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小鼠晶状体上皮细胞中VI型中间丝蛋白CP49和丝状晶蛋白的表达

Expression of the type VI intermediate filament proteins CP49 and filensin in the mouse lens epithelium.

作者信息

FitzGerald Paul, Sun Ning, Shibata Brad, Hess John F

机构信息

Department of Cell Biology and Human Anatomy, School of Medicine, University of California Davis, CA.

出版信息

Mol Vis. 2016 Aug 6;22:970-89. eCollection 2016.

Abstract

PURPOSE

The differentiated lens fiber cell assembles a filamentous cytoskeletal structure referred to as the beaded filament (BF). The BF requires CP49 (bfsp2) and filensin (bfsp1) for assembly, both of which are highly divergent members of the large intermediate filament (IF) family of proteins. Thus far, these two proteins have been reported only in the differentiated lens fiber cell. For this reason, both proteins have been considered robust markers of fiber cell differentiation. We report here that both proteins are also expressed in the mouse lens epithelium, but only after 5 weeks of age.

METHODS

Localization of CP49 was achieved with immunocytochemical probing of wild-type, CP49 knockout, filensin knockout, and vimentin knockout mice, in sections and in the explanted lens epithelium, at the light microscope and electron microscope levels. The relationship between CP49 and other cytoskeletal elements was probed using fluorescent phalloidin, as well as with antibodies to vimentin, GFAP, and α-tubulin. The relationship between CP49 and the aggresome was probed with antibodies to γ-tubulin, ubiquitin, and HDAC6.

RESULTS

CP49 and filensin were expressed in the mouse lens epithelium, but only after 5 weeks of age. At the light microscope level, these two proteins colocalize to a large tubular structure, approximately 7 × 1 μm, which was typically present at one to two copies per cell. This structure is found in the anterior and anterolateral lens epithelium, including the zone where mitosis occurs. The structure becomes smaller and largely undetectable closer to the equator where the cell exits the cell cycle and commits to fiber cell differentiation. This structure bears some resemblance to the aggresome and is reactive with antibodies to HDAC6, a marker for the aggresome. However, the structure does not colocalize with antibodies to γ-tubulin or ubiquitin, also markers for the aggresome. The structure also colocalizes with actin but appears to largely exclude vimentin and α-tubulin. In the CP49 and filensin knockouts, this structure is absent, confirming the identity of CP49 and filensin in this structure, and suggesting a requirement for the physiologic coassembly of CP49 and filensin.

CONCLUSIONS

CP49 and filensin have been considered robust markers for mouse lens fiber cell differentiation. The data reported here, however, document both proteins in the mouse lens epithelium, but only after 5 weeks of age, when lens epithelial growth and mitotic activity have slowed. Because of this, CP49 and filensin must be considered markers of differentiation for both fiber cells and the lens epithelium in the mouse. In addition, to our knowledge, no other protein has been shown to emerge so late in the development of the mouse lens epithelium, suggesting that lens epithelial differentiation may continue well into post-natal life. If this structure is related to the aggresome, it is a rare, or perhaps unique example of a large, stable aggresome in wild-type tissue.

摘要

目的

分化的晶状体纤维细胞组装一种丝状细胞骨架结构,称为串珠状细丝(BF)。BF的组装需要CP49(bfsp2)和丝纤蛋白(bfsp1),它们都是大型中间丝(IF)蛋白家族中高度分化的成员。迄今为止,这两种蛋白仅在分化的晶状体纤维细胞中被报道。因此,这两种蛋白都被视为纤维细胞分化的可靠标志物。我们在此报告,这两种蛋白在小鼠晶状体上皮中也有表达,但仅在5周龄后。

方法

通过对野生型、CP49基因敲除、丝纤蛋白基因敲除和波形蛋白基因敲除小鼠的切片及体外培养的晶状体上皮进行免疫细胞化学检测,在光学显微镜和电子显微镜水平上实现CP49的定位。使用荧光鬼笔环肽以及针对波形蛋白、GFAP和α-微管蛋白的抗体来探究CP49与其他细胞骨架成分之间的关系。使用针对γ-微管蛋白、泛素和HDAC6的抗体来探究CP49与聚集体之间的关系。

结果

CP49和丝纤蛋白在小鼠晶状体上皮中表达,但仅在5周龄后。在光学显微镜水平上,这两种蛋白共定位于一个大约7×1μm的大型管状结构,每个细胞通常有一到两个拷贝。这种结构存在于晶状体前上皮和前外侧上皮中,包括有丝分裂发生的区域。在更靠近赤道的地方,细胞退出细胞周期并开始向纤维细胞分化,这种结构会变小并在很大程度上无法检测到。这种结构与聚集体有一些相似之处,并且与聚集体标志物HDAC6的抗体发生反应。然而,该结构与聚集体的其他标志物γ-微管蛋白或泛素的抗体不共定位。该结构也与肌动蛋白共定位,但似乎在很大程度上排除了波形蛋白和α-微管蛋白。在CP49和丝纤蛋白基因敲除小鼠中,这种结构不存在,这证实了CP49和丝纤蛋白在该结构中的身份,并表明CP49和丝纤蛋白的生理共组装是必需的。

结论

CP49和丝纤蛋白一直被认为是小鼠晶状体纤维细胞分化的可靠标志物。然而,此处报告的数据表明这两种蛋白在小鼠晶状体上皮中也有表达,但仅在5周龄后,此时晶状体上皮生长和有丝分裂活性已经减缓。因此,CP49和丝纤蛋白必须被视为小鼠纤维细胞和晶状体上皮分化的标志物。此外,据我们所知,没有其他蛋白在小鼠晶状体上皮发育如此后期才出现,这表明晶状体上皮分化可能会持续到出生后很长时间。如果这种结构与聚集体有关,那么它是野生型组织中一个罕见的,或者可能是独特的大型稳定聚集体的例子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b747/4975932/a07e303e2da2/mv-v22-970-f1.jpg

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