Baliova Martina, Jursky Frantisek
Laboratory of Neurobiology, Institute of Molecular Biology, Slovak Academy of Sciences, Dubravska cesta 21, 845 51, Bratislava, Slovakia.
Biochem Biophys Rep. 2024 May 16;38:101734. doi: 10.1016/j.bbrep.2024.101734. eCollection 2024 Jul.
The glycine transporter GlyT2 plays an important role in glycine-inhibitory neurotransmission of the hindbrain and spinal cord. Its special feature is the extended N-terminus, which contains a large number of potentially phosphorylated serine and threonine residues. Due to its unstructured nature, it is difficult to address the changes introduced by potential phosphorylation. Here, we used relatively simple methods such as calpain sensitivity, Bradford instability, and SDS electrophoretic mobility shift to investigate the effect of multiple phosphomimetic mutations versus neutral mutations on GlyT2N properties. The replacement of several serines or threonines with neutral alanines did not have a significant effect on the studied GlyT2N properties. Replacement of the same residues with phosphomimetic aspartate resulted in significant alterations in calpain cleavage patterns, Bradford instability, and SDS gel protein mobility. Interestingly, a correlation between the relative intensity of the measured effects was observed, indicating that they all reflect similar structural changes introduced by potential phosphorylation Results indicate that a potential single or multiple phosphorylation significantly alters the proteomic properties of the glycine transporter GlyT2 N-terminus. Assays can be helpful in the first screening of structurally significant and possibly phosphorylated residues in the N-terminus of GlyT2.
甘氨酸转运体GlyT2在后脑和脊髓的甘氨酸抑制性神经传递中发挥着重要作用。其特点是N端延伸,含有大量潜在的磷酸化丝氨酸和苏氨酸残基。由于其无结构的性质,难以研究潜在磷酸化所带来的变化。在此,我们使用了相对简单的方法,如钙蛋白酶敏感性、考马斯亮蓝不稳定性和SDS电泳迁移率变化,来研究多个模拟磷酸化突变与中性突变对GlyT2N性质的影响。用中性丙氨酸取代几个丝氨酸或苏氨酸对所研究的GlyT2N性质没有显著影响。用模拟磷酸化的天冬氨酸取代相同残基会导致钙蛋白酶切割模式、考马斯亮蓝不稳定性和SDS凝胶蛋白迁移率发生显著改变。有趣的是,观察到所测效应的相对强度之间存在相关性,表明它们都反映了潜在磷酸化所引入的类似结构变化。结果表明潜在的单磷酸化或多磷酸化会显著改变甘氨酸转运体GlyT2 N端的蛋白质组学性质。这些测定方法有助于初步筛选GlyT2 N端结构上重要且可能磷酸化的残基。