Sbrissa Diego, Ikonomov Ognian C, Shisheva Assia
Department of Physiology, Wayne State University School of Medicine, Detroit, Michigan 48201, USA.
J Biol Chem. 2002 Feb 22;277(8):6073-9. doi: 10.1074/jbc.M110194200. Epub 2001 Nov 12.
PIKfyve is a phosphatidylinositol (PtdIns) 3-phosphate (P)-metabolizing enzyme, which, in addition to a C-terminally positioned catalytic domain, harbors several evolutionarily conserved domains, including a FYVE finger. The FYVE finger domains are thought to direct the protein localization to intracellular membrane PtdIns 3-P. Recent studies with several FYVE domain proteins challenge this general concept. Here we have examined the binding of PIKfyve's FYVE domain to PtdIns 3-P in vitro and in vivo and a plausible contribution of this binding mechanism for the intracellular localization of the full-length protein. We document now a specific and high affinity interaction of a recombinantly produced PIKfyve FYVE domain peptide fragment with PtdIns 3-P-containing liposomes that requires the presence of the conservative core of basic residues within the FYVE domain. PIKfyve localization to membranes of the late endocytic pathway was found to be absolutely dependent on the presence of an intact FYVE finger. Cell treatment with PI 3-kinase inhibitor wortmannin dissociated endosome-bound PIKfyve, indicating that the protein targeted the membrane PtdIns 3-P. An enzymatically inactive peptide fragment of the PIKfyve catalytic domain was found to also specifically bind to PtdIns 3-P-containing liposomes, with residue Lys-1999 being critical in the interaction. This binding, however, was of relatively low affinity and, in the cellular context, was found ineffective in directing the molecule to PtdIns 3-P-enriched endosomes. Collectively, these results demonstrate that interaction of the FYVE domain with PtdIns 3-P is absolutely necessary for PIKfyve targeting to the membranes of the late endocytic pathway and determine PIKfyve as a downstream effector of PtdIns 3-P.
PIKfyve是一种磷脂酰肌醇(PtdIns)3-磷酸(P)代谢酶,除了位于C端的催化结构域外,还含有几个进化上保守的结构域,包括一个FYVE结构域。FYVE结构域被认为可将蛋白质定位到细胞内膜PtdIns 3-P上。最近对几种FYVE结构域蛋白的研究对这一普遍概念提出了挑战。在这里,我们研究了PIKfyve的FYVE结构域在体外和体内与PtdIns 3-P的结合,以及这种结合机制对全长蛋白细胞内定位的可能作用。我们现在证明,重组产生的PIKfyve FYVE结构域肽片段与含PtdIns 3-P的脂质体之间存在特异性的高亲和力相互作用,这需要FYVE结构域内保守的碱性残基核心的存在。发现PIKfyve定位于晚期内吞途径的膜上绝对依赖于完整的FYVE结构域的存在。用PI 3-激酶抑制剂渥曼青霉素处理细胞可使与内体结合的PIKfyve解离,表明该蛋白靶向膜PtdIns 3-P。发现PIKfyve催化结构域的一个无酶活性的肽片段也能特异性地结合含PtdIns 3-P的脂质体,其中残基Lys-1999在相互作用中起关键作用。然而,这种结合的亲和力相对较低,并且在细胞环境中,发现其在将分子导向富含PtdIns 3-P的内体方面无效。总的来说,这些结果表明,FYVE结构域与PtdIns 3-P的相互作用对于PIKfyve靶向晚期内吞途径的膜是绝对必要的,并确定PIKfyve是PtdIns 3-P的下游效应物。