Nekhoroshkova Elena, Albert Stefan, Becker Matthias, Rapp Ulf R
Institut für Medizinische Strahlenkunde und Zellforschung, University of Würzburg, Würzburg, Germany.
PLoS One. 2009;4(2):e4647. doi: 10.1371/journal.pone.0004647. Epub 2009 Feb 27.
RAF kinases direct ERK MAPK signaling to distinct subcellular compartments in response to growth factor stimulation.
METHODOLOGY/PRINCIPAL FINDINGS: Of the three mammalian isoforms A-RAF is special in that one of its two lipid binding domains mediates a unique pattern of membrane localization. Specific membrane binding is retained by an N-terminal fragment (AR149) that corresponds to a naturally occurring splice variant termed DA-RAF2. AR149 colocalizes with ARF6 on tubular endosomes and has a dominant negative effect on endocytic trafficking. Moreover actin polymerization of yeast and mammalian cells is abolished. AR149/DA-RAF2 does not affect the internalization step of endocytosis, but trafficking to the recycling compartment.
CONCLUSIONS/SIGNIFICANCE: A-RAF induced ERK activation is required for this step by activating ARF6, as A-RAF depletion or inhibition of the A-RAF controlled MEK-ERK cascade blocks recycling. These data led to a new model for A-RAF function in endocytic trafficking.
RAF激酶在生长因子刺激下将ERK MAPK信号传导至不同的亚细胞区室。
方法/主要发现:在三种哺乳动物同工型中,A-RAF很特别,因为其两个脂质结合结构域之一介导了一种独特的膜定位模式。N端片段(AR149)保留了特异性膜结合,该片段对应于一种天然存在的剪接变体,称为DA-RAF2。AR149与ARF6在管状内体上共定位,并且对胞吞运输具有显性负效应。此外,酵母和哺乳动物细胞的肌动蛋白聚合被消除。AR149/DA-RAF2不影响胞吞作用的内化步骤,但影响向再循环区室的运输。
结论/意义:通过激活ARF6,此步骤需要A-RAF诱导的ERK激活,因为A-RAF的缺失或A-RAF控制的MEK-ERK级联反应的抑制会阻断再循环。这些数据导致了一种关于A-RAF在胞吞运输中功能的新模型。