LaBreck Christopher J, May Shannon, Viola Marissa G, Conti Joseph, Camberg Jodi L
Department of Cell and Molecular Biology, University of Rhode IslandKingston, RI, USA.
Front Mol Biosci. 2017 May 4;4:26. doi: 10.3389/fmolb.2017.00026. eCollection 2017.
ClpX is a member of the Clp/Hsp100 family of ATP-dependent chaperones and partners with ClpP, a compartmentalized protease, to degrade protein substrates bearing specific recognition signals. ClpX targets specific proteins for degradation directly or with substrate-specific adaptor proteins. Native substrates of ClpXP include proteins that form large oligomeric assemblies, such as MuA, FtsZ, and Dps in . To remodel large oligomeric substrates, ClpX utilizes multivalent targeting strategies and discriminates between assembled and unassembled substrate conformations. Although ClpX and ClpP are known to associate with protein aggregates in , a potential role for ClpXP in disaggregation remains poorly characterized. Here, we discuss strategies utilized by ClpX to recognize native and non-native protein aggregates and the mechanisms by which ClpX alone, and with ClpP, remodels the conformations of various aggregates. We show that ClpX promotes the disassembly and reactivation of aggregated Gfp-ssrA through specific substrate remodeling. In the presence of ClpP, ClpX promotes disassembly and degradation of aggregated substrates bearing specific ClpX recognition signals, including heat-aggregated Gfp-ssrA, as well as polymeric and heat-aggregated FtsZ, which is a native ClpXP substrate in . Finally, we show that ClpX is present in insoluble aggregates and prevents the accumulation of thermal FtsZ aggregates , suggesting that ClpXP participates in the management of aggregates bearing ClpX recognition signals.
ClpX是ATP依赖伴侣蛋白Clp/Hsp100家族的成员,它与一种区室化蛋白酶ClpP协同作用,降解带有特定识别信号的蛋白质底物。ClpX直接或与底物特异性衔接蛋白一起靶向特定蛋白质进行降解。ClpXP的天然底物包括形成大型寡聚体组装体的蛋白质,如噬菌体MuA、细菌细胞分裂蛋白FtsZ和大肠杆菌中的铁结合蛋白Dps。为了重塑大型寡聚体底物,ClpX采用多价靶向策略,并区分组装态和未组装态的底物构象。尽管已知ClpX和ClpP在大肠杆菌中与蛋白质聚集体相关联,但ClpXP在解聚中的潜在作用仍不清楚。在这里,我们讨论了ClpX用于识别天然和非天然蛋白质聚集体的策略,以及ClpX单独或与ClpP一起重塑各种聚集体构象的机制。我们表明,ClpX通过特定的底物重塑促进聚集的绿色荧光蛋白-ssrA的解聚和再激活。在ClpP存在的情况下,ClpX促进带有特定ClpX识别信号的聚集底物的解聚和降解,包括热聚集的绿色荧光蛋白-ssrA,以及聚合物和热聚集的FtsZ,FtsZ是大肠杆菌中的一种天然ClpXP底物。最后,我们表明ClpX存在于不溶性聚集体中,并防止热诱导的FtsZ聚集体的积累,这表明ClpXP参与了带有ClpX识别信号的聚集体的管理。