Stone Sophia L, Hauksdóttir Herborg, Troy Andrew, Herschleb Jill, Kraft Edward, Callis Judy
Section of Molecular and Cellular Biology, Division of Biological Sciences , University of California, Davis, California 95616, USA.
Plant Physiol. 2005 Jan;137(1):13-30. doi: 10.1104/pp.104.052423.
Approximately 5% of the Arabidopsis (Arabidopsis thaliana) proteome is predicted to be involved in the ubiquitination/26S proteasome pathway. The majority of these predicted proteins have identity to conserved domains found in E3 ligases, of which there are multiple types. The RING-type E3 is characterized by the presence of a cysteine-rich domain that coordinates two zinc atoms. Database searches followed by extensive manual curation identified 469 predicted Arabidopsis RING domain-containing proteins. In addition to the two canonical RING types (C3H2C3 or C3HC4), additional types of modified RING domains, named RING-v, RING-D, RING-S/T, RING-G, and RING-C2, were identified. The modified RINGs differ in either the spacing between metal ligands or have substitutions at one or more of the metal ligand positions. The majority of the canonical and modified RING domain-containing proteins analyzed were active in in vitro ubiquitination assays, catalyzing polyubiquitination with the E2 AtUBC8. To help identity regions of the proteins that may interact with substrates, domain analyses of the amino acids outside the RING domain classified RING proteins into 30 different groups. Several characterized protein-protein interaction domains were identified, as well as additional conserved domains not described previously. The two largest classes of RING proteins contain either no identifiable domain or a transmembrane domain. The presence of such a large and diverse number of RING domain-containing proteins that function as ubiquitin E3 ligases suggests that target-specific proteolysis by these E3 ligases is a complex and important part of cellular regulation in Arabidopsis.
据预测,拟南芥(Arabidopsis thaliana)蛋白质组中约5%的蛋白质参与泛素化/26S蛋白酶体途径。这些预测的蛋白质大多数与E3连接酶中发现的保守结构域具有同源性,E3连接酶有多种类型。RING型E3的特征是存在一个富含半胱氨酸的结构域,该结构域可配位两个锌原子。通过数据库搜索并经过广泛的人工整理,鉴定出469个预测的拟南芥含RING结构域的蛋白质。除了两种典型的RING类型(C3H2C3或C3HC4)外,还鉴定出了其他类型的修饰RING结构域,命名为RING-v、RING-D、RING-S/T、RING-G和RING-C2。修饰后的RING在金属配体之间的间距上有所不同,或者在一个或多个金属配体位置上有取代。分析的大多数典型和修饰的含RING结构域的蛋白质在体外泛素化试验中具有活性,可与E2 AtUBC8催化多聚泛素化。为了帮助确定可能与底物相互作用的蛋白质区域,对RING结构域以外的氨基酸进行结构域分析,将RING蛋白分为30个不同的组。鉴定出了几个已表征的蛋白质-蛋白质相互作用结构域,以及以前未描述的其他保守结构域。最大的两类RING蛋白要么没有可识别的结构域,要么有一个跨膜结构域。如此大量且多样的含RING结构域的蛋白质作为泛素E3连接酶发挥作用,这表明这些E3连接酶介导的靶向特异性蛋白水解是拟南芥细胞调控中一个复杂而重要的部分。