Vincent Olivier, Rainbow Lynne, Tilburn Joan, Arst Herbert N, Peñalva Miguel A
Departamento de Microbiología Molecular, Centro de Investigaciones Biológicas del CSIC, Madrid 28006, Spain.
Mol Cell Biol. 2003 Mar;23(5):1647-55. doi: 10.1128/MCB.23.5.1647-1655.2003.
The zinc finger transcription factor PacC undergoes two-step proteolytic activation in response to alkaline ambient pH. PalA is a component of the fungal ambient pH signal transduction pathway. Its mammalian homologue AIP1/Alix interacts with the apoptosis-linked protein ALG-2. We show that both PalA and AIP1/Alix recognize a protein-protein binding motif that we denote YPXL/I, where Tyr, Pro, and Leu/Ile are crucial for its interactive properties. Two such motifs flanking the signaling protease cleavage site mediate direct binding of PalA to PacC, required for the first and only pH-regulated cleavage of this transcription factor. PalA can bind the "closed" (i.e., wild-type full-length) conformer of PacC, suggesting that PalA binding constitutes the first stage in the two-step proteolytic cascade, recruiting or facilitating access of the signaling protease, presumably PalB. In addition to recognizing YPXL/I motifs, both PalA and AIP1/Alix interact with the Aspergillus class E Vps protein Vps32 homologue, a member of a protein complex involved in the early steps of the multivesicular body pathway, suggesting that this interaction is an additional feature of proteins of the PalA/AIP1/Alix family.
锌指转录因子PacC会响应碱性环境pH值而经历两步蛋白水解激活过程。PalA是真菌环境pH信号转导途径的一个组成部分。其哺乳动物同源物AIP1/Alix与凋亡相关蛋白ALG-2相互作用。我们发现PalA和AIP1/Alix都能识别一种我们称为YPXL/I的蛋白质-蛋白质结合基序,其中酪氨酸、脯氨酸和亮氨酸/异亮氨酸对其相互作用特性至关重要。位于信号蛋白酶切割位点两侧的两个这样的基序介导了PalA与PacC的直接结合,这是该转录因子首次也是唯一一次pH调节切割所必需的。PalA可以结合PacC的“封闭”(即野生型全长)构象异构体,这表明PalA的结合构成了两步蛋白水解级联反应的第一阶段,招募或促进了信号蛋白酶(可能是PalB)的作用。除了识别YPXL/I基序外,PalA和AIP1/Alix还与曲霉属E类Vps蛋白Vps32同源物相互作用,Vps32同源物是参与多囊泡体途径早期步骤的蛋白质复合物的成员,这表明这种相互作用是PalA/AIP1/Alix家族蛋白质的一个额外特征。