蛋白的表达和血浆Pi的浓度增加,因此表明Pi的稳态以钙三醇非依赖性方式被调节。总之,肾脏中钙转运蛋白表达的调节不能阻止接受低氮饮食的小山羊矿物质稳态的变化。

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