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Caveolin expression during chondrogenesis in the avian limb.

机译:禽肢软骨形成过程中小窝蛋白的表达。

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摘要

Caveolin is the principal component and critical structural and functional element of caveolae, omega-shaped plasmalemmal invaginations, which have been implicated in a wide range of cellular processes in several different tissues. In the present study, we have investigated both the spatial and temporal expression of caveolin proteins during chondrogenesis in the avian tibiotarsus at days 10-20 of embryonic development. By using semiquantitative Western blotting, we found that caveolin-1 was clearly expressed in developing avian cartilage. The positive expression of caveolin-1 in cartilage showed an upward trend of accumulation temporally, with the highest levels of expression at 20 days of development. By using immunocytochemistry, we detected all three caveolin proteins in the cells of the outer fibrous articular surface, although caveolin-1 demonstrated the strongest and most consistent reactivity. In all cases, however, immunoreactivity appeared to be concentrated in cells facing the articular cavity. In the epiphyseal cartilage, immunocytochemistry revealed that caveolin-1 was present in the majority of chondrocytes within all layers of the cartilage and at all stages examined. A discrete, intense band of caveolin-1 immunoreactivity was apparent within the layer of flattened cells immediately underlying the proliferating rounded chondrocytes and suggests that caveolin-1 might be involved in regulating the progression of cells through these gradually maturing cell layers. In contrast to the results for caveolin-1, in the case of caveolin-2 and -3, chondrocytes were devoid of immunoreactivity in all regions of the epiphyseal cartilage. Overall, this study demonstrates that caveolin-1, -2, and -3 are expressed during chondrogenesis in the developing avian limb, although the patterns of expression are restricted both spatially and temporally throughout the differentiating cell layers of the cartilage. The results suggest that caveolin proteins might play a differentiation-dependent role during avian chondrogenesis.
机译:小窝蛋白是小窝,ω形血浆缺陷内陷的主要成分,也是关键的结构和功能元素,已与多种不同组织的广泛细胞过程有关。在本研究中,我们调查了在胚胎发育的第10-20天,在鸟胫骨软骨形成过程中小窝蛋白的时空表达。通过使用半定量蛋白质印迹,我们发现caveolin-1在发育中的禽软骨中清楚表达。 Caveolin-1在软骨中的阳性表达在时间上呈累积趋势,在发育20天时表达最高。通过使用免疫细胞化学,我们检测到了外部纤维状关节表面细胞中的所有三种caveolin蛋白,尽管caveolin-1具有最强和最一致的反应性。然而,在所有情况下,免疫反应性似乎都集中在面向关节腔的细胞中。在phy骨软骨中,免疫细胞化学分析显示,caveolin-1存在于软骨各层以及所有检查阶段的大多数软骨细胞中。在增生的圆形软骨细胞正下方的扁平化细胞层中明显可见一个离散的,强烈的caveolin-1免疫反应带,表明caveolin-1可能通过这些逐渐成熟的细胞层参与调节细胞的进程。与小窝蛋白1的结果相反,在小窝蛋白2和-3的情况下,软骨细胞在骨phy软骨的所有区域都没有免疫反应性。总的来说,这项研究表明,在发育中的禽肢软骨形成过程中,caveolin-1,-2和-3表达,尽管整个软骨分化细胞层的表达模式在空间和时间上都受到限制。结果表明小窝蛋白可能在禽软骨形成过程中起分化依赖性作用。

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