Nonomura N, Nakamura N, Uchida N, Noguchi S, Sato B, Sonoda T, Matsumoto K
Department of Pathology, Osaka University Medical School, Japan.
Cancer Res. 1988 Sep 1;48(17):4904-8.
Androgen-responsive (SC-3) and -unresponsive (SC-4) cloned cell lines in culture were established from an androgen-responsive mouse mammary tumor, Shionogi carcinoma 115. By using a serum-free medium [Ham's F-12:Eagle's minimum essential medium (1:1, v/v) containing 0.1% bovine serum albumin], characteristics of androgen-induced and autonomous growth factors (GFs) were examined. Serum-free conditioned medium (CM) obtained from testosterone-stimulated (+T) SC-3 cells had remarkable growth-stimulatory effects on both SC-3 and SC-4 cells. To examine the molecular characteristics of GF, CM(+T) from SC-3 was fractioned by heparin-Sepharose affinity chromatography; two peaks, eluted at 0.5 M (GF-low) and 1.1 M NaCl (GF-high) were identified. GF-high had the ability to stimulate growth with a morphological change of both SC-3 and SC-4 cells; the GF-high was not found in CM from T-unstimulated (-T) SC-3 or CM from SC-4. GF-low stimulated the growth without the morphological change of only SC-4 cells; the GF-low was also present in CM(-T) from SC-3 and CM from SC-4. The present findings demonstrate that T-induced autocrine GF-high secreted from SC-3 cells can also stimulate the growth of progressed unresponsive SC-4 cells in a paracrine mechanism and that autonomous GF-low secreted from both SC-3 and SC-4 cells can stimulate the growth of only SC-4 cells.
从雄激素反应性小鼠乳腺肿瘤——狮王制药癌115中建立了培养中的雄激素反应性(SC - 3)和无反应性(SC - 4)克隆细胞系。通过使用无血清培养基[哈姆氏F - 12:伊格尔氏最低必需培养基(1:1,v/v),含0.1%牛血清白蛋白],研究了雄激素诱导的和自主生长因子(GFs)的特性。从睾酮刺激的(+T)SC - 3细胞获得的无血清条件培养基(CM)对SC - 3和SC - 4细胞均有显著的生长刺激作用。为了研究GF的分子特性,通过肝素 - 琼脂糖亲和色谱对SC - 3的CM(+T)进行分级分离;鉴定出在0.5 M(GF - 低)和1.1 M NaCl(GF - 高)处洗脱的两个峰。GF - 高具有刺激SC - 3和SC - 4细胞生长并使其形态改变的能力;在未受睾酮刺激的(-T)SC - 3的CM或SC - 4的CM中未发现GF - 高。GF - 低仅刺激SC - 4细胞生长而无形态改变;在SC - 3的CM(-T)和SC - 4的CM中也存在GF - 低。目前的研究结果表明,SC - 3细胞分泌的睾酮诱导的自分泌GF - 高也可以通过旁分泌机制刺激进展性无反应性SC - 4细胞的生长,并且SC - 3和SC - 4细胞分泌的自主GF - 低仅能刺激SC - 4细胞的生长。