Stetefeld Jörg, Alexandrescu Andrei T, Maciejewski Mark W, Jenny Margrit, Rathgeb-Szabo Klara, Schulthess Therese, Landwehr Ruth, Frank Sabine, Ruegg Markus A, Kammerer Richard A
Department of Biophysical Chemistry, University of Basel, Klingelbergstrasse 70, CH-4056 Basel, Switzerland.
Structure. 2004 Mar;12(3):503-15. doi: 10.1016/j.str.2004.02.001.
The aggregation of acetylcholine receptors on postsynaptic membranes is a key step in neuromuscular junction development. This process depends on alternatively spliced forms of the proteoglycan agrin with "B-inserts" of 8, 11, or 19 residues in the protein's globular C-terminal domain, G3. Structures of the neural B8 and B11 forms of agrin-G3 were determined by X-ray crystallography. The structure of G3-B0, which lacks inserts, was determined by NMR. The agrin-G3 domain adopts a beta jellyroll fold. The B insert site is flanked by four loops on one edge of the beta sandwich. The loops form a surface that corresponds to a versatile interaction interface in the family of structurally related LNS proteins. NMR and X-ray data indicate that this interaction interface is flexible in agrin-G3 and that flexibility is reduced by Ca(2+) binding. The plasticity of the interaction interface could enable different splice forms of agrin to select between multiple binding partners.
突触后膜上乙酰胆碱受体的聚集是神经肌肉接头发育的关键步骤。这一过程取决于蛋白聚糖聚集蛋白的可变剪接形式,其在蛋白质的球状C末端结构域G3中具有8、11或19个残基的“B插入序列”。通过X射线晶体学确定了聚集蛋白-G3的神经B8和B11形式的结构。通过核磁共振确定了缺乏插入序列的G3-B0的结构。聚集蛋白-G3结构域采用β果冻卷折叠。B插入位点在β三明治的一条边上由四个环包围。这些环形成了一个表面,对应于结构相关的LNS蛋白家族中的一个通用相互作用界面。核磁共振和X射线数据表明,这种相互作用界面在聚集蛋白-G3中是灵活的,并且通过Ca(2+)结合降低了灵活性。相互作用界面的可塑性可以使聚集蛋白的不同剪接形式在多个结合伴侣之间进行选择。