Hara Taichi, Kamura Takumi, Kotoshiba Shuhei, Takahashi Hidehisa, Fujiwara Kenichiro, Onoyama Ichiro, Shirakawa Masahiro, Mizushima Noboru, Nakayama Keiichi I
Department of Molecular and Cellular Biology, Medical Institute of Bioregulation, Kyushu University, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan.
Mol Cell Biol. 2005 Nov;25(21):9292-303. doi: 10.1128/MCB.25.21.9292-9303.2005.
KPC2 (Kip1 ubiquitylation-promoting complex 2) together with KPC1 forms the ubiquitin ligase KPC, which regulates degradation of the cyclin-dependent kinase inhibitor p27 at the G(1) phase of the cell cycle. KPC2 contains a ubiquitin-like (UBL) domain, two ubiquitin-associated (UBA) domains, and a heat shock chaperonin-binding (STI1) domain. We now show that KPC2 interacts with KPC1 through its UBL domain, with the 26S proteasome through its UBL and NH(2)-terminal UBA domains, and with polyubiquitylated proteins through its UBA domains. The association of KPC2 with KPC1 was found to stabilize KPC1 in a manner dependent on the STI1 domain of KPC2. KPC2 mutants that lacked either the NH(2)-terminal or the COOH-terminal UBA domain supported the polyubiquitylation of p27 in vitro, whereas a KPC2 derivative lacking the STI1 domain was greatly impaired in this regard. Depletion of KPC2 by RNA interference resulted in inhibition of p27 degradation at the G(1) phase, and introduction of KPC2 derivatives into the KPC2-depleted cells revealed that the NH(2)-terminal UBA domain of KPC2 is essential for p27 degradation. These observations suggest that KPC2 cooperatively regulates p27 degradation with KPC1 and that the STI1 domain as well as the UBL and UBA domains of KPC2 are indispensable for its function.
KPC2(Kip1泛素化促进复合物2)与KPC1共同形成泛素连接酶KPC,该酶在细胞周期的G1期调节细胞周期蛋白依赖性激酶抑制剂p27的降解。KPC2包含一个类泛素(UBL)结构域、两个泛素相关(UBA)结构域和一个热休克伴侣蛋白结合(STI1)结构域。我们现在表明,KPC2通过其UBL结构域与KPC1相互作用,通过其UBL和氨基末端UBA结构域与26S蛋白酶体相互作用,并通过其UBA结构域与多泛素化蛋白相互作用。发现KPC2与KPC1的结合以依赖于KPC2的STI1结构域的方式稳定KPC1。缺乏氨基末端或羧基末端UBA结构域的KPC2突变体在体外支持p27的多泛素化,而缺乏STI1结构域的KPC2衍生物在这方面则受到极大损害。通过RNA干扰耗尽KPC2导致G1期p27降解受到抑制,并且将KPC2衍生物引入KPC2耗尽的细胞表明,KPC2的氨基末端UBA结构域对于p27降解至关重要。这些观察结果表明,KPC2与KPC1协同调节p27降解,并且KPC2的STI1结构域以及UBL和UBA结构域对于其功能是不可或缺的。