Bläser S, Röseler S, Rempp H, Bartsch I, Bauer H, Lieber M, Lessmann E, Weingarten L, Busse A, Huber M, Zieger B
Department of Paediatrics and Adolescent Medicine, University Hospital Freiburg, Mathildenstrasse 1, D-79106 Germany.
J Pathol. 2006 Sep;210(1):103-10. doi: 10.1002/path.2013.
The septin SEPT11 is a novel member of the highly conserved septin family. Septins are cytoskeletal GTPases, which form heteropolymeric complexes. They are involved in cytokinesis and other cellular processes, such as vesicle trafficking and exocytosis. SEPT11 has strong homology to SEPT8. Previously, we identified the interaction of SEPT5 and SEPT8. Using the yeast two-hybrid system, we now demonstrate that SEPT11 partners with SEPT5. The molecular interaction of SEPT11 with SEPT5 was verified by coprecipitation of SEPT5 and SEPT11 from lysates of the human T-cell leukaemia cell line JURKAT and by fluorescence resonance energy transfer. The interaction between SEPT5 and SEPT11 requires the GTP-binding domain and the C-terminal extension. Western analysis in various mouse and human tissues revealed that expression of SEPT11 is restricted to the same tissues as those expressing SEPT5, suggesting that SEPT11 and SEPT5 are components of a cell-specific septin complex. SEPT5, which is expressed in human umbilical vein endothelial cells (HUVECs), has been reported to play an important role in exocytosis. We now report that HUVECs also express SEPT11. Given the interactivity between SEPT5 and SEPT11 as shown above and their coexpression in HUVECs, it may be that a complex formed by these two proteins is involved in the exocytosis mechanism in HUVECs.
septin蛋白SEPT11是高度保守的septin家族的一个新成员。septin蛋白是细胞骨架GTP酶,可形成异聚体复合物。它们参与胞质分裂和其他细胞过程,如囊泡运输和胞吐作用。SEPT11与SEPT8具有很强的同源性。此前,我们鉴定了SEPT5和SEPT8之间的相互作用。利用酵母双杂交系统,我们现在证明SEPT11与SEPT5相互作用。通过从人T细胞白血病细胞系JURKAT的裂解物中共沉淀SEPT5和SEPT11以及荧光共振能量转移,验证了SEPT11与SEPT5的分子相互作用。SEPT5和SEPT11之间的相互作用需要GTP结合结构域和C末端延伸。对各种小鼠和人类组织的蛋白质免疫印迹分析表明,SEPT11的表达仅限于与表达SEPT5的组织相同的组织,这表明SEPT11和SEPT5是细胞特异性septin复合物的组成成分。据报道,在人脐静脉内皮细胞(HUVECs)中表达的SEPT5在胞吐作用中起重要作用。我们现在报道HUVECs也表达SEPT11。鉴于上述SEPT5和SEPT11之间的相互作用以及它们在HUVECs中的共表达,可能是这两种蛋白形成的复合物参与了HUVECs的胞吐机制。