Alteration in sphingolipid metabolism: bioassays for fumonisin- and ISP-I-like activity in tissues, cells and other matrices.

R T Riley, W P Norred, E Wang, A H Merrill
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引用次数: 34

Abstract

The first discovered naturally occurring inhibitor of de novo sphingolipid biosynthesis was fumonisin B1. There are now 11 identified fungal inhibitors of ceramide synthase or 'fumonisin B1-like' compounds. With the exception of the australifungins, all other fungal ceramide synthase inhibitors are structurally sphingoid-like. There are several recently discovered fungal inhibitors of another enzyme in the de novo sphingolipid biosynthesis pathway: serine palmitoyltransferase (SPT). One of the SPT inhibitors is named ISP-I. While ceramide synthase inhibitors are toxic to animals, plants and fungi, the SPT inhibitors are not known to cause animal or plant disease, but are potent inhibitors of fungal growth. Very little is known about their toxicity in animals. There are at least 24 fungal SPT inhibitors produced by a variety of fungi. Given that the fungal inhibitors of sphingolipid biosynthesis are chemically and biologically diverse, two bioassays have been developed to screen for fumonisin-like or ISP-I-like activity in naturally contaminated products or fungal culture materials. These bioassays are based on the changes in free sphingoid base concentration that occur when the ceramide synthase or SPT are inhibited. The bioassays have the advantage that they are functionally rather than chemically specific and thus will detect ceramide synthase and SPT inhibitors regardless of their chemical structure.
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鞘脂代谢的改变:组织、细胞和其他基质中伏马菌素和isp - i样活性的生物测定。
第一个发现的天然存在的新生鞘脂生物合成抑制剂是伏马菌素B1。现在有11种已确定的神经酰胺合成酶或“伏马菌素b1样”化合物的真菌抑制剂。除了australifungins外,所有其他真菌神经酰胺合成酶抑制剂在结构上都是鞘样的。最近发现了几种真菌抑制剂,可以抑制另一种在新生鞘脂生物合成途径中的酶:丝氨酸棕榈酰转移酶(SPT)。其中一种SPT抑制剂被命名为ISP-I。虽然神经酰胺合成酶抑制剂对动物、植物和真菌有毒,但SPT抑制剂并不会引起动物或植物疾病,但它们是真菌生长的有效抑制剂。人们对它们对动物的毒性知之甚少。至少有24种真菌SPT抑制剂是由多种真菌产生的。鉴于鞘脂生物合成的真菌抑制剂具有化学和生物学上的多样性,已经开发了两种生物测定方法来筛选自然污染产品或真菌培养材料中的福马菌素样或isp - 1样活性。这些生物测定是基于神经酰胺合成酶或SPT被抑制时游离鞘碱浓度的变化。生物测定法的优势在于它们具有功能特异性,而不是化学特异性,因此可以检测神经酰胺合成酶和SPT抑制剂,而不管它们的化学结构如何。
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Erratum: Alfonso D, Johnson HA, Colman-Saizarbitoria T, Presley CP, McCabe GP, McLaughlin JL (1996): SARs of annonaceous acetogenins in rat liver mitochondria. Nat Toxins 4:181-188. Advances in detection methods for fungal and algal toxins. HPLC/MS analysis of fusarium mycotoxins, fumonisins and deoxynivalenol. Neuronal binding of tetanus toxin compared to its ganglioside binding fragment (H(c)). A new type sandwich immunoassay for microcystin: production of monoclonal antibodies specific to the immune complex formed by microcystin and an anti-microcystin monoclonal antibody.
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