Tucker R W, Sanford K K, Frankel R
Cell. 1978 Apr;13(4):629-42. doi: 10.1016/0092-8674(78)90213-1.
Pairs of nonneoplastic and spontaneously transformed neoplastic cells were derived from rat, mouse and hamster embryos. The neoplastic cells of each pair had poorly spread cellular morphology, grew in agarose in vitro and produced invasive sarcomas in vivo; the nonneoplastic cells exhibited none of these properties. The distribution of microtubules and microfilament bundles (stress fibers or actin cables) was examined in five such paired lines and in 3T3 and SV40-transformed 3T3 cells by indirect immunofluorescent microscopy of fixed cells treated with rabbit antibody prepared against bovine brain tubulin or guinea pig smooth muscle actin, respectively. Actin cables in all the neoplastic cells appeared thinner and more sparse than in the paired nonneoplastic cells. These differences were also observed in living cells with polarization microscopy. In contrast, microtubules appeared similar in neoplastic and nonneoplastic cells, both in areas of thin peripheral lamellar cytoplasm which allowed a clear visualization of fine, curving microtubules and in regions of thick, central endoplasm which obsecured individual microtubules. In fact, the main morphological difference between neoplastic and nonneoplastic cells was the relative amount of lamellar cytoplasm or endoplasm, rather than the appearance of microtubles in either region. Thus the distinctive growth properties and retracted cellular morphology of neoplastic cells in this study did not correlate with decreased or disorganized microtubules, but with thin and sparse actin cables.
非肿瘤性细胞与自发转化的肿瘤性细胞对分别取自大鼠、小鼠和仓鼠胚胎。每对中的肿瘤性细胞具有铺展性差的细胞形态,能在体外琼脂糖中生长,并在体内产生侵袭性肉瘤;而非肿瘤性细胞则无这些特性。通过间接免疫荧光显微镜检查,分别用抗牛脑微管蛋白制备的兔抗体或抗豚鼠平滑肌肌动蛋白处理固定细胞,研究了五条这样的配对细胞系以及3T3细胞和SV40转化的3T3细胞中微管和微丝束(应力纤维或肌动蛋白丝)的分布情况。与配对的非肿瘤性细胞相比,所有肿瘤性细胞中的肌动蛋白丝显得更细且更稀疏。在活细胞中用偏光显微镜也观察到了这些差异。相反,在肿瘤性细胞和非肿瘤性细胞中,微管看起来相似,无论是在薄的周边片状细胞质区域(在此区域可清晰观察到纤细、弯曲的微管)还是在厚的中央内质区域(在此区域单个微管难以分辨)。实际上,肿瘤性细胞与非肿瘤性细胞之间的主要形态学差异在于片状细胞质或内质的相对量,而非任一区域中微管的外观。因此,本研究中肿瘤性细胞独特的生长特性和收缩的细胞形态与微管减少或紊乱无关,而是与细且稀疏的肌动蛋白丝有关。