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Wing-to-Leg Homeosis by Spineless Causes Apoptosis Regulated by Fish-lips, a Novel Leucine-Rich Repeat Transmembrane Protein†

机译:由无脊椎导致的翼到足顺势疗法导致由鱼唇调节的细胞凋亡,鱼唇是富含亮氨酸的新型重复跨膜蛋白†

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摘要

Growth, patterning, and apoptosis are mutually interactive during development. For example, cells that select an abnormal fate in a developing field are frequently removed by apoptosis. An important issue in this process that needs to be resolved is the mechanism used by cells to discern their correct fate from an abnormal fate. In order to examine this issue, we developed an animal model that expresses the dioxin receptor homolog Spineless (Ss) ectopically in the Drosophila wing. The presence of mosaic clones ectopically expressing ss results in a local transformation of organ identity, homeosis, from wing into a leg or antenna. The cells with misspecified fates subsequently activate c-Jun N-terminal kinase to undergo apoptosis in an autonomous or nonautonomous manner depending on their position within the wing, suggesting that a cell-cell interaction is, at least in some cases, involved in the detection of misspecified cells. Similar position dependence is commonly observed when various homeotic genes controlling the body segments are ectopically expressed. The autonomous and nonautonomous apoptosis caused by ss is regulated by a novel leucine-rich repeat family transmembrane protein, Fish-lips (Fili) that interacts with surrounding normal cells. These data support a mechanism in which the lack of some membrane proteins helps to recognize the presence of different cell types and direct these cells to an apoptotic fate in order to exclude them from the normal developing field.
机译:生长,模式和细胞凋亡在发育过程中是相互相互作用的。例如,在发育场中选择异常命运的细胞经常通过凋亡被去除。这个过程中需要解决的一个重要问题是细胞用来区别异常命运的正确命运的机制。为了研究此问题,我们开发了一种动物模型,该模型在果蝇翼中异位表达二恶英受体同源物无脊椎(Ss)。异位表达ss的镶嵌克隆的存在导致器官特征,顺势疗法从机翼变成腿或触角的局部转化。命运不明的细胞随后根据其在翼中的位置激活c-Jun N末端激酶以自主或非自主方式经历凋亡,这表明至少在某些情况下,细胞与细胞的相互作用参与了检测错误指定的单元格。当异位表达控制身体节段的各种同源基因时,通常观察到相似的位置依赖性。由ss引起的自主性和非自主性细胞凋亡受与周围正常细胞相互作用的新型富亮氨酸重复家族跨膜蛋白Fish-lips(Fili)调控。这些数据支持了一种机制,其中缺乏某些膜蛋白有助于识别不同细胞类型的存在并将这些细胞定向到凋亡的命运,以便将它们排除在正常的发育领域之外。

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