Bretton R H, Pennypacker J P
Department of Zoology, University of Vermont, Burlington 05401.
J Cell Physiol. 1989 Jan;138(1):197-204. doi: 10.1002/jcp.1041380126.
Butyric acid induces characteristic changes in the morphology of chick embryo chondrocytes. Chick embryo chondrocytes when cultured in the absence of butyrate exhibit a spherical morphology and synthesize cartilage-specific chondroitin sulfate proteoglycan (CSPG). When these cultures are initiated and maintained in the presence of butyric acid, chondrocytes exhibit a mesenchymal morphology, a 90% reduction in the synthesis of CSPG, and a 75% reduction in DNA synthesis. The reduced synthesis of CSPG and DNA was shown not to be dependent on the morphological change. Chondrocytes require CSPG in order to express a spherical morphology, since including chondroitinase ABC in the culture media caused the cells to spread. In addition, the treatment of chondrocytes with purified CSPG prior to culture in media containing butyric acid resulted in spherical cells. The butyrate-induced spreading was shown to require either serum or fibronectin and could be prevented with antiserum against chick cell-surface fibronectin (cFn). Cell-surface fibronectin, which was present on both spherical and flattened chondrocytes, organized into fibrils beneath cells which spread. Increased fibronectin synthesis was not responsible for the butyrate-induced morphological change. From this evidence, it is concluded that the mechanism by which butyrate alters the morphology of these cells in culture involves inhibiting CSPG synthesis, thus preventing CSPG accumulation in the extracellular matrix (ECM). The absence of CSPG in the ECM allows fibronectin to mediate spreading of chondrocytes in culture.
丁酸可诱导鸡胚软骨细胞形态发生特征性变化。在无丁酸的情况下培养时,鸡胚软骨细胞呈现球形形态,并合成软骨特异性硫酸软骨素蛋白聚糖(CSPG)。当在丁酸存在的条件下开始并维持这些培养时,软骨细胞呈现间充质形态,CSPG合成减少90%,DNA合成减少75%。CSPG和DNA合成的减少并非依赖于形态变化。软骨细胞需要CSPG来维持球形形态,因为在培养基中加入软骨素酶ABC会导致细胞铺展。此外,在含丁酸的培养基中培养之前,用纯化的CSPG处理软骨细胞会产生球形细胞。丁酸诱导的铺展被证明需要血清或纤连蛋白,并且可以用抗鸡细胞表面纤连蛋白(cFn)的抗血清来阻止。细胞表面纤连蛋白存在于球形和平坦的软骨细胞上,在铺展的细胞下方组织成纤维。纤连蛋白合成增加并非丁酸诱导形态变化的原因。根据这些证据可以得出结论,丁酸改变培养中这些细胞形态的机制涉及抑制CSPG合成,从而阻止CSPG在细胞外基质(ECM)中的积累。ECM中CSPG的缺失使得纤连蛋白介导培养中软骨细胞的铺展。