Osada Naoko, Mishra Sushil K, Nakano Miyako, Tokoro Yuko, Nagae Masamichi, Doerksen Robert J, Kizuka Yasuhiko
Graduate School of Natural Science and Technology, Gifu University, Gifu 501-1193, Japan.
Glycoscience Center of Research Excellence, Department of BioMolecular Sciences, University of Mississippi, Oxford, MS 38677, USA.
iScience. 2024 Sep 28;27(11):111066. doi: 10.1016/j.isci.2024.111066. eCollection 2024 Nov 15.
-Acetylglucosaminyltransferases-IVa (GnT-IVa or MGAT4A) and -IVb (MGAT4B) are glycosyltransferase isozymes synthesizing the β1,4-GlcNAc branch in -glycans, a glycan structure involved in diabetes. These enzymes uniquely have a non-catalytic lectin domain, which selectively recognizes the GnT-IV product -glycan branch, but the role of this lectin domain has remained unclear. Here, using UDP-Glo enzyme assays, we discovered that this domain is required for activity toward glycoprotein substrates but not toward free glycans. Furthermore, we found that the lectin domain itself is decorated with an -glycan, which can serve as a self-ligand and interact with the ligand binding site of the lectin domain in a glycan structure-dependent manner. Enzyme assays using glycan-remodeled GnT-IVa demonstrated that the interaction of the self-ligand with the lectin domain suppresses GnT-IVa activity toward glycoprotein substrates. These findings unveiled a lectin-assisted self-regulatory mechanism of glycosyltransferases, which deepens our understanding of the complex pathway of -glycan biosynthesis.
N-乙酰葡糖胺基转移酶-IVa(GnT-IVa或MGAT4A)和-IVb(MGAT4B)是糖基转移酶同工酶,可在聚糖中合成β1,4- GlcNAc分支,聚糖结构与糖尿病有关。这些酶独特地具有一个非催化凝集素结构域,该结构域选择性识别GnT-IV产物聚糖分支,但该凝集素结构域的作用仍不清楚。在这里,我们使用UDP-Glo酶分析发现,该结构域对于糖蛋白底物的活性是必需的,但对于游离聚糖则不是。此外,我们发现凝集素结构域本身被一个聚糖修饰,该聚糖可以作为自身配体,并以聚糖结构依赖的方式与凝集素结构域的配体结合位点相互作用。使用聚糖重塑的GnT-IVa进行的酶分析表明,自身配体与凝集素结构域的相互作用抑制了GnT-IVa对糖蛋白底物的活性。这些发现揭示了糖基转移酶的凝集素辅助自我调节机制,加深了我们对聚糖生物合成复杂途径的理解。