Boeddinghaus Christine, Merz Alexey J, Laage Ricco, Ungermann Christian
Biochemie-Zentrum Heidelberg, University of Heidelberg, 69120 Heidelberg, Germany.
J Cell Biol. 2002 Apr 1;157(1):79-89. doi: 10.1083/jcb.200112098. Epub 2002 Mar 26.
Vacuole fusion requires a coordinated cascade of priming, docking, and fusion. SNARE proteins have been implicated in the fusion itself, although their precise role in the cascade remains unclear. We now report that the vacuolar SNAP-23 homologue Vam7p is a mobile element of the SNARE complex, which moves from an initial association with the cis-SNARE complex via a soluble intermediate to the docking site. Soluble Vam7p is specifically recruited to vacuoles and can rescue a fusion reaction poisoned with antibodies to Vam7p. Both the recombinant Vam7p PX domain and a FYVE domain construct of human Hrs block the recruitment of Vam7p and vacuole fusion, demonstrating that phosphatidylinositol 3-phosphate is a primary receptor of Vam7p on vacuoles. We propose that the Vam7p cycle is linked to the availability of a lipid domain on yeast vacuoles, which is essential for coordinating the fusion reaction prior to and beyond docking.
液泡融合需要一系列协调的引发、对接和融合过程。SNARE蛋白参与了融合过程本身,尽管它们在这一系列过程中的精确作用仍不清楚。我们现在报告,液泡SNAP - 23同源物Vam7p是SNARE复合体的一个可移动元件,它从最初与顺式SNARE复合体的结合通过一个可溶性中间体移动到对接位点。可溶性Vam7p被特异性招募到液泡中,并且可以挽救因抗Vam7p抗体而中毒的融合反应。重组的Vam7p PX结构域和人Hrs的FYVE结构域构建体都能阻断Vam7p的招募和液泡融合,表明磷脂酰肌醇3 - 磷酸是Vam7p在液泡上的主要受体。我们提出,Vam7p循环与酵母液泡上脂质结构域的可用性相关联,这对于协调对接前后的融合反应至关重要。