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1
Drosophila coracle, a member of the protein 4.1 superfamily, has essential structural functions in the septate junctions and developmental functions in embryonic and adult epithelial cells.果蝇coracle是蛋白4.1超家族的成员之一,在隔膜连接中具有重要的结构功能,在胚胎和成年上皮细胞中具有发育功能。
Mol Biol Cell. 1998 Dec;9(12):3505-19. doi: 10.1091/mbc.9.12.3505.
2
The protein 4.1, ezrin, radixin, moesin (FERM) domain of Drosophila Coracle, a cytoplasmic component of the septate junction, provides functions essential for embryonic development and imaginal cell proliferation.果蝇皮层蛋白(一种隔膜连接的细胞质成分)的蛋白质4.1、埃兹蛋白、根蛋白、膜突蛋白(FERM)结构域为胚胎发育和成虫细胞增殖提供了必不可少的功能。
Genetics. 2001 Sep;159(1):219-28. doi: 10.1093/genetics/159.1.219.
3
A conserved functional domain of Drosophila coracle is required for localization at the septate junction and has membrane-organizing activity.果蝇coracle蛋白的一个保守功能域对于其在分隔连接中的定位是必需的,并且具有膜组织活性。
J Cell Biol. 1998 Mar 23;140(6):1463-73. doi: 10.1083/jcb.140.6.1463.
4
A Drosophila homologue of membrane-skeleton protein 4.1 is associated with septate junctions and is encoded by the coracle gene.膜骨架蛋白4.1的果蝇同源物与分隔连接相关,由coracle基因编码。
Development. 1994 Mar;120(3):545-57. doi: 10.1242/dev.120.3.545.
5
Organizing a functional junctional complex requires specific domains of the Drosophila MAGUK Discs large.组织功能性连接复合体需要果蝇盘大肿瘤抑制蛋白(Drosophila MAGUK Discs large)的特定结构域。
Genes Dev. 1997 Dec 1;11(23):3242-53. doi: 10.1101/gad.11.23.3242.
6
Mutations in the cadherin superfamily member gene dachsous cause a tissue polarity phenotype by altering frizzled signaling.钙黏蛋白超家族成员基因“盘状无翅”(Dachsous)中的突变通过改变卷曲蛋白(Frizzled)信号传导导致组织极性表型。
Development. 1998 Mar;125(5):959-68. doi: 10.1242/dev.125.5.959.
7
Members of the synaptobrevin/vesicle-associated membrane protein (VAMP) family in Drosophila are functionally interchangeable in vivo for neurotransmitter release and cell viability.果蝇中突触小泡蛋白/囊泡相关膜蛋白(VAMP)家族的成员在体内对于神经递质释放和细胞活力具有功能互换性。
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8
The neurofibromatosis-2 homologue, Merlin, and the tumor suppressor expanded function together in Drosophila to regulate cell proliferation and differentiation.神经纤维瘤病2同源物Merlin与肿瘤抑制因子expanded在果蝇中共同发挥作用,以调节细胞增殖和分化。
Development. 2000 Mar;127(6):1315-24. doi: 10.1242/dev.127.6.1315.
9
scabrous modifies epithelial cell adhesion and extends the range of lateral signalling during development of the spaced bristle pattern in Drosophila.糙面蛋白修饰上皮细胞黏附,并在果蝇间隔刚毛模式发育过程中扩展侧向信号传导范围。
Dev Biol. 2001 Dec 15;240(2):361-76. doi: 10.1006/dbio.2001.0482.
10
The claudin-like megatrachea is essential in septate junctions for the epithelial barrier function in Drosophila.类克劳丁巨大气管对于果蝇上皮屏障功能的分隔连接至关重要。
Dev Cell. 2003 Oct;5(4):611-20. doi: 10.1016/s1534-5807(03)00275-2.

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1
The large milkweed bugs' Na,K-ATPase β-subunits colocalize with septate junction proteins in a tissue-specific manner.大斑蝶角蛉的钠钾ATP酶β亚基以组织特异性方式与分隔连接蛋白共定位。
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ESCRT-III-dependent adhesive and mechanical changes are triggered by a mechanism detecting alteration of septate junction integrity in epithelial cells.ESCRT-III 依赖性的黏附和机械变化是由一种机制触发的,该机制可以检测到上皮细胞中隔膜连接完整性的改变。
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Compromised junctional integrity phenocopies age-dependent renal dysfunction in Drosophila Snakeskin mutants.连接完整性受损模拟了果蝇蛇皮突变体中与年龄相关的肾功能障碍。
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5
Formation and remodelling of septate junctions in the epidermis of isopod during development.等足目动物表皮中分隔连接在发育过程中的形成与重塑。
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6
The Osiris family genes function as novel regulators of the tube maturation process in the Drosophila trachea.Osiris 家族基因作为果蝇气管管腔成熟过程的新型调节因子发挥作用。
PLoS Genet. 2023 Jan 23;19(1):e1010571. doi: 10.1371/journal.pgen.1010571. eCollection 2023 Jan.
7
Circulative Transmission of Cileviruses in Mites May Involve the Paracellular Movement of Virions.环病毒在螨类中的循环传播可能涉及病毒粒子的细胞旁移动。
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8
RNA-binding FMRP and Staufen sequentially regulate the Coracle scaffold to control synaptic glutamate receptor and bouton development.RNA 结合蛋白 FMRP 和 Staufen 依次调控 Coracle 支架,以控制突触谷氨酸受体和末梢发展。
Development. 2022 May 1;149(9). doi: 10.1242/dev.200045. Epub 2022 May 3.
9
CG7379 and ING1 suppress cancer cell invasion by maintaining cell-cell junction integrity.CG7379 和 ING1 通过维持细胞间连接的完整性来抑制癌细胞的侵袭。
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10
Transparent Touch: Insights From Model Systems on Epidermal Control of Somatosensory Innervation.透明触摸:来自模型系统对躯体感觉神经支配的表皮控制的见解。
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本文引用的文献

1
Mutations affecting the pattern of the larval cuticle inDrosophila melanogaster : III. Zygotic loci on the X-chromosome and fourth chromosome.影响黑腹果蝇幼虫表皮模式的突变:III. X染色体和第四条染色体上的合子基因座
Wilehm Roux Arch Dev Biol. 1984 Sep;193(5):296-307. doi: 10.1007/BF00848158.
2
Septate and scalariform junctions in arthropods.节肢动物中的分隔连接和梯状连接。
Int Rev Cytol. 1980;63:97-140. doi: 10.1016/s0074-7696(08)61758-1.
3
A conserved functional domain of Drosophila coracle is required for localization at the septate junction and has membrane-organizing activity.果蝇coracle蛋白的一个保守功能域对于其在分隔连接中的定位是必需的,并且具有膜组织活性。
J Cell Biol. 1998 Mar 23;140(6):1463-73. doi: 10.1083/jcb.140.6.1463.
4
JNK signaling and morphogenesis in Drosophila.果蝇中的JNK信号传导与形态发生
Trends Genet. 1998 Jan;14(1):33-8. doi: 10.1016/S0168-9525(97)01320-6.
5
windbeutel, a gene required for dorsoventral patterning in Drosophila, encodes a protein that has homologies to vertebrate proteins of the endoplasmic reticulum.风袋基因是果蝇背腹模式形成所需的一个基因,它编码一种与脊椎动物内质网蛋白具有同源性的蛋白质。
Genes Dev. 1998 Jan 1;12(1):120-31. doi: 10.1101/gad.12.1.120.
6
Antagonism between EGFR and Wingless signalling in the larval cuticle of Drosophila.果蝇幼虫表皮中表皮生长因子受体(EGFR)与无翅信号通路之间的拮抗作用。
Development. 1997 Aug;124(16):3209-19. doi: 10.1242/dev.124.16.3209.
7
Functional studies of the protein 4.1 family of junctional proteins in Drosophila.
Soc Gen Physiol Ser. 1997;52:149-59.
8
PDZ domains: targeting signalling molecules to sub-membranous sites.PDZ结构域:将信号分子靶向至膜下位点
Bioessays. 1997 Jun;19(6):469-79. doi: 10.1002/bies.950190606.
9
The Nf2 tumor suppressor gene product is essential for extraembryonic development immediately prior to gastrulation.Nf2肿瘤抑制基因产物对于原肠胚形成前的胚外发育至关重要。
Genes Dev. 1997 May 15;11(10):1253-65. doi: 10.1101/gad.11.10.1253.
10
Localization of proteins to the apico-lateral junctions of Drosophila epithelia.蛋白质在果蝇上皮细胞顶侧连接部位的定位。
Dev Genet. 1997;20(2):111-8. doi: 10.1002/(SICI)1520-6408(1997)20:2<111::AID-DVG4>3.0.CO;2-A.

果蝇coracle是蛋白4.1超家族的成员之一,在隔膜连接中具有重要的结构功能,在胚胎和成年上皮细胞中具有发育功能。

Drosophila coracle, a member of the protein 4.1 superfamily, has essential structural functions in the septate junctions and developmental functions in embryonic and adult epithelial cells.

作者信息

Lamb R S, Ward R E, Schweizer L, Fehon R G

机构信息

Developmental, Cellular, and Molecular Biology Group, Duke University, Durham, North Carolina 27708-1000, USA.

出版信息

Mol Biol Cell. 1998 Dec;9(12):3505-19. doi: 10.1091/mbc.9.12.3505.

DOI:10.1091/mbc.9.12.3505
PMID:9843584
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC25665/
Abstract

Although extensively studied biochemically, members of the Protein 4. 1 superfamily have not been as well characterized genetically. Studies of coracle, a Drosophila Protein 4.1 homologue, provide an opportunity to examine the genetic functions of this gene family. coracle was originally identified as a dominant suppressor of EgfrElp, a hypermorphic form of the Drosophila Epidermal growth factor receptor gene. In this article, we present a phenotypic analysis of coracle, one of the first for a member of the Protein 4. 1 superfamily. Screens for new coracle alleles confirm the null coracle phenotype of embryonic lethality and failure in dorsal closure, and they identify additional defects in the embryonic epidermis and salivary glands. Hypomorphic coracle alleles reveal functions in many imaginal tissues. Analysis of coracle mutant cells indicates that Coracle is a necessary structural component of the septate junction required for the maintenance of the transepithelial barrier but is not necessary for apical-basal polarity, epithelial integrity, or cytoskeletal integrity. In addition, coracle phenotypes suggest a specific role in cell signaling events. Finally, complementation analysis provides information regarding the functional organization of Coracle and possibly other Protein 4.1 superfamily members. These studies provide insights into a range of in vivo functions for coracle in developing embryos and adults.

摘要

尽管对蛋白质4.1超家族成员进行了广泛的生物化学研究,但在遗传学方面对其特征的了解还不够深入。对果蝇蛋白质4.1同源物coracle的研究为研究该基因家族的遗传功能提供了一个机会。coracle最初被鉴定为EgfrElp(果蝇表皮生长因子受体基因的一种超形态形式)的显性抑制因子。在本文中,我们对coracle进行了表型分析,这是对蛋白质4.1超家族成员的首次此类分析之一。对新的coracle等位基因的筛选证实了coracle的无效表型,即胚胎致死和背侧闭合失败,并且还发现了胚胎表皮和唾液腺中的其他缺陷。亚效coracle等位基因揭示了其在许多成虫盘组织中的功能。对coracle突变细胞的分析表明,Coracle是维持上皮屏障所需的分隔连接的必要结构成分,但对顶-基极性、上皮完整性或细胞骨架完整性并非必需。此外,coracle的表型表明其在细胞信号传导事件中具有特定作用。最后,互补分析提供了有关Coracle以及可能其他蛋白质4.1超家族成员功能组织的信息。这些研究为coracle在发育中的胚胎和成虫中的一系列体内功能提供了见解。