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伴侣蛋白CCT的亚基与四膜虫微管结构相关,并参与纤毛的生物发生。

Subunits of the chaperonin CCT are associated with Tetrahymena microtubule structures and are involved in cilia biogenesis.

作者信息

Seixas Cecília, Casalou Cristina, Melo Luís Viseu, Nolasco Sofia, Brogueira Pedro, Soares Helena

机构信息

Instituto Gulbenkian de Ciência, Apartado 14, P-2781 Oeiras codex, Portugal.

出版信息

Exp Cell Res. 2003 Nov 1;290(2):303-21. doi: 10.1016/s0014-4827(03)00325-2.

Abstract

The cytosolic chaperonin CCT is a heterooligomeric complex of about 900 kDa that mediates the folding of cytoskeletal proteins. We observed by indirect immunofluorescence that the Tetrahymena TpCCTalpha, TpCCTdelta, TpCCTepsilon, and TpCCTeta-subunits colocalize with tubulin in cilia, basal bodies, oral apparatus, and contractile vacuole pores. TpCCT-subunits localization was affected during reciliation. These findings combined with atomic force microscopy measurements in reciliating cells indicate that these proteins play a role during cilia biogenesis related to microtubule nucleation, tubulin transport, and/or axoneme assembly. The TpCCT-subunits were also found to be associated with cortex and cytoplasmic microtubules suggesting that they can act as microtubule-associated proteins. The TpCCTdelta being the only subunit found associated with the macronuclear envelope indicates that it has functions outside of the 900 kDa complex. Tetrahymena cytoplasm contains granular/globular-structures of TpCCT-subunits in close association with microtubule arrays. Studies of reciliation and with cycloheximide suggest that these structures may be sites of translation and folding. Combined biochemical techniques revealed that reciliation affects the oligomeric state of TpCCT-subunits being tubulin preferentially associated with smaller CCT oligomeric species in early stages of reciliation. Collectively, these findings indicate that the oligomeric state of CCT-subunits reflects the translation capacity of the cell and microtubules integrity.

摘要

胞质伴侣蛋白CCT是一种约900 kDa的异源寡聚复合物,介导细胞骨架蛋白的折叠。我们通过间接免疫荧光观察到,四膜虫的TpCCTα、TpCCTδ、TpCCTε和TpCCTη亚基与微管蛋白在纤毛、基体、口器和收缩泡孔中共定位。在纤毛再生过程中,TpCCT亚基的定位受到影响。这些发现与对再生细胞的原子力显微镜测量结果相结合,表明这些蛋白质在纤毛生物发生过程中发挥作用,与微管成核、微管蛋白运输和/或轴丝组装有关。还发现TpCCT亚基与皮层和细胞质微管相关,这表明它们可以作为微管相关蛋白发挥作用。TpCCTδ是唯一与大核膜相关的亚基,这表明它在900 kDa复合物之外具有功能。四膜虫细胞质中含有与微管阵列紧密相关的TpCCT亚基的颗粒状/球状结构。对纤毛再生和用环己酰亚胺进行的研究表明,这些结构可能是翻译和折叠的位点。综合生化技术显示,纤毛再生会影响TpCCT亚基的寡聚状态,在纤毛再生早期,微管蛋白优先与较小的CCT寡聚体物种相关。总的来说,这些发现表明CCT亚基的寡聚状态反映了细胞的翻译能力和微管的完整性。

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