Laboratory of Structural Biochemistry, Institute of Chemistry and Biochemistry, Freie Universität Berlin, Takustraße 6, D-14195 Berlin, Germany.
Laboratory of Genetics, Institute of Biology, Freie Universität Berlin, Takustraße 6, D-14195 Berlin, Germany.
J Cell Sci. 2019 Mar 18;132(6):jcs225151. doi: 10.1242/jcs.225151.
Protein scaffolds at presynaptic active zone membranes control information transfer at synapses. For scaffold biogenesis and maintenance, scaffold components must be safely transported along axons. A spectrum of kinases has been suggested to control transport of scaffold components, but direct kinase-substrate relationships and operational principles steering phosphorylation-dependent active zone protein transport are presently unknown. Here, we show that extensive phosphorylation of a 150-residue unstructured region at the N-terminus of the highly elongated Bruchpilot (BRP) active zone protein is crucial for ordered active zone precursor transport in Point mutations that block SRPK79D kinase-mediated phosphorylation of the BRP N-terminus interfered with axonal transport, leading to BRP-positive axonal aggregates that also contain additional active zone scaffold proteins. Axonal aggregates formed only in the presence of non-phosphorylatable BRP isoforms containing the SRPK79D-targeted N-terminal stretch. We assume that specific active zone proteins are pre-assembled in transport packages and are thus co-transported as functional scaffold building blocks. Our results suggest that transient post-translational modification of a discrete unstructured domain of the master scaffold component BRP blocks oligomerization of these building blocks during their long-range transport.
蛋白质支架位于突触前的活性区膜上,控制着突触间的信息传递。为了支架的生物发生和维持,支架成分必须沿着轴突安全运输。已经提出了一系列激酶来控制支架成分的运输,但直接的激酶-底物关系和指导磷酸化依赖的活性区蛋白运输的操作原理目前尚不清楚。在这里,我们表明,高度伸长的 Bruchpilot(BRP)活性区蛋白的 N 端 150 个残基无规则区的广泛磷酸化对于有序的活性区前体运输至关重要。点突变阻止了 SRPK79D 激酶介导的 BRP N 端磷酸化,干扰了轴突运输,导致 BRP 阳性轴突聚集,其中还包含其他活性区支架蛋白。只有在含有 SRPK79D 靶向的 N 端延伸的非磷酸化 BRP 同工型的情况下,才会形成轴突聚集。我们假设特定的活性区蛋白在运输包中预先组装,因此作为功能性支架构建块共同运输。我们的结果表明,主支架成分 BRP 的离散无规则结构域的瞬时翻译后修饰在这些构建块的长距离运输过程中阻止了它们的寡聚化。