Clase K L, Mitchell P J, Ward P J, Dorman C M, Johnson S E, Hannon K
Department of Basic Medical Sciences, School of Veterinary Medicine, Purdue University, West Lafayette, Indiana 47907, USA.
Dev Dyn. 2000 Nov;219(3):368-80. doi: 10.1002/1097-0177(2000)9999:9999<::AID-DVDY1056>3.0.CO;2-8.
FGF5 is expressed in the mesenchyme and skeletal muscle of developing and adult mouse limbs. However, the function of FGF5 during development of the limb and limb musculature is unknown. To elucidate the inherent participation of FGF5 during limb organogenesis, a retroviral delivery system (RCAS) was used to overexpress human FGF5 throughout developing hind limb of chicken embryos. Misexpression of the soluble growth factor severely inhibited the formation of mature myocytes. Limbs infected with RCAS-FGF5 contained smaller presumptive muscle masses as evidenced by a decrease in MyoD and myosin heavy chain expressing cells. In contrast, ectopic expression of FGF5 significantly stimulated proliferation and expansion of the tenascin-expressing, connective-tissue fibroblast lineage throughout the developing limb. Histological analysis demonstrated that the increase in tenascin immunostaining surrounding the femur, ileum, and pubis in the FGF5 infected limbs corresponded to the fibroblasts forming the stacked-cell perichondrium. Furthermore, pulse labeling experiments with the thymidine analog, BrdU, revealed that the increased size of the perichondrium was attributable to enhanced cell proliferation. These results support a model whereby FGF5 acts as a mitogen to stimulate the proliferation of mesenchymal fibroblasts that contribute to the formation of connective tissues such as the perichondrium, and inhibits the development of differentiated skeletal muscle. These results also contend that FGF5 is a candidate mediator of the exclusive spatial patterning of the hind limb connective tissue and skeletal muscle.
FGF5在发育中和成年小鼠肢体的间充质和骨骼肌中表达。然而,FGF5在肢体和肢体肌肉组织发育过程中的功能尚不清楚。为了阐明FGF5在肢体器官发生过程中的内在作用,利用逆转录病毒递送系统(RCAS)在鸡胚发育中的后肢中过表达人FGF5。可溶性生长因子的错误表达严重抑制了成熟肌细胞的形成。感染RCAS-FGF5的肢体中推定的肌肉块较小,这可通过表达MyoD和肌球蛋白重链的细胞减少来证明。相反,FGF5的异位表达显著刺激了整个发育中肢体中表达肌腱蛋白的结缔组织成纤维细胞谱系的增殖和扩张。组织学分析表明,FGF5感染肢体中股骨、回肠和耻骨周围肌腱蛋白免疫染色的增加与形成堆叠细胞软骨膜的成纤维细胞相对应。此外,用胸苷类似物BrdU进行的脉冲标记实验表明,软骨膜大小的增加归因于细胞增殖的增强。这些结果支持了一个模型,即FGF5作为有丝分裂原刺激间充质成纤维细胞增殖,这些成纤维细胞有助于形成诸如软骨膜等结缔组织,并抑制分化的骨骼肌的发育。这些结果还认为,FGF5是后肢结缔组织和骨骼肌独特空间模式的候选介质。