Bennion Beau, Park Chaeho, Fuller Matthew, Lindsey Rebecca, Momany Michelle, Jennemann Richard, Levery Steven B
Department of Chemistry, University of New Hampshire, Durham, NH 03824-3598, USA.
J Lipid Res. 2003 Nov;44(11):2073-88. doi: 10.1194/jlr.M300184-JLR200. Epub 2003 Aug 16.
Aspergillus nidulans is a well-established nonpathogenic laboratory model for the opportunistic mycopathogen, A. fumigatus. Some recent studies have focused on possible functional roles of glycosphingolipids (GSLs) in these fungi. It has been demonstrated that biosynthesis of glycosylinositol phosphorylceramides (GIPCs) is required for normal cell cycle progression and polarized growth in A. nidulans (Cheng, J., T.-S. Park, A. S. Fischl, and X. S. Ye. 2001. Mol. Cell Biol. 21: 6198-6209); however, the structures of A. nidulans GIPCs were not addressed in that study, nor were the functional significance of individual structural variants and the downstream steps in their biosynthesis. To initiate such studies, acidic GSL components (designated An-2, -3, and -5) were isolated from A. nidulans and subjected to structural characterization by a combination of one-dimensional (1-D) and 2-D NMR spectroscopy, electrospray ionization-mass spectrometry (ESI-MS), ESI-MS/collision-induced decomposition-MS (MS/CID-MS), ESI-pseudo-[CID-MS]2, and gas chromatography-MS methods. All three were determined to be GIPCs, with mannose as the only monosaccharide present in the headgroup glycans; An-2 and An-3 were identified as di- and trimannosyl inositol phosphorylceramides (IPCs) with the structures Man alpha 1-->3Man alpha 1-->2Ins1-P-1Cer and Man alpha 1-->3(Man alpha 1-->6)Man alpha 1-->2Ins1-P-1Cer, respectively (where Ins = myo-inositol, P = phosphodiester, and Cer = ceramide). An-5 was partially characterized, and is proposed to be a pentamannosyl IPC, based on the trimannosyl core structure of An-3.
构巢曲霉是一种成熟的非致病性实验室模型,用于研究机会性真菌病原体烟曲霉。最近的一些研究聚焦于鞘糖脂(GSLs)在这些真菌中可能的功能作用。已证明,糖基肌醇磷酸神经酰胺(GIPCs)的生物合成是构巢曲霉正常细胞周期进程和极性生长所必需的(Cheng, J., T.-S. Park, A. S. Fischl, and X. S. Ye. 2001. Mol. Cell Biol. 21: 6198 - 6209);然而,该研究未涉及构巢曲霉GIPCs的结构,也未涉及单个结构变体的功能意义及其生物合成的下游步骤。为开展此类研究,从构巢曲霉中分离出酸性GSL组分(命名为An - 2、- 3和- 5),并通过一维(1 - D)和二维核磁共振光谱、电喷雾电离质谱(ESI - MS)、ESI - MS/碰撞诱导解离质谱(MS/CID - MS)、ESI - 伪 - [CID - MS]2以及气相色谱 - 质谱方法对其进行结构表征。确定这三种组分均为GIPCs,其头部聚糖中仅存在甘露糖;An - 2和An - 3分别被鉴定为二甘露糖基和三甘露糖基肌醇磷酸神经酰胺(IPCs),结构分别为Manα1→3Manα1→2Ins1 - P - 1Cer和Manα1→3(Manα1→6)Manα1→2Ins1 - P - 1Cer(其中Ins = 肌醇,P = 磷酸二酯,Cer = 神经酰胺)。An - 5已得到部分表征,基于An - 3的三甘露糖基核心结构,推测其为五甘露糖基IPC。