Department of Biochemistry and Molecular Biology, University of Georgia, Athens, GA, USA.
Complex Carbohydrate Research Center, University of Georgia, Athens, GA, USA.
Nat Plants. 2022 Nov;8(11):1289-1303. doi: 10.1038/s41477-022-01270-3. Epub 2022 Nov 10.
Rhamnogalacturonan I (RG-I) is a major plant cell wall pectic polysaccharide defined by its repeating disaccharide backbone structure of [4)-α-D-GalA-(1,2)-α-L-Rha-(1,]. A family of RG-I:Rhamnosyltransferases (RRT) has previously been identified, but synthesis of the RG-I backbone has not been demonstrated in vitro because the identity of Rhamnogalacturonan I:Galaturonosyltransferase (RG-I:GalAT) was unknown. Here a putative glycosyltransferase, At1g28240/MUCI70, is shown to be an RG-I:GalAT. The name RGGAT1 is proposed to reflect the catalytic activity of this enzyme. When incubated together with the rhamnosyltransferase RRT4, the combined activities of RGGAT1 and RRT4 result in elongation of RG-I acceptors in vitro into a polymeric product. RGGAT1 is a member of a new GT family categorized as GT116, which does not group into existing GT-A clades and is phylogenetically distinct from the GALACTURONOSYLTRANSFERASE (GAUT) family of GalA transferases that synthesize the backbone of the pectin homogalacturonan. RGGAT1 has a predicted GT-A fold structure but employs a metal-independent catalytic mechanism that is rare among glycosyltransferases with this fold type. The identification of RGGAT1 and the 8-member Arabidopsis GT116 family provides a new avenue for studying the mechanism of RG-I synthesis and the function of RG-I in plants.
鼠李半乳糖醛酸 I(RG-I)是一种主要的植物细胞壁果胶多糖,其特征在于其重复二糖骨架结构为[4)-α-D-GalA-(1,2)-α-L-Rha-(1,)。先前已经鉴定了一系列 RG-I:鼠李糖基转移酶(RRT),但由于 RG-I:半乳糖基转移酶(RG-I:GalAT)的身份未知,因此尚未在体外证明 RG-I 骨架的合成。这里显示出一种假定的糖基转移酶,At1g28240/MUCI70,是 RG-I:GalAT。提议将 RGGAT1 这个名称反映该酶的催化活性。当与糖基转移酶 RRT4 一起孵育时,RGGAT1 和 RRT4 的组合活性导致 RG-I 受体在体外延伸成聚合物产物。RGGAT1 是 GT116 新 GT 家族的成员,不属于现有 GT-A 分支,并且在系统发育上与合成果胶 Homogalacturonan 骨架的半乳糖基转移酶家族 GALACTURONOSYLTRANSFERASE(GAUT)家族明显不同。RGGAT1 具有预测的 GT-A 折叠结构,但采用了金属非依赖性催化机制,这种折叠类型的糖基转移酶很少采用这种机制。RGGAT1 的鉴定和拟南芥 GT116 家族的 8 个成员为研究 RG-I 合成的机制和 RG-I 在植物中的功能提供了新的途径。