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1
Septate junctions are required for ommatidial integrity and blood-eye barrier function in Drosophila.在果蝇中,分隔连接对于小眼完整性和血眼屏障功能是必需的。
Dev Biol. 2008 May 15;317(2):585-99. doi: 10.1016/j.ydbio.2008.03.007. Epub 2008 Mar 15.
2
A Drosophila neurexin is required for septate junction and blood-nerve barrier formation and function.果蝇神经连接蛋白对于分隔连接和血神经屏障的形成及功能是必需的。
Cell. 1996 Dec 13;87(6):1059-68. doi: 10.1016/s0092-8674(00)81800-0.
3
The lateral mobility of cell adhesion molecules is highly restricted at septate junctions in Drosophila.在果蝇的分隔连接中,细胞黏附分子的侧向移动性受到高度限制。
BMC Cell Biol. 2008 Jul 18;9:38. doi: 10.1186/1471-2121-9-38.
4
Drosophila contactin, a homolog of vertebrate contactin, is required for septate junction organization and paracellular barrier function.果蝇接触蛋白是脊椎动物接触蛋白的同源物,是分隔连接组织和细胞旁屏障功能所必需的。
Development. 2004 Oct;131(20):4931-42. doi: 10.1242/dev.01372.
5
A Laminin G-EGF-Laminin G module in Neurexin IV is essential for the apico-lateral localization of Contactin and organization of septate junctions.神经黏连蛋白 IV 中的层粘连蛋白 G-EGF-层粘连蛋白 G 模块对于 Contactin 的顶侧定位和隔膜连接的组织形成是必需的。
PLoS One. 2011;6(10):e25926. doi: 10.1371/journal.pone.0025926. Epub 2011 Oct 14.
6
Neuroglian, Gliotactin, and the Na+/K+ ATPase are essential for septate junction function in Drosophila.神经胶质蛋白、胶质肌动蛋白和钠钾ATP酶对于果蝇中分隔连接的功能至关重要。
J Cell Biol. 2003 Jun 9;161(5):979-89. doi: 10.1083/jcb.200212054. Epub 2003 Jun 2.
7
Gliotactin, a novel marker of tricellular junctions, is necessary for septate junction development in Drosophila.Gliotactin是一种新的三细胞连接标记物,对果蝇中分隔连接的发育是必需的。
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8
Molecular organization and function of invertebrate occluding junctions.无脊椎动物紧密连接的分子组织与功能
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The ESCRT machinery regulates retromer-dependent transcytosis of septate junction components in .ESCRT 机制调节隔膜连接成分依赖 retromer 的胞吞作用。
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Macroglobulin complement-related encodes a protein required for septate junction organization and paracellular barrier function in Drosophila.巨球蛋白补体相关编码蛋白是果蝇中隔膜连接组织和细胞旁屏障功能所必需的。
Development. 2014 Feb;141(4):889-98. doi: 10.1242/dev.102152.

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1
Inter-plane feedback coordinates cell morphogenesis and maintains 3D tissue organization in the Drosophila pupal retina.平面间反馈协调细胞形态发生并维持果蝇蛹视网膜中的 3D 组织结构。
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Multiplexed drug-based selection and counterselection genetic manipulations in Drosophila.在果蝇中进行基于药物的多重选择和反选择遗传操作。
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Semper's cells in the insect compound eye: Insights into ocular form and function.昆虫复眼中的 Semper 细胞:对眼部形态和功能的深入了解。
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Physiological and pathological roles of FATP-mediated lipid droplets in Drosophila and mice retina.果蝇和小鼠视网膜中 FATP 介导的脂滴的生理和病理作用。
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Death following traumatic brain injury in Drosophila is associated with intestinal barrier dysfunction.果蝇创伤性脑损伤后的死亡与肠道屏障功能障碍有关。
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A Laminin G-EGF-Laminin G module in Neurexin IV is essential for the apico-lateral localization of Contactin and organization of septate junctions.神经黏连蛋白 IV 中的层粘连蛋白 G-EGF-层粘连蛋白 G 模块对于 Contactin 的顶侧定位和隔膜连接的组织形成是必需的。
PLoS One. 2011;6(10):e25926. doi: 10.1371/journal.pone.0025926. Epub 2011 Oct 14.
8
Physiologic and anatomic characterization of the brain surface glia barrier of Drosophila.果蝇大脑表面神经胶质屏障的生理和解剖特征。
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9
Building a fly eye: terminal differentiation events of the retina, corneal lens, and pigmented epithelia.构建蝇眼:视网膜、角膜晶状体和色素上皮的终末分化事件。
Curr Top Dev Biol. 2010;93:129-73. doi: 10.1016/B978-0-12-385044-7.00005-9.
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本文引用的文献

1
Cell fate in the Drosophila ommatidium.果蝇复眼中的细胞命运。
Dev Biol. 1987 Sep;123(1):264-75. doi: 10.1016/0012-1606(87)90448-9.
2
Neuron-glial interactions in blood-brain barrier formation.血脑屏障形成中的神经元-胶质细胞相互作用。
Annu Rev Neurosci. 2007;30:235-58. doi: 10.1146/annurev.neuro.30.051606.094345.
3
The FERM protein Yurt is a negative regulatory component of the Crumbs complex that controls epithelial polarity and apical membrane size.FERM蛋白Yurt是Crb复合体的一个负调控成分,该复合体控制上皮细胞极性和顶端膜大小。
Dev Cell. 2006 Sep;11(3):363-74. doi: 10.1016/j.devcel.2006.06.001.
4
Axonal ensheathment and septate junction formation in the peripheral nervous system of Drosophila.果蝇外周神经系统中的轴突包裹和分隔连接形成
J Neurosci. 2006 Mar 22;26(12):3319-29. doi: 10.1523/JNEUROSCI.5383-05.2006.
5
moody encodes two GPCRs that regulate cocaine behaviors and blood-brain barrier permeability in Drosophila.moody基因编码两种G蛋白偶联受体,它们在果蝇中调节可卡因行为和血脑屏障通透性。
Cell. 2005 Oct 7;123(1):145-56. doi: 10.1016/j.cell.2005.07.029.
6
GPCR signaling is required for blood-brain barrier formation in drosophila.G蛋白偶联受体(GPCR)信号传导对于果蝇血脑屏障的形成是必需的。
Cell. 2005 Oct 7;123(1):133-44. doi: 10.1016/j.cell.2005.08.037.
7
Preferential adhesion mediated by Hibris and Roughest regulates morphogenesis and patterning in the Drosophila eye.由Hibris和Roughest介导的优先黏附调节果蝇眼睛的形态发生和模式形成。
Dev Cell. 2005 Jun;8(6):925-35. doi: 10.1016/j.devcel.2005.03.011.
8
Drosophila contactin, a homolog of vertebrate contactin, is required for septate junction organization and paracellular barrier function.果蝇接触蛋白是脊椎动物接触蛋白的同源物,是分隔连接组织和细胞旁屏障功能所必需的。
Development. 2004 Oct;131(20):4931-42. doi: 10.1242/dev.01372.
9
Sinuous is a Drosophila claudin required for septate junction organization and epithelial tube size control.Sinuous是一种果蝇claudin蛋白,对于分隔连接组织和上皮管大小控制是必需的。
J Cell Biol. 2004 Jan 19;164(2):313-23. doi: 10.1083/jcb.200309134.
10
Molecular organization of axo-glial junctions.轴突-神经胶质连接的分子组织
Curr Opin Neurobiol. 2003 Oct;13(5):552-9. doi: 10.1016/j.conb.2003.09.004.

在果蝇中,分隔连接对于小眼完整性和血眼屏障功能是必需的。

Septate junctions are required for ommatidial integrity and blood-eye barrier function in Drosophila.

作者信息

Banerjee Swati, Bainton Roland J, Mayer Nasima, Beckstead Robert, Bhat Manzoor A

机构信息

Department of Cell and Molecular Physiology, University of North Carolina School of Medicine, Chapel Hill, NC 27599, USA.

出版信息

Dev Biol. 2008 May 15;317(2):585-99. doi: 10.1016/j.ydbio.2008.03.007. Epub 2008 Mar 15.

DOI:10.1016/j.ydbio.2008.03.007
PMID:18407259
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2423378/
Abstract

The anatomical organization of the Drosophila ommatidia is achieved by specification and contextual placement of photoreceptors, cone and pigment cells. The photoreceptors must be sealed from high ionic concentrations of the hemolymph by a barrier to allow phototransduction. In vertebrates, a blood-retinal barrier (BRB) is established by tight junctions (TJs) present in the retinal pigment epithelium and endothelial membrane of the retinal vessels. In Drosophila ommatidia, the junctional organization and barrier formation is poorly understood. Here we report that septate junctions (SJs), the vertebrate analogs of TJs, are present in the adult ommatidia and are formed between and among the cone and pigment cells. We show that the localization of Neurexin IV (Nrx IV), a SJ-specific protein, coincides with the location of SJs in the cone and pigment cells. Somatic mosaic analysis of nrx IV null mutants shows that loss of Nrx IV leads to defects in ommatidial morphology and integrity. nrx IV hypomorphic allelic combinations generated viable adults with defective SJs and displayed a compromised blood-eye barrier (BEB) function. These findings establish that SJs are essential for ommatidial integrity and in creating a BEB around the ion and light sensitive photoreceptors. Our studies may provide clues towards understanding the vertebrate BEB formation and function.

摘要

果蝇小眼的解剖结构是通过光感受器、视锥细胞和色素细胞的特化及背景定位来实现的。光感受器必须通过一道屏障与高离子浓度的血淋巴隔离开,以实现光转导。在脊椎动物中,血视网膜屏障(BRB)是由视网膜色素上皮和视网膜血管内皮膜中的紧密连接(TJ)形成的。在果蝇小眼中,连接组织和屏障形成的机制尚不清楚。在此,我们报告在成年果蝇小眼中存在与脊椎动物TJ类似的分隔连接(SJ),且SJ在视锥细胞和色素细胞之间及内部形成。我们发现,SJ特异性蛋白Neurexin IV(Nrx IV)的定位与视锥细胞和色素细胞中SJ的位置一致。对nrx IV基因敲除突变体的体细胞镶嵌分析表明,Nrx IV的缺失会导致小眼形态和完整性出现缺陷。nrx IV的次等位基因组合产生了具有缺陷SJ的存活成虫,并表现出血眼屏障(BEB)功能受损。这些发现表明,SJ对于小眼的完整性以及在离子和光敏感的光感受器周围形成BEB至关重要。我们的研究可能为理解脊椎动物BEB的形成和功能提供线索。