首页> 外文OA文献 >Ceramide Synthase Inhibition by Fumonisin B1 Causes Accumulation of 1-Deoxysphinganine: A NOVEL CATEGORY OF BIOACTIVE 1-DEOXYSPHINGOID BASES AND 1-DEOXYDIHYDROCERAMIDES BIOSYNTHESIZED BY MAMMALIAN CELL LINES AND ANIMALS*
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Ceramide Synthase Inhibition by Fumonisin B1 Causes Accumulation of 1-Deoxysphinganine: A NOVEL CATEGORY OF BIOACTIVE 1-DEOXYSPHINGOID BASES AND 1-DEOXYDIHYDROCERAMIDES BIOSYNTHESIZED BY MAMMALIAN CELL LINES AND ANIMALS*

机译:伏马毒素B1抑制神经酰胺合酶的原因 1-脱氧鞘氨醇的积累:一种新型的生物活性剂 哺乳动物生物合成的1-脱氧鞘氨醇碱基和1-脱氧二氢酰胺 细胞株和 动物*

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摘要

Fumonisin B1 (FB1) is a mycotoxin that inhibits ceramide synthases (CerS) and causes kidney and liver toxicity and other disease. Inhibition of CerS by FB1 increases sphinganine (Sa), Sa 1-phosphate, and a previously unidentified metabolite. Analysis of the latter by quadrupole-time-of-flight mass spectrometry assigned an m/z = 286.3123 in positive ionization mode, consistent with the molecular formula for deoxysphinganine (C18H40NO). Comparison with a synthetic standard using liquid chromatography, electrospray tandem mass spectrometry identified the metabolite as 1-deoxysphinganine (1-deoxySa) based on LC mobility and production of a distinctive fragment ion (m/z 44, CH3CH=NH +2) upon collision-induced dissociation. This novel sphingoid base arises from condensation of alanine with palmitoyl-CoA via serine palmitoyltransferase (SPT), as indicated by incorporation of l-[U-13C]alanine into 1-deoxySa by Vero cells; inhibition of its production in LLC-PK1 cells by myriocin, an SPT inhibitor; and the absence of incorporation of [U-13C]palmitate into 1-[13C]deoxySa in LY-B cells, which lack SPT activity. LY-B-LCB1 cells, in which SPT has been restored by stable transfection, however, produce large amounts of 1-[13C]deoxySa. 1-DeoxySa was elevated in FB1-treated cells and mouse liver and kidney, and its cytotoxicity was greater than or equal to that of Sa for LLC-PK1 and DU-145 cells. Therefore, this compound is likely to contribute to pathologies associated with fumonisins. In the absence of FB1, substantial amounts of 1-deoxySa are made and acylated to N-acyl-1-deoxySa (i.e. 1-deoxydihydroceramides). Thus, these compounds are an underappreciated category of bioactive sphingoid bases and “ceramides” that might play important roles in cell regulation.
机译:伏马菌素B1(FB1)是一种霉菌毒素,可抑制神经酰胺合酶(CerS)并引起肾脏和肝脏毒性以及其他疾病。 FB1对CerS的抑制作用会增加Sphinganine(Sa),Sa 1-磷酸盐和一种以前未知的代谢产物。通过四极杆飞行时间质谱分析后者,在正电离模式下的m / z = 286.3123,与脱氧鞘氨醇(C18H40NO)的分子式一致。与液相色谱法合成标准品进行比较,电喷雾串联质谱法根据LC迁移率和碰撞时产生的独特碎片离子(m / z 44,CH3CH = NH +2)确定代谢物为1-deoxysphinganine(1-deoxySa)。 -诱导的解离。这种新的类神经鞘碱基是由丙氨酸通过丝氨酸棕榈酰转移酶(SPT)与棕榈酰-CoA缩合而产生的,正如Vero细胞将1- [U-13C]丙氨酸掺入1-脱氧Sa所表明的那样。 SPT抑制剂myriocin抑制其在LLC-PK1细胞中的产生;缺乏SPT活性的LY-B细胞中[U-13C]棕榈酸没有掺入1- [13C]脱氧Sa中。但是,通过稳定转染已恢复SPT的LY-B-LCB1细胞产生大量的1- [13C] deoxySa。 1-脱氧Sa在经过FB1处理的细胞以及小鼠肝和肾中升高,并且其细胞毒性大于或等于对于LLC-PK1和DU-145细胞的Sa。因此,该化合物可能有助于与伏马菌素相关的病理。在不存在FB1的情况下,制备大量的1-脱氧Sa并将其酰化为N-酰基-1-脱氧Sa(即1-脱氧二氢神经酰胺)。因此,这些化合物是生物活性鞘氨醇碱和“神经酰胺”的一种未被充分认识的类别,它们可能在细胞调节中起重要作用。

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