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体外吸收周期中破骨细胞细胞骨架的动力学

Kinetics of the osteoclast cytoskeleton during the resorption cycle in vitro.

作者信息

Lakkakorpi P T, Väänänen H K

机构信息

Department of Anatomy, University of Oulu, Finland.

出版信息

J Bone Miner Res. 1991 Aug;6(8):817-26. doi: 10.1002/jbmr.5650060806.

Abstract

Resorption and migration phases alternate in the life of the osteoclast. We have previously described a specific microfilament structure at the attachment sites in resorbing osteoclasts. In the present study we have examined microfilaments and microtubules in both resorbing and migrating rat osteoclasts cultured on bone slices. In migrating osteoclasts microfilaments form so-called podosome structures containing vinculin, talin, and F-actin at the paramarginal area of the cell. When the osteoclast prepares itself for resorption, the podosomes gather to a certain area and form a broad ring around the area, which is then resorbed. In the resorbing osteoclast, vinculin and talin form a continuous double circle, which may be partially formed by podosomes, and between these double circles a broad zone is formed by F-actin. Narrow vinculin and F-actin rings were found in osteoclasts at the end of the resorption phase. The different configurations of microfilaments in 1 and 2 day cultures were correlated in terms of their relationship to the resorption lacunae. The vitamin A derivative isotretinoin significantly stimulated resorption and increased the number of microfilament configurations associated with the resorption pits. On the other hand, Bt2cAMP abolished resorption and prevented the formation of a specific ring structure of microfilaments. Based on these data, a kinetic model of the whole migration-resorption cycle of the osteoclast cultured on the bone slice is presented. With alpha-tubulin stainings of microtubules two different cytoskeletal organizations were observed. In migrating osteoclasts, microtubules were evenly distributed over the whole cell. In the resorbing osteoclast, there was a noticeable concentration of these cytoskeletal structures at cytoplasmic sites closest to the resorption lacuna. This orientation of microtubules may reflect the active secretory function of the resorbing osteoclast.

摘要

破骨细胞的生命周期中,吸收阶段和迁移阶段交替出现。我们之前曾描述过正在进行吸收的破骨细胞附着位点处的一种特定微丝结构。在本研究中,我们检测了在骨切片上培养的正在进行吸收和迁移的大鼠破骨细胞中的微丝和微管。在迁移的破骨细胞中,微丝在细胞边缘区域形成所谓的包含纽蛋白、踝蛋白和F - 肌动蛋白的足体结构。当破骨细胞准备进行吸收时,足体聚集到特定区域并在该区域周围形成一个宽环,随后该区域被吸收。在进行吸收的破骨细胞中,纽蛋白和踝蛋白形成一个连续的双环,这可能部分由足体形成,并且在这些双环之间由F - 肌动蛋白形成一个宽区域。在吸收阶段末期的破骨细胞中发现了狭窄的纽蛋白和F - 肌动蛋白环。1天和2天培养物中微丝的不同构型在它们与吸收陷窝的关系方面具有相关性。维生素A衍生物异维甲酸显著刺激吸收并增加了与吸收小坑相关的微丝构型的数量。另一方面,Bt2cAMP消除了吸收并阻止了微丝特定环结构的形成。基于这些数据,提出了在骨切片上培养的破骨细胞整个迁移 - 吸收周期的动力学模型。通过α - 微管蛋白对微管进行染色,观察到两种不同的细胞骨架组织。在迁移的破骨细胞中,微管均匀分布于整个细胞。在进行吸收的破骨细胞中,这些细胞骨架结构在最靠近吸收陷窝的细胞质位点处有明显的聚集。微管的这种取向可能反映了进行吸收的破骨细胞的活跃分泌功能。

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