Vajjhala Parimala R, Wong Julin S, To Hui-Yi, Munn Alan L
Institute for Molecular Bioscience and ARC Special Research Centre for Functional and Applied Genomics, University of Queensland, St Lucia, Queensland, Australia.
FEBS J. 2006 Jun;273(11):2357-73. doi: 10.1111/j.1742-4658.2006.05238.x.
Endocytic and biosynthetic trafficking pathways to the lysosome/vacuole converge at the prevacuolar endosomal compartment. During transport through this compartment, integral membrane proteins that are destined for delivery to the lysosome/vacuole lumen undergo multivesicular body (MVB) sorting into internal vesicles formed by invagination of the endosomal limiting membrane. Vps4 is an AAA family ATPase which plays a key role in MVB sorting and facilitates transport through endosomes. It possesses an N-terminal microtubule interacting and trafficking domain required for recruitment to endosomes and an AAA domain with an ATPase catalytic site. The recently solved 3D structure revealed a beta domain, which protrudes from the AAA domain, and a final C-terminal alpha-helix. However, the in vivo roles of these domains are not known. In this study, we have identified motifs in these domains that are highly conserved between yeast and human Vps4. We have mutated these motifs and studied the effect on yeast Vps4p function in vivo and in vitro. We show that the beta domain of the budding yeast Vps4p is not required for recruitment to endosomes, but is essential for all Vps4p endocytic functions in vivo. We also show that the beta domain is required for Vps4p homotypic interaction and for full ATPase activity. In addition, it is required for interaction with Vta1p, which works in concert with Vps4p in vivo. Our studies suggest that assembly of a Vps4p oligomeric complex with full ATPase activity that interacts with Vta1p is essential for normal endosome function.
内吞和生物合成运输途径在液泡前体的内体区室汇聚至溶酶体/液泡。在通过该区室运输过程中,注定要被递送至溶酶体/液泡腔的整合膜蛋白会经历多泡体(MVB)分选,进入由内体限制膜内陷形成的内部囊泡。Vps4是一种AAA家族ATP酶,在MVB分选过程中起关键作用,并促进通过内体的运输。它具有一个用于募集至内体的N端微管相互作用和运输结构域以及一个带有ATP酶催化位点的AAA结构域。最近解析的三维结构揭示了一个从AAA结构域突出的β结构域以及一个最后的C端α螺旋。然而,这些结构域在体内的作用尚不清楚。在本研究中,我们在这些结构域中鉴定出在酵母和人类Vps4之间高度保守的基序。我们对这些基序进行了突变,并研究了其对酵母Vps4p体内和体外功能的影响。我们表明,出芽酵母Vps4p的β结构域并非募集至内体所必需,但对Vps4p在体内的所有内吞功能至关重要。我们还表明,β结构域是Vps4p同型相互作用和完全ATP酶活性所必需的。此外,它是与Vta1p相互作用所必需的,Vta1p在体内与Vps4p协同发挥作用。我们的研究表明,组装具有与Vta1p相互作用的完全ATP酶活性的Vps4p寡聚复合物对于正常内体功能至关重要。