Pintard Lionel, Willems Andrew, Peter Matthias
Institute of Biochemistry, ETH Hoenggerberg, Zuerich, Switzerland.
EMBO J. 2004 Apr 21;23(8):1681-7. doi: 10.1038/sj.emboj.7600186. Epub 2004 Apr 8.
Cullin-based E3 ligases target substrates for ubiquitin-dependent degradation by the 26S proteasome. The SCF (Skp1-Cul1-F-box) and ECS (ElonginC-Cul2-SOCS box) complexes are so far the best-characterized cullin-based ligases. Their atomic structure has been solved recently, and several substrates have been described in different organisms. In addition to Cul1 and Cul2, higher eucaryotic genomes encode for three other cullins: Cul3, Cul4, and Cul5. Recent results have shed light on the molecular composition and function of Cul3-based E3 ligases. In these complexes, BTB-domain-containing proteins may bridge the cullin to the substrate in a single polypeptide, while Skp1/F-box or ElonginC/SOCS heterodimers fulfill this function in the SCF and ECS complexes. BTB-containing proteins are evolutionary conserved and involved in diverse biological processes, but their function has not previously been linked to ubiquitin-dependent degradation. In this review, we present these new findings and compare the composition of Cul3-based ligases to the well-defined SCF and ECS ligases.
基于Cullin的E3连接酶通过26S蛋白酶体将底物靶向泛素依赖性降解。到目前为止,SCF(Skp1-Cul1-F-box)和ECS(ElonginC-Cul2-SOCS盒)复合物是基于Cullin的连接酶中特征最明确的。它们的原子结构最近已被解析,并且在不同生物体中描述了几种底物。除了Cul1和Cul2,高等真核生物基因组还编码另外三种Cullin:Cul3、Cul4和Cul5。最近的研究结果揭示了基于Cul3的E3连接酶的分子组成和功能。在这些复合物中,含BTB结构域的蛋白质可能在单一多肽中将Cullin与底物连接起来,而Skp1/F-box或ElonginC/SOCS异二聚体在SCF和ECS复合物中发挥此功能。含BTB的蛋白质在进化上是保守的,参与多种生物学过程,但它们的功能以前尚未与泛素依赖性降解联系起来。在本综述中,我们展示了这些新发现,并将基于Cul3的连接酶的组成与定义明确的SCF和ECS连接酶进行比较。