Park Sookhee, Rancour David M, Bednarek Sebastian Y
Department of Biochemistry, University of Wisconsin, Madison, Wisconsin 53706, USA.
J Biol Chem. 2007 Feb 23;282(8):5217-24. doi: 10.1074/jbc.M609042200. Epub 2006 Dec 26.
CDC48/p97 is an essential AAA-ATPase chaperone that functions in numerous diverse cellular activities through its interaction with specific adapter proteins. The ubiquitin regulatory X (UBX)-containing protein, PUX1, functions to regulate the hexameric structure and ATPase activity of AtCDC48. To characterize the biochemical mechanism of PUX1 action on AtCDC48, we have defined domains of both PUX1 and AtCDC48 that are critical for interaction and oligomer disassembly. Binding of PUX1 to AtCDC48 was mediated through a region containing both the UBX domain and the immediate C-terminal flanking amino acids (UBX-C). Like other UBX domains, the primary binding site for the UBX-C of PUX1 is the N(a) domain of AtCDC48. Alternative plant PUX protein UBX domains also bind AtCDC48 through the N terminus but were found not to be able to substitute for the action imparted by the UBX-C of PUX1 in hexamer disassembly, suggesting unique features for the UBX-C of PUX1. We propose that the PUX1 UBX-C domain modulates a second binding site on AtCDC48 required for the N-terminal domain of PUX1 to interact with and promote dissociation of the AtCDC48 hexamer. Utilizing Atcdc48 ATP hydrolysis and binding mutants, we demonstrate that PUX1 binding was not affected but that hexamer disassembly was significantly influenced by the ATP status of AtCDC48. ATPase activity in both the D1 and the D2 domains was critical for PUX1-mediated AtCDC48 hexamer disassembly. Together these results provide new mechanistic insight into how the hexameric status and ATPase activity of AtCDC48 are modulated.
CDC48/p97是一种必需的AAA-ATP酶伴侣蛋白,它通过与特定衔接蛋白相互作用,在多种不同的细胞活动中发挥作用。含泛素调节X(UBX)结构域的蛋白PUX1,其功能是调节AtCDC48的六聚体结构和ATP酶活性。为了阐明PUX1对AtCDC48作用的生化机制,我们确定了PUX1和AtCDC48中对相互作用和寡聚体解聚至关重要的结构域。PUX1与AtCDC48的结合是通过一个包含UBX结构域和紧邻的C末端侧翼氨基酸(UBX-C)的区域介导的。与其他UBX结构域一样,PUX1的UBX-C的主要结合位点是AtCDC48的N(a)结构域。其他植物PUX蛋白的UBX结构域也通过N末端与AtCDC48结合,但发现它们不能替代PUX1的UBX-C在六聚体解聚中所发挥的作用,这表明PUX1的UBX-C具有独特特征。我们提出,PUX1的UBX-C结构域调节AtCDC48上的第二个结合位点,该位点是PUX1的N末端结构域与AtCDC48六聚体相互作用并促进其解离所必需的。利用Atcdc48 ATP水解和结合突变体,我们证明PUX1的结合不受影响,但AtCDC48的ATP状态对六聚体解聚有显著影响。D1和D2结构域中的ATP酶活性对PUX1介导的AtCDC48六聚体解聚至关重要。这些结果共同为AtCDC48的六聚体状态和ATP酶活性如何被调节提供了新的机制见解。