We have isolated and characterized the first Xenopus transmembrane Eph ligand, XLerk (Xenopus Ligand for Eph Receptor Tyrosine Kinases). While this ligand has 72% identity with the closest mammalian family member, Lerk-2, it is the cytoplasmic domain of this molecule that is the most conserved domain with 95% identity. XLerk exists as a maternally expressed mRNA, however, expression of transcripts and protein increase during gastrulation and again in the late swimming tadpole stage. In the adult, XLerk is expressed at low levels in most adult tissues with increased levels observed in the kidney, oocytes, ovary and testis. While low levels of XLerk expression are observed in the adult brain, in situ hybridization analysis demonstrates prominent expression in the developing olfactory system, retina, hindbrain, cranial ganglia, and somites. Furthermore, we have shown that XLerk transcripts are significantly elevated during mesoderm induction caused by activin and FGF, but not during noggin-induced neuralization. These results suggest a role for XLerk in the developing mesenchymal and nervous tissue.

译文

我们已经分离并鉴定了第一个非洲爪蟾跨膜Eph配体XLerk(用于Eph受体酪氨酸激酶的非洲爪蟾配体)。尽管该配体与最接近的哺乳动物家族成员Lerk-2具有72%的同一性,但该分子的胞质结构域是具有95%的同一性的最保守的结构域。 XLerk作为母体表达的mRNA存在,但是转录的表达和蛋白质在胃排泄过程中以及游泳increase后期再次增加。在成年人中,XLerk在大多数成年人组织中低水平表达,在肾脏,卵母细胞,卵巢和睾丸中观察到水平升高。尽管在成年大脑中观察到了低水平的XLerk表达,但原位杂交分析显示出在发育中的嗅觉系统,视网膜,后脑,颅神经节和体节中突出表达。此外,我们已经表明,在由激活素和FGF引起的中胚层诱导过程中,XLerk转录物显着升高,但在头蛋白诱导的神经化过程中却没有。这些结果表明XLerk在发育中的间充质和神经组织中的作用。

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