Leipold Michael D, Kaniuk Natalia A, Whitfield Chris
Department of Molecular and Cellular Biology, University of Guelph, Guelph, Ontario N1G 2W1, Canada.
J Biol Chem. 2007 Jan 12;282(2):1257-64. doi: 10.1074/jbc.M608164200. Epub 2006 Nov 7.
The waaJ gene encodes an alpha-1,2-glucosyltransferase involved in the synthesis of the outer core region of the lipopolysaccha-ride of some Escherichia coli and Salmonella isolates. WaaJ belongs to glycosyltransferase CAZy family 8, characterized by the GT-A fold, a DXD motif, and by retention of configuration at the anomeric carbon of the donor sugar. Detailed kinetic and structural information for bacterial family 8 glycosyltransferases has resulted from studies of Neisseria meningitidis LgtC. As many as 28 amino acids could be deleted from the C terminus of LgtC without affecting its in vitro catalytic behavior. This C-terminal domain has a high ratio of positively charged and hydrophobic residues, a feature conserved in WaaJ and some other family 8 representatives. Unexpectedly, deletion of as few as five residues from the C terminus of WaaJ resulted in substantially reduced in vivo activity. With deletions of 15 residues or less, activity was only detected when levels of expression were elevated. No in vivo activity was detected after the removal of 20 amino acids, regardless of expression levels. Longer deletions (20 residues and greater) compromised the ability of WaaJ to associate with the membrane. However, the reduced in vivo activity in enzymes lacking 5-12 C-terminal residues also reflected a dramatic drop in catalytic activity in vitro (a 294-fold decrease in the apparent kcat/Km,LPS). Deletions removing 20 or more residues resulted in a protein showing no detectable in vitro activity. Therefore, the C-terminal domain of WaaJ plays a critical role in enzyme function.
waaJ基因编码一种α-1,2-葡糖基转移酶,参与某些大肠杆菌和沙门氏菌分离株脂多糖外核心区域的合成。WaaJ属于糖基转移酶CAZy家族8,其特征在于GT-A折叠、DXD基序以及供体糖异头碳构型的保留。对脑膜炎奈瑟氏菌LgtC的研究得出了细菌家族8糖基转移酶的详细动力学和结构信息。从LgtC的C末端可以删除多达28个氨基酸而不影响其体外催化行为。该C末端结构域具有高比例的带正电荷和疏水残基,这一特征在WaaJ和其他一些家族8代表中是保守的。出乎意料的是,从WaaJ的C末端仅删除五个残基就导致体内活性大幅降低。删除15个或更少的残基时,只有在表达水平升高时才能检测到活性。去除20个氨基酸后,无论表达水平如何,均未检测到体内活性。更长的缺失(20个及以上残基)损害了WaaJ与膜结合的能力。然而,缺乏5-12个C末端残基的酶体内活性降低也反映了体外催化活性的急剧下降(表观kcat/Km,LPS降低294倍)。删除20个或更多残基导致蛋白质在体外没有可检测到的活性。因此,WaaJ的C末端结构域在酶功能中起关键作用。