Animal Navigation/Neurosensorics, Institute for Biology and Environmental Sciences, University of Oldenburg, Oldenburg, Germany.
Ruiz Department of Ophthalmology & Visual Science, The University of Texas Health Science Center at Houston, Houston, TX, 77030, USA.
Sci Rep. 2020 Oct 27;10(1):18378. doi: 10.1038/s41598-020-75375-0.
Connexin36 (Cx36) is the most abundant connexin in central nervous system neurons. It forms gap junction channels that act as electrical synapses. Similar to chemical synapses, Cx36-containing gap junctions undergo activity-dependent plasticity and complex regulation. Cx36 gap junctions represent multimolecular complexes and contain cytoskeletal, regulatory and scaffolding proteins, which regulate channel conductance, assembly and turnover. The amino acid sequence of mammalian Cx36 harbors a phosphorylation site for the Ca/calmodulin-dependent kinase II at serine 315. This regulatory site is homologous to the serine 298 in perch Cx35 and in close vicinity to a PDZ binding domain at the very C-terminal end of the protein. We hypothesized that this phosphorylation site may serve as a molecular switch, influencing the affinity of the PDZ binding domain for its binding partners. Protein microarray and pulldown experiments revealed that this is indeed the case: phosphorylation of serine 298 decreased the binding affinity for MUPP1, a known scaffolding partner of connexin36, and increased the binding affinity for two different 14-3-3 proteins. Although we did not find the same effect in cell culture experiments, our data suggest that phosphorylation of serine 315/298 may serve to recruit different proteins to connexin36/35-containing gap junctions in an activity-dependent manner.
连接蛋白 36(Cx36)是中枢神经系统神经元中含量最丰富的连接蛋白。它形成间隙连接通道,充当电突触。与化学突触类似,含 Cx36 的间隙连接经历活动依赖性可塑性和复杂调节。Cx36 间隙连接代表多分子复合物,包含细胞骨架、调节和支架蛋白,它们调节通道电导、组装和周转。哺乳动物 Cx36 的氨基酸序列含有丝氨酸 315 处钙/钙调蛋白依赖性激酶 II 的磷酸化位点。该调节位点与鲈鱼 Cx35 的丝氨酸 298 同源,并且非常接近蛋白质的 C 末端末端的 PDZ 结合域。我们假设该磷酸化位点可能充当分子开关,影响 PDZ 结合域与其结合伴侣的亲和力。蛋白质微阵列和下拉实验表明情况确实如此:丝氨酸 298 的磷酸化降低了与 MUPP1 的结合亲和力,MUPP1 是 Cx36 的已知支架伴侣,同时增加了与两种不同的 14-3-3 蛋白的结合亲和力。尽管我们在细胞培养实验中未发现相同的效果,但我们的数据表明丝氨酸 315/298 的磷酸化可能有助于以活动依赖性方式将不同的蛋白质募集到含 Cx36/35 的间隙连接中。