Hellstern Simon, Stetefeld Jörg, Fauser Charlotte, Lustig Ariel, Engel Jürgen, Holstein Thomas W, Ozbek Suat
Department of Biophysical Chemistry, Biozentrum, University of Basel, Switzerland.
FEBS J. 2006 Jul;273(14):3230-7. doi: 10.1111/j.1742-4658.2006.05331.x. Epub 2006 Jun 15.
The nematocyst capsules of the cnidarians are specialized explosive organelles that withstand high osmotic pressures of approximately 15 MPa (150 bar). A tight disulfide network involving cysteine-rich capsule wall proteins, like minicollagens and nematocyst outer wall antigen, characterizes their molecular composition. Nematocyst discharge leads to the expulsion of a long inverted tubule that was coiled inside the capsule matrix before activation. Spinalin has been characterized as a glycine-rich, histidine-rich protein associated with spine structures on the surface of everted tubules. Here, we show that full-length Hydra spinalin can be expressed recombinantly in HEK293 cells and has the property to form disulfide-linked oligomers, reflecting its state in mature capsules. Furthermore, spinalin showed a high tendency to associate into dimers in vitro and in vivo. Our data, which show incomplete disulfide connectivity in recombinant spinalin, suggest a possible mechanism by which the spine structure may be linked to the overall capsule polymer.
刺胞动物的刺丝囊是特殊的爆炸细胞器,能承受约15兆帕(150巴)的高渗透压。涉及富含半胱氨酸的囊壁蛋白(如小胶原蛋白和刺丝囊外壁抗原)的紧密二硫键网络,是其分子组成的特征。刺丝囊放电会导致一根长的倒刺小管被排出,该小管在激活前盘绕在囊泡基质内。Spinalin被鉴定为一种富含甘氨酸和组氨酸的蛋白质,与外翻小管表面的刺结构相关。在这里,我们表明全长水螅Spinalin可以在HEK293细胞中重组表达,并具有形成二硫键连接的寡聚体的特性,反映了其在成熟囊泡中的状态。此外,Spinalin在体外和体内都表现出高度的二聚体化倾向。我们的数据显示重组Spinalin中二硫键连接不完全,这表明了一种可能的机制,通过该机制刺结构可能与整个囊泡聚合物相连。