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The receptor tyrosine kinase Pvr promotes tissue closure by coordinating corpse removal and epidermal zippering.受体酪氨酸激酶Pvr通过协调尸体清除和表皮拉链化来促进组织闭合。
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2
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3
Nonmuscle myosin II generates forces that transmit tension and drive contraction in multiple tissues during dorsal closure.非肌肉肌球蛋白II产生的力在背侧闭合过程中传递张力并驱动多种组织收缩。
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Amnioserosa is required for dorsal closure in Drosophila.羊浆膜对于果蝇的背侧闭合是必需的。
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5
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PVF1/PVR signaling and apoptosis promotes the rotation and dorsal closure of the Drosophila male terminalia.PVF1/PVR信号传导与细胞凋亡促进果蝇雄性外生殖器的旋转和背侧闭合。
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2
The myocardium utilizes a platelet-derived growth factor receptor alpha (Pdgfra)-phosphoinositide 3-kinase (PI3K) signaling cascade to steer toward the midline during zebrafish heart tube formation.心肌利用血小板衍生生长因子受体α(Pdgfra)-磷酸肌醇 3-激酶(PI3K)信号级联反应在斑马鱼心脏管形成过程中向中线引导。
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The myocardium utilizes Pdgfra-PI3K signaling to steer towards the midline during heart tube formation.在心脏管形成过程中,心肌利用血小板衍生生长因子受体A(Pdgfra)-磷脂酰肌醇-3-激酶(PI3K)信号传导导向中线。
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Pvr regulates cyst stem cell division in the Drosophila testis niche, and has functions distinct from Egfr.Pvr 在果蝇睾丸龛中调节干细胞分裂,其功能与 Egfr 不同。
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8
Cell Sheet Morphogenesis: Dorsal Closure in Drosophila melanogaster as a Model System.细胞片层形态发生:以黑腹果蝇的体节闭拢为模型系统。
Annu Rev Cell Dev Biol. 2017 Oct 6;33:169-202. doi: 10.1146/annurev-cellbio-111315-125357.
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Novel interplay between JNK and Egfr signaling in Drosophila dorsal closure.果蝇背侧闭合过程中JNK与Egfr信号通路之间的新型相互作用。
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本文引用的文献

1
Embryonic origin and differentiation of the Drosophila heart.果蝇心脏的胚胎起源与分化。
Rouxs Arch Dev Biol. 1994 Mar;203(5):266-280. doi: 10.1007/BF00360522.
2
Complete canthi removal reveals that forces from the amnioserosa alone are sufficient to drive dorsal closure in Drosophila.完全去除眼角膜显示,仅羊膜浆膜产生的力量就足以驱动果蝇的背侧闭合。
Mol Biol Cell. 2014 Nov 5;25(22):3552-68. doi: 10.1091/mbc.E14-07-1190. Epub 2014 Sep 24.
3
Drosophila heart cell movement to the midline occurs through both cell autonomous migration and dorsal closure.果蝇心脏细胞向中线的移动是通过细胞自主迁移和背侧闭合两种方式实现的。
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The actin regulators Enabled and Diaphanous direct distinct protrusive behaviors in different tissues during Drosophila development.肌动蛋白调节因子Enabled和Diaphanous在果蝇发育过程中指导不同组织中的不同突出行为。
Mol Biol Cell. 2014 Oct 15;25(20):3147-65. doi: 10.1091/mbc.E14-05-0951. Epub 2014 Aug 20.
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Forces generated by cell intercalation tow epidermal sheets in mammalian tissue morphogenesis.细胞插入在哺乳动物组织形态发生中对两个表皮片产生的力。
Dev Cell. 2014 Mar 31;28(6):617-32. doi: 10.1016/j.devcel.2014.02.011.
6
Domain specificity of MAP3K family members, MLK and Tak1, for JNK signaling in Drosophila.果蝇中 MAP3K 家族成员 MLK 和 Tak1 对 JNK 信号传导的结构域特异性
Genetics. 2014 Jun;197(2):497-513. doi: 10.1534/genetics.113.160937. Epub 2014 Jan 15.
7
Regulation of cuticle pigmentation in drosophila by the nutrient sensing insulin and TOR signaling pathways.营养感应胰岛素和TOR信号通路对果蝇表皮色素沉着的调控
Dev Dyn. 2014 Mar;243(3):393-401. doi: 10.1002/dvdy.24080. Epub 2013 Nov 7.
8
A critical role for PDGFRα signaling in medial nasal process development.PDGFRα 信号在中鼻突发育中的关键作用。
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9
Pdgfra protects against ethanol-induced craniofacial defects in a zebrafish model of FASD.Pdgfra 可保护斑马鱼酒精暴露模型中的胎酒精谱系障碍患者的颅面缺陷。
Development. 2013 Aug;140(15):3254-65. doi: 10.1242/dev.094938.
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FOXOs: signalling integrators for homeostasis maintenance.FOXOs:维持内稳态的信号整合因子。
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受体酪氨酸激酶Pvr通过协调尸体清除和表皮拉链化来促进组织闭合。

The receptor tyrosine kinase Pvr promotes tissue closure by coordinating corpse removal and epidermal zippering.

作者信息

Garlena Rebecca A, Lennox Ashley L, Baker Lewis R, Parsons Trish E, Weinberg Seth M, Stronach Beth E

机构信息

Department of Microbiology and Molecular Genetics, School of Medicine, University of Pittsburgh, Pittsburgh, PA 15219, USA.

Center for Craniofacial and Dental Genetics, Department of Oral Biology, School of Dental Medicine, University of Pittsburgh, Pittsburgh, PA 15219, USA.

出版信息

Development. 2015 Oct 1;142(19):3403-15. doi: 10.1242/dev.122226. Epub 2015 Aug 20.

DOI:10.1242/dev.122226
PMID:26293306
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4631752/
Abstract

A leading cause of human birth defects is the incomplete fusion of tissues, often manifested in the palate, heart or neural tube. To investigate the molecular control of tissue fusion, embryonic dorsal closure and pupal thorax closure in Drosophila are useful experimental models. We find that Pvr mutants have defects in dorsal midline closure with incomplete amnioserosa internalization and epidermal zippering, as well as cardia bifida. These defects are relatively mild in comparison to those seen with other signaling mutants, such as in the JNK pathway, and we demonstrate that JNK signaling is not perturbed by altering Pvr receptor tyrosine kinase activity. Rather, modulation of Pvr levels in the ectoderm has an impact on PIP3 membrane accumulation, consistent with a link to PI3K signal transduction. Polarized PI3K activity influences protrusive activity from the epidermal leading edge and the protrusion area changes in accord with Pvr signaling intensity, providing a possible mechanism to explain Pvr mutant phenotypes. Tissue-specific rescue experiments indicate a partial requirement in epithelial tissue, but confirm the essential role of Pvr in hemocytes for embryonic survival. Taken together, we argue that inefficient removal of the internalizing amnioserosa tissue by mutant hemocytes coupled with impaired midline zippering of mutant epithelium creates a situation in some embryos whereby dorsal midline closure is incomplete. Based on these observations, we suggest that efferocytosis (corpse clearance) could contribute to proper tissue closure and thus might underlie some congenital birth defects.

摘要

人类出生缺陷的一个主要原因是组织融合不完全,这通常表现在腭、心脏或神经管中。为了研究组织融合的分子控制机制,果蝇胚胎背侧闭合和蛹胸闭合是有用的实验模型。我们发现,Pvr突变体在背中线闭合方面存在缺陷,羊膜浆膜内化不完全,表皮拉链形成异常,同时还存在心脏双裂。与其他信号突变体(如JNK信号通路中的突变体)相比,这些缺陷相对较轻,并且我们证明JNK信号传导不会因改变Pvr受体酪氨酸激酶活性而受到干扰。相反,外胚层中Pvr水平的调节会影响PIP3在膜上的积累,这与PI3K信号转导有关。极化的PI3K活性影响表皮前缘的突出活性,突出区域会根据Pvr信号强度而变化,这为解释Pvr突变体表型提供了一种可能的机制。组织特异性拯救实验表明上皮组织有部分需求,但证实了Pvr在血细胞中对胚胎存活的关键作用。综上所述,我们认为突变的血细胞对内化的羊膜浆膜组织的清除效率低下,再加上突变上皮的中线拉链形成受损,在一些胚胎中造成了背中线闭合不完全的情况。基于这些观察结果,我们认为胞葬作用(尸体清除)可能有助于组织的正常闭合,因此可能是一些先天性出生缺陷的基础。