Provance D W, McDowall A, Marko M, Luby-Phelps K
Department of Physiology, University of Texas Southwestern Medical Center at Dallas 75235-9040.
J Cell Sci. 1993 Oct;106 ( Pt 2):565-77. doi: 10.1242/jcs.106.2.565.
By fluorescence ratio imaging of large and small inert tracer particles in living cells, we have previously shown that particles 24 nm in radius are excluded from otherwise uncharacterized compartments in the distal and perinuclear cytoplasm (Luby-Phelps, K. and Taylor, D.L., 1988. Cell Motil. Cytoskel. 10, 28-37). In this study we examined the cytoarchitecture of these compartments. Whole-mount TEM showed that distal size-excluding compartments were devoid of membrane-bounded organelles and were filled with a dense cytomatrix consisting of numerous, long bundles of thin filaments interconnected by a more random meshwork of short thin filaments. The mean diameter of void spaces in the cytomatrix of distal excluding compartments was 31 nm, compared to 53 nm in adjacent non-excluding domains. The height of the distal excluding compartments was generally < or = 50% of the height in the adjacent non-excluding compartment. An electron-dense structure having the same projected outline as the perinuclear size-excluding compartment was visible by whole-mount TEM, but the cells were too thick and osmiophilic in this region to resolve any detail. Immunofluorescence localization of cytoskeletal proteins in distal excluding compartments indicated the presence of filament bundles containing F-actin nonmuscle filamin (ABP280) and alpha-actinin. F-actin and ABP280, but not alpha-actinin, were found also in between these filament bundles. Microtubules and vimentin generally were rare or absent from distal excluding domains. Staining of living cells with DMB-ceramide revealed that the perinuclear size-excluding compartment consisted of a compact, juxtanuclear domain coinciding with the trans-Golgi, surrounded by a more diffuse domain coinciding with a perinuclear concentration of endoplasmic reticulum. Intense immunofluorescence staining for vimentin was also observed in the perinuclear size-excluding compartment. We propose that the most likely mechanism for exclusion from distal compartments is molecular sieving by a meshwork of actin filament bundles interconnected by an F-actin/ABP280 gel network, while exclusion from the perinuclear compartment may be due to close apposition of cisternae in the trans-Golgi and a network or basket of vimentin filaments in the centrosomal region of the cell.
通过对活细胞中大小惰性示踪颗粒进行荧光比率成像,我们先前已经表明,半径为24nm的颗粒被排除在远端和核周细胞质中其他未表征的区室之外(Luby - Phelps,K.和Taylor,D.L.,1988年。《细胞运动与细胞骨架》10,28 - 37)。在本研究中,我们检查了这些区室的细胞结构。整装透射电子显微镜显示,远端大小排除区室没有膜结合细胞器,充满了由许多长束细丝组成的致密细胞基质,这些细丝由更随机的短细丝网络相互连接。远端排除区室细胞基质中空隙空间的平均直径为31nm,而相邻非排除区域为53nm。远端排除区室的高度通常小于或等于相邻非排除区室高度的50%。通过整装透射电子显微镜可以看到一个电子致密结构,其投影轮廓与核周大小排除区室相同,但该区域的细胞太厚且嗜锇,无法分辨任何细节。远端排除区室中细胞骨架蛋白的免疫荧光定位表明存在含有F - 肌动蛋白、非肌肉细丝蛋白(ABP280)和α - 辅肌动蛋白的细丝束。在这些细丝束之间也发现了F - 肌动蛋白和ABP280,但没有α - 辅肌动蛋白。微管和波形蛋白在远端排除区域通常很少见或不存在。用DMB - 神经酰胺对活细胞进行染色显示,核周大小排除区室由一个与反式高尔基体重合的紧密核周区域组成,周围是一个与内质网的核周集中区域重合的更弥散区域。在核周大小排除区室中也观察到波形蛋白的强烈免疫荧光染色。我们提出,从远端区室排除的最可能机制是由F - 肌动蛋白/ABP280凝胶网络相互连接的肌动蛋白细丝束网络进行分子筛分,而从核周区室排除可能是由于反式高尔基体中的扁平囊紧密并列以及细胞中心体区域中波形蛋白细丝的网络或篮状结构。