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首页> 外文期刊>Gene Expression Patterns: A Section of Mechanisms of Development >Spatiotemporal expression pattern of Sjfz7 and its expression comparison with other frizzled family genes in developmental stages of Schistosoma japonicum
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Spatiotemporal expression pattern of Sjfz7 and its expression comparison with other frizzled family genes in developmental stages of Schistosoma japonicum

机译:SJFZ7的时尚表达模式及其与日本血吸虫血吸虫阶段其他毛毡阶段的表达比较

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摘要

Wnts are secreted signaling molecules that are implicated in a variety of growth-related processes. Frizzled proteins have been identified as receptors for Wnt ligands in vertebrates and invertebrates, but a functional role for dioecious flatworm Frizzleds has not been determined. To evaluate the endogenous role of Frizzled proteins during development, we have identified and characterized a Schistosoma japonicum frizzled gene (Sjfz7). We found that Sjfz7 encodes a 698 amino acid protein with typical characteristics of Frizzled proteins. The immunohistochemical localization pattern showed that Sjfz7 protein was extensively distributed in almost all tissues of S. japonicum, including subtegumental muscle cells, parenchymal cells, intestinal epithelial cells and male and female germ cells. This indicated that Sjfz7-mediated Wnt signaling might be associated with the development of musculature, intestinal tract and reproductive organs in schistosome. Comparing mRNA levels between frizzled family members showed that Sjfz7 mRNA was consistently higher in the developmental stages analyzed, suggesting that Sjfz7 may be responsible for more functional tasks than other frizzled family members. Comparing frizzled mRNA levels between not fully developed and normal worms suggested that Wnt signaling might be abnormal in not fully developed worms.
机译:WNT是分泌的信号传导分子,其涉及各种生长相关的过程。已经将Frizzled的蛋白质被鉴定为脊椎动物和无脊椎动物的Wnt配体的受体,但尚未确定雌性扁平虫的功能作用。为了评估毛毡在发育过程中Frizzled蛋白的内源性作用,我们已经鉴定并表征了日本血吸虫Frizzled基因(SJFZ7)。我们发现SJFZ7编码了698个氨基酸蛋白,典型的毛细血管蛋白质。免疫组织化学定位模式表明,SJFZ7蛋白在几乎所有的S.Paponicum组织中被广泛分布,包括亚特征肌细胞,实质细胞,肠上皮细胞和雄性和雌性生殖细胞。这表明SJFZ7介导的WNT信号传导可能与血吸虫肌肉组织,肠道和生殖器官的发育相关。比较Frizzled家族成员之间的mRNA水平显示SJFZ7 mRNA在分析的发育阶段始终如一地升高,这表明SJFZ7可能负责比其他Frizzled的家庭成员更多的功能任务。比较不完全开发和正常蠕虫之间的Frizzled mRNA水平表明WNT信令可能在不完全开发的蠕虫中异常。

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