Amankwah K S, De Boni U
Department of Anatomy, Faculty of Medicine, University of Toronto, Ontario, Canada.
Exp Cell Res. 1994 Feb;210(2):315-25. doi: 10.1006/excr.1994.1044.
Previous biochemical studies utilizing isolated nuclei and nuclear matrices have shown actin to be a constituent of the interphase nucleus. In addition, recent ultrastructural work has shown the presence of actin and myosin within nuclei of interphase cells in situ. It was unclear, however, whether this intranuclear actin is present in the unpolymerized globular actin or the filamentous (F)-actin form. The present work, using confocal microscopy and ultrastructural cytochemical techniques, demonstrates the presence of F-actin within interphase nuclei of intact, uncompromised, dorsal root ganglion neurons in vitro and in vivo. Labeling by FITC-phalloidin detected the presence of intranuclear F-actin adjacent to the nucleolar periphery in a small fraction of cells in vitro, an observation confirmed by three-dimensional reconstruction. Ultrastructural analyses of cells exposed to heavy meromyosin (HMM), showed the presence of typical "arrowhead" complexes. The observation that these complexes were associated with nucleoli confirms that the intranuclear ligand detected by FITC-phalloidin indeed represents F-actin. Postembedding labeling with HMM conjugated to 20-nm colloidal gold (HMM-Au20) resulted in labeling similar to that obtained with HMM. However, HMM-Au20 was found to label a much larger fraction of cells, both in vitro and in vivo, than did FITC-phalloidin or HMM. This finding indicates that labeling with HMM-Au20 more accurately reflects the extent of actin polymerization in nuclei. Results from double labeling with HMM-Au20 and an antibody to alpha-sarcomeric actin confirmed that only a small amount of nuclear actin is in the F-form. Together, these results represent a first ultrastructural demonstration of the presence of F-actin in nuclei of neurons. While the role of nuclear F-actin has yet to be defined, the results suggest that F-actin may represent a component of the molecular motor responsible for the dynamic positioning of specific chromatin domains into the tissue-specific, nonrandom patterns observed in many cell types.
以往利用分离的细胞核和核基质进行的生化研究表明,肌动蛋白是间期细胞核的一个组成成分。此外,最近的超微结构研究显示,在间期细胞原位的细胞核内存在肌动蛋白和肌球蛋白。然而,尚不清楚这种核内肌动蛋白是以未聚合的球状肌动蛋白形式还是丝状(F)肌动蛋白形式存在。本研究采用共聚焦显微镜和超微结构细胞化学技术,证实在完整、未受损的背根神经节神经元的间期细胞核内,无论在体外还是体内均存在F-肌动蛋白。用异硫氰酸荧光素(FITC)-鬼笔环肽标记检测到,在体外一小部分细胞中,核仁周边存在核内F-肌动蛋白,三维重建证实了这一观察结果。对暴露于重酶解肌球蛋白(HMM)的细胞进行超微结构分析,显示存在典型的“箭头状”复合物。这些复合物与核仁相关的观察结果证实,FITC-鬼笔环肽检测到的核内配体确实代表F-肌动蛋白。用与20纳米胶体金偶联的HMM(HMM-Au20)进行包埋后标记,得到的标记结果与HMM相似。然而,发现HMM-Au20在体外和体内标记的细胞比例均比FITC-鬼笔环肽或HMM标记的细胞比例大得多。这一发现表明,用HMM-Au20标记能更准确地反映细胞核中肌动蛋白的聚合程度。用HMM-Au20和α-肌节肌动蛋白抗体进行双重标记的结果证实,只有少量的核肌动蛋白呈F-形式。这些结果共同首次在超微结构上证实了神经元细胞核中存在F-肌动蛋白。虽然核F-肌动蛋白的作用尚未明确,但结果表明F-肌动蛋白可能是分子马达的一个组成部分,负责将特定染色质结构域动态定位到许多细胞类型中观察到的组织特异性、非随机模式。