Suzuki R, Shintani T, Sakuta H, Kato A, Ohkawara T, Osumi N, Noda M
Division of Molecular Neurobiology, National Institute for Basic Biology, Department of Molecular Biomechanics, The Graduate University for Advanced Studies, 38 Nishigonaka, Myodaiji-cho, Okazaki, Japan.
Mech Dev. 2000 Nov;98(1-2):37-50. doi: 10.1016/s0925-4773(00)00450-0.
In the developing retina, a retinoic acid (RA) gradient along the dorso-ventral axis is believed to be a prerequisite for the establishment of dorso-ventral asymmetry. This RA gradient is thought to result from the asymmetrical distribution of RA-generating aldehyde dehydrogenases along the dorso-ventral axis. Here, we identified a novel aldehyde dehydrogenase specifically expressed in the chick ventral retina, using restriction landmark cDNA scanning (RLCS). Since this molecule showed enzymatic activity to produce RA from retinaldehyde, we designated it retinaldehyde dehydrogenase 3 (RALDH-3). Structural similarity suggested that RALDH-3 is the orthologue of human aldehyde dehydrogenase 6. We also isolated RALDH-1 which is expressed in the chick dorsal retina and implicated in RA formation. Raldh-3 was preferentially expressed first in the surface ectoderm overlying the ventral portion of the prospective eye region and then in the ventral retina, earlier than Raldh-1 in chick and mouse embryos. High level expression of Raldh-3 was also observed in the nasal region. In addition, we found that Pax6 mutants are devoid of Raldh-3 expression. These results suggested that Raldh-3 is the key enzyme in the formation of an RA gradient along the dorso-ventral axis during the early eye development, and also in the development of the olfactory system.
在发育中的视网膜中,沿背腹轴的视黄酸(RA)梯度被认为是建立背腹不对称性的先决条件。这种RA梯度被认为是由沿背腹轴产生RA的醛脱氢酶的不对称分布所导致的。在这里,我们使用限制性地标cDNA扫描(RLCS)鉴定了一种在鸡胚腹侧视网膜中特异性表达的新型醛脱氢酶。由于该分子显示出从视黄醛产生RA的酶活性,我们将其命名为视黄醛脱氢酶3(RALDH-3)。结构相似性表明RALDH-3是人类醛脱氢酶6的直系同源物。我们还分离出了在鸡胚背侧视网膜中表达并参与RA形成的RALDH-1。在鸡胚和小鼠胚胎中,Raldh-3首先在前眼区腹侧部分上方的表面外胚层中优先表达,然后在腹侧视网膜中表达,比Raldh-1更早。在鼻区也观察到Raldh-3的高水平表达。此外,我们发现Pax6突变体缺乏Raldh-3表达。这些结果表明,Raldh-3是早期眼发育过程中沿背腹轴形成RA梯度以及嗅觉系统发育中的关键酶。