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Metabolism of 13C5-hydroxyproline in mouse models of Primary Hyperoxaluria and its inhibition by RNAi therapeutics targeting liver glycolate oxidase and hydroxyproline dehydrogenase

机译:小鼠原发性高草酸尿模型中13C5-羟脯氨酸的代谢及其对肝糖化氧化酶和羟脯氨酸脱氢酶的RNAi治疗的抑制作用

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摘要

Excessive endogenous oxalate synthesis can result in calcium oxalate kidney stone formation and renal failure. Hydroxyproline catabolism in the liver and kidney contributes to endogenous oxalate production in mammals. To quantify this contribution we have infused Wt mice, Agxt KO mice deficient in liver alanine:glyoxylate aminotransferase, and Grhpr KO mice deficient in glyoxylate reductase, with 13C5-hydroxyproline. The contribution of hydroxyproline metabolism to urinary oxalate excretion in Wt mice was 22 ± 2%, 42 ± 8% in Agxt KO mice, and 36% ± 9% in Grhpr KO mice. To determine if blocking steps in hydroxyproline and glycolate metabolism would decrease urinary oxalate excretion, mice were injected with siRNA targeting the liver enzymes glycolate oxidase and hydroxyproline dehydrogenase. These siRNAs decreased the expression of both enzymes and reduced urinary oxalate excretion in Agxt KO mice, when compared to mice infused with a luciferase control preparation. These results suggest that siRNA approaches could be useful for decreasing the oxalate burden on the kidney in individuals with Primary Hyperoxaluria.
机译:内源性草酸的过度合成会导致草酸钙肾结石的形成和肾功能衰竭。肝脏和肾脏中的羟脯氨酸分解代谢有助于哺乳动物内源性草酸的产生。为了量化这种贡献,我们向Wt小鼠,肝丙氨酸:乙醛酸氨基转移酶缺陷的Agxt KO小鼠和乙醛酸还原酶缺陷的Grhpr KO小鼠注入了 13 C5-羟基脯氨酸。 Wt小鼠中羟脯氨酸代谢对草酸尿排泄的贡献为22±2%,Agxt KO小鼠为42±8%,而Grhpr KO小鼠为36%±9%。为了确定羟脯氨酸和羟乙酸代谢的阻断步骤是否会减少草酸尿的排泄,给小鼠注射了针对肝酶羟乙酸氧化酶和羟脯氨酸脱氢酶的siRNA。与注入荧光素酶对照制剂的小鼠相比,这些siRNA降低了Agxt KO小鼠中两种酶的表达并减少了草酸尿的排泄。这些结果表明,siRNA方法可能有助于减轻原发性高草酸尿症患者肾脏中的草酸盐负担。

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