Del Rio-Tsonis K, Trombley M T, McMahon G, Tsonis P A
Department of Biology, University of Dayton, Ohio 45469-2320, USA.
Dev Dyn. 1998 Sep;213(1):140-6. doi: 10.1002/(SICI)1097-0177(199809)213:1<140::AID-AJA14>3.0.CO;2-6.
Lens regeneration in vivo is restricted to some urodeles only. After removal of the lens, this remarkable event is initiated from the dorsal iris. The pigmented epithelial cells from the dorsal iris dedifferentiate and subsequently transdifferentiate to form the regenerating lens. This property of the dorsal iris implies specific regulation along the dorsal-ventral axis. To date, no known genes are known to be specifically expressed in the dedifferentiating cells and to be involved in lens regeneration. In this paper, we show that FGFR-1 expression and function is correlated with the process of lens regeneration from the dorsal iris. Following lentectomy, FGFR-1 protein is specifically present in the dedifferentiating pigment epithelial cells in the dorsal iris, but is absent from the ventral iris. Subsequently, FGFR-1 protein is present throughout the process of lens regeneration and fiber differentiation. Furthermore, we show that an FGFR-1-specific inhibitor is able to inhibit the process of transdifferentiation and lens regeneration. In this sense, FGFR-1 can be regarded as the first known lens regeneration-associated factor.
晶状体的体内再生仅局限于部分有尾两栖类动物。移除晶状体后,这一显著过程由背侧虹膜起始。背侧虹膜的色素上皮细胞去分化,随后转分化形成再生晶状体。背侧虹膜的这一特性暗示了沿背腹轴的特定调控。迄今为止,尚无已知基因在去分化细胞中特异性表达并参与晶状体再生。在本文中,我们表明FGFR - 1的表达和功能与背侧虹膜晶状体再生过程相关。晶状体切除术后,FGFR - 1蛋白特异性存在于背侧虹膜去分化的色素上皮细胞中,而腹侧虹膜中则不存在。随后,FGFR - 1蛋白在晶状体再生和纤维分化的整个过程中都存在。此外,我们表明一种FGFR - 1特异性抑制剂能够抑制转分化和晶状体再生过程。从这个意义上讲,FGFR - 1可被视为首个已知的与晶状体再生相关的因子。