首页> 外文期刊>Journal of biochemical and molecular toxicology >Identification of fumonisin B1 as an inhibitor of argininosuccinate synthetase using fumonisin affinity chromatography and in vitro kinetic studies.
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Identification of fumonisin B1 as an inhibitor of argininosuccinate synthetase using fumonisin affinity chromatography and in vitro kinetic studies.

机译:使用伏马菌素亲和色谱和体外动力学研究鉴定伏马菌素B1作为精氨酸琥珀酸合成酶抑制剂。

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摘要

Fumonisin B1, a fungal mycotoxin that grows on corn and other agricultural products, alters sphingolipid metabolism by inhibiting ceramide synthase. The precise mechanism of fumonisin B1 toxicity has not been completely elucidated; however, a central feature in the cytotoxicity is alteration of sphingolipid metabolism through interruption of de novo ceramide synthesis. An affinity column consisting of fumonisin B1 covalently bound to an HPLC column matrix was used to isolate a rat liver protein that consistently bound to the column. The protein was identified as argininosuccinate synthetase by protein sequencing. The enzyme-catalyzed formation of argininosuccinic acid from citrulline and aspartate by recombinant human and rat liver argininosuccinate synthetase was inhibited by fumonisin B1. Fumonisin B1 showed mixed inhibition against citrulline, aspartate, and ATP to the enzyme. Fumonisin B1 had a Ki' of approximately 6 mM with the recombinant human argininosuccinate synthase and a Ki' of 35 mM with a crude preparation of enzyme prepared from rat liver. Neither tricarballylic acid nor hydrolyzed fumonisin B1 inhibited recombinant human argininosuccinate synthetase. This is the first demonstration of fumonisin B1 inhibition of argininosuccinate synthethase, a urea cycle enzyme, which adds to the list of enzymes that are inhibited in vitro by fumonisin B1 (ceramide synthase, protein serine/threonine phosphatase). The extent of the inhibition of argininosuccinate synthetase in cells, and the possible role of this enzyme inhibition in the cellular toxicity of FB1, remains to be established.
机译:伏马菌素B1是一种真菌真菌毒素,生长在玉米和其他农产品上,它通过抑制神经酰胺合酶来改变鞘脂的代谢。伏马毒素B1毒性的确切机制尚未完全阐明。然而,细胞毒性的主要特征是通过从头神经酰胺合成的中断改变鞘脂的代谢。由共价结合到HPLC柱基质的伏马菌素B1组成的亲和柱用于分离始终与该柱结合的大鼠肝蛋白。通过蛋白质测序将该蛋白质鉴定为精氨酸琥珀酸酯合成酶。伏马菌素B1抑制了重组人和大鼠肝脏精氨酸琥珀酸酯合成酶从瓜氨酸和天冬氨酸的酶催化形成精氨酸琥珀酸。伏马菌素B1对瓜氨酸,天冬氨酸和ATP均显示出对该酶的混合抑制作用。伏马菌素B1与重组人精氨琥珀酸合酶的Ki'约为6 mM,与从大鼠肝脏制备的粗制酶的Ki'为35 mM。三碳烯丙酸和水解伏马毒素B1均不能抑制重组人精氨琥珀酸合成酶。这是伏马毒素B1抑制精氨酸琥珀酸酯合成酶(一种尿素循环酶)的第一个证明,它增加了伏马毒素B1在体外抑制的酶(神经酰胺合酶,丝氨酸/苏氨酸磷酸酶)。细胞中精氨酸琥珀酸酯合成酶的抑制程度以及该酶在FB1细胞毒性中的可能作用尚待确定。

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