Barona Teresa, Byrne Richard D, Pettitt Trevor R, Wakelam Michael J O, Larijani Banafshe, Poccia Dominic L
Biology Department, Amherst College, Amherst, Massachusetts 01002, USA.
J Biol Chem. 2005 Dec 16;280(50):41171-7. doi: 10.1074/jbc.M412863200. Epub 2005 Oct 10.
Purified membrane vesicles isolated from sea urchin eggs form nuclear envelopes around sperm nuclei following GTP hydrolysis in the presence of cytosol. A low density subfraction of these vesicles (MV1), highly enriched in phosphatidylinositol (PtdIns), is required for nuclear envelope formation. Membrane fusion of MV1 with a second fraction that contributes most of the nuclear envelope can be initiated without GTP by an exogenous bacterial PtdIns-specific phospholipase C (PI-PLC) which hydrolyzes PtdIns to form diacylglycerides and inositol 1-phosphate. This PI-PLC hydrolyzes a subset of sea urchin membrane vesicle PtdIns into diglycerides enriched in long chain, polyunsaturated species as revealed by a novel liquid chromatography-mass spectrometry analysis. Large unilammelar vesicles (LUVs) enriched in PtdIns can substitute for MV1 in PI-PLC induced nuclear envelope formation. Moreover, MV1 prehydrolyzed with PI-PLC and washed to remove inositols leads to spontaneous nuclear envelope formation with MV2 without further PI-PLC treatment. LUVs enriched in diacylglycerol mimic prehydrolyzed MV1. These results indicate that production of membrane-destabilizing diglycerides in membranes enriched in PtdIns may facilitate membrane fusion in a natural membrane system and suggest that MV1, which binds only to two places on the sperm nucleus, may initiate fusion locally.
从海胆卵中分离出的纯化膜泡,在胞质溶胶存在下经过GTP水解后,会围绕精子细胞核形成核膜。这些膜泡的一个低密度亚组分(MV1)富含磷脂酰肌醇(PtdIns),是核膜形成所必需的。MV1与构成大部分核膜的第二个组分的膜融合,可以由外源性细菌PtdIns特异性磷脂酶C(PI-PLC)在无GTP的情况下引发,该酶将PtdIns水解形成二酰基甘油和肌醇1-磷酸。通过一种新型液相色谱-质谱分析发现,这种PI-PLC将海胆膜泡PtdIns的一个子集水解为富含长链多不饱和物种的甘油二酯。富含PtdIns的大单层囊泡(LUVs)可以在PI-PLC诱导的核膜形成中替代MV1。此外,用PI-PLC预水解并洗涤以去除肌醇的MV1,在不进行进一步PI-PLC处理的情况下,会与MV2自发形成核膜。富含二酰基甘油的LUVs模拟预水解的MV1。这些结果表明,在富含PtdIns的膜中产生破坏膜稳定性的甘油二酯可能有助于天然膜系统中的膜融合,并表明仅在精子细胞核的两个位置结合的MV1可能在局部引发融合。