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通过多种标准筛选出的影响青鳉(Oryzias latipes)肝脏发育和功能的突变。

Mutations affecting liver development and function in Medaka, Oryzias latipes, screened by multiple criteria.

作者信息

Watanabe Tomomi, Asaka Satoshi, Kitagawa Daiju, Saito Kota, Kurashige Ryumei, Sasado Takao, Morinaga Chikako, Suwa Hiroshi, Niwa Katsutoshi, Henrich Thorsten, Hirose Yukihiro, Yasuoka Akihito, Yoda Hiroki, Deguchi Tomonori, Iwanami Norimasa, Kunimatsu Sanae, Osakada Masakazu, Loosli Felix, Quiring Rebecca, Carl Matthias, Grabher Clemens, Winkler Sylke, Del Bene Filippo, Wittbrodt Joachim, Abe Keiko, Takahama Yousuke, Takahashi Katsuhito, Katada Toshiaki, Nishina Hiroshi, Kondoh Hisato, Furutani-Seiki Makoto

机构信息

Department of Physiological Chemistry, Graduate School of Pharmaceutical Sciences, University of Tokyo, Tokyo 113-0033, Japan.

出版信息

Mech Dev. 2004 Jul;121(7-8):791-802. doi: 10.1016/j.mod.2004.04.004.

Abstract

We report here mutations affecting various aspects of liver development and function identified by multiple assays in a systematic mutagenesis screen in Medaka. The 22 identified recessive mutations assigned to 19 complementation groups fell into five phenotypic groups. Group 1, showing defective liver morphogenesis, comprises mutations in four genes, which may be involved in the regulation of growth or patterning of the gut endoderm. Group 2 comprises mutations in three genes that affect the laterality of the liver; in kendama mutants of this group, the laterality of the heart and liver is uncoupled and randomized. Group 3 includes mutations in three genes altering bile color, indicative of defects in hemoglobin-bilirubin metabolism and globin synthesis. Group 4 consists of mutations in three genes, characterized by a decrease in the accumulation of fluorescent metabolite of a phospholipase A(2) substrate, PED6, in the gall bladder. Lipid metabolism or the transport of lipid metabolites may be affected by these mutations. Mutations in Groups 3 and 4 may provide animal models for relevant human diseases. Group 5 mutations in six genes affect the formation of endoderm, endodermal rods and hepatic bud from which the liver develops. These Medaka mutations, identified by morphological and metabolite marker screens, should provide clues to understanding molecular mechanisms underlying formation of a functional liver.

摘要

我们在此报告在青鳉的系统诱变筛选中通过多种检测方法鉴定出的影响肝脏发育和功能各个方面的突变。所鉴定出的22个隐性突变被归为19个互补群,分为五个表型组。第1组表现出肝脏形态发生缺陷,包含四个基因的突变,这些基因可能参与肠道内胚层生长或模式的调控。第2组包含三个影响肝脏左右不对称性的基因的突变;在该组的不倒翁突变体中,心脏和肝脏的左右不对称性解偶联并随机化。第3组包括三个改变胆汁颜色的基因的突变,这表明血红蛋白 - 胆红素代谢和珠蛋白合成存在缺陷。第4组由三个基因的突变组成,其特征是胆囊中磷脂酶A(2)底物PED6的荧光代谢产物积累减少。这些突变可能影响脂质代谢或脂质代谢产物的运输。第3组和第4组的突变可能为相关人类疾病提供动物模型。六个基因中的第5组突变影响内胚层、内胚层棒和肝脏从中发育而来的肝芽的形成。通过形态学和代谢产物标记筛选鉴定出的这些青鳉突变,应为理解功能性肝脏形成的分子机制提供线索。

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