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Ift25 is not a cystic kidney disease gene but is required for early steps of kidney development.Ift25不是一种多囊肾病基因,但却是肾脏发育早期阶段所必需的。
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2
Intraflagellar transport 27 is essential for hedgehog signaling but dispensable for ciliogenesis during hair follicle morphogenesis.鞭毛内运输蛋白27对刺猬信号通路至关重要,但在毛囊形态发生过程中对纤毛发生可有可无。
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3
IFT25 is required for the construction of the trypanosome flagellum.IFT25 对于锥虫鞭毛的构建是必需的。
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Intraflagellar transporter protein (IFT27), an IFT25 binding partner, is essential for male fertility and spermiogenesis in mice.鞭毛内运输蛋白(IFT27)是IFT25的结合伴侣,对小鼠的雄性生育能力和精子发生至关重要。
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RABL4/IFT27 in a nucleotide-independent manner promotes phospholipase D ciliary retrieval via facilitating BBSome reassembly at the ciliary tip.RABL4/IFT27以一种不依赖核苷酸的方式,通过促进纤毛顶端的BBSome重新组装来促进磷脂酶D的纤毛回收。
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IFT27 links the BBSome to IFT for maintenance of the ciliary signaling compartment.IFT27 将 BBSome 与 IFT 连接起来,以维持纤毛信号隔室。
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Fibroblast growth factor receptor signaling in kidney and lower urinary tract development.成纤维细胞生长因子受体信号在肾脏和下尿路发育中的作用
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Intraflagellar transport (IFT) protein IFT25 is a phosphoprotein component of IFT complex B and physically interacts with IFT27 in Chlamydomonas.鞭毛内运输(IFT)蛋白IFT25是IFT复合物B的一种磷蛋白成分,在衣藻中与IFT27发生物理相互作用。
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IFT25 links the signal-dependent movement of Hedgehog components to intraflagellar transport.IFT25 将 Hedgehog 组成成分的信号依赖性运动与内鞭毛运输联系起来。
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Ureter development and associated congenital anomalies.输尿管发育及相关先天性异常。
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Transcriptional regulation by the NSL complex enables diversification of IFT functions in ciliated versus nonciliated cells.NSL 复合物的转录调控使 IFT 功能在纤毛细胞和非纤毛细胞中多样化。
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The centrosomal protein 83 (CEP83) regulates human pluripotent stem cell differentiation toward the kidney lineage.中心体蛋白 83(CEP83)调控人多能干细胞向肾系分化。
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The roles of intraflagellar transport (IFT) protein 25 in mammalian signaling transduction and flagellogenesis.动纤蛋白运输(IFT)蛋白 25 在哺乳动物信号转导和鞭毛发生中的作用。
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Duplex kidney formation: developmental mechanisms and genetic predisposition.重复肾的形成:发育机制与遗传易感性
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本文引用的文献

1
Constitutive Activation of Smoothened in the Renal Collecting Ducts Leads to Renal Hypoplasia, Hydronephrosis, and Hydroureter.肾集合管中Smoothened的组成性激活导致肾发育不全、肾积水和输尿管积水。
Cells Tissues Organs. 2017;204(1):38-48. doi: 10.1159/000464460. Epub 2017 Jun 1.
2
Genetic link between renal birth defects and congenital heart disease.肾脏先天性缺陷与先天性心脏病之间的遗传联系。
Nat Commun. 2016 Mar 22;7:11103. doi: 10.1038/ncomms11103.
3
Urogenital development in Pallister-Hall syndrome is disrupted in a cell-lineage-specific manner by constitutive expression of GLI3 repressor.在帕利斯特-霍尔综合征中,泌尿生殖系统发育因GLI3阻遏物的组成性表达而以细胞谱系特异性方式受到破坏。
Hum Mol Genet. 2016 Feb 1;25(3):437-47. doi: 10.1093/hmg/ddv483. Epub 2015 Nov 24.
4
Next generation limb development and evolution: old questions, new perspectives.下一代肢体发育与进化:旧问题,新视角。
Development. 2015 Nov 15;142(22):3810-20. doi: 10.1242/dev.125757.
5
Nephron Patterning: Lessons from Xenopus, Zebrafish, and Mouse Studies.肾单位模式形成:来自非洲爪蟾、斑马鱼和小鼠研究的经验教训。
Cells. 2015 Sep 11;4(3):483-99. doi: 10.3390/cells4030483.
6
Global genetic analysis in mice unveils central role for cilia in congenital heart disease.对小鼠的全基因组分析揭示了纤毛在先天性心脏病中的核心作用。
Nature. 2015 May 28;521(7553):520-4. doi: 10.1038/nature14269. Epub 2015 Mar 25.
7
IFT27 links the BBSome to IFT for maintenance of the ciliary signaling compartment.IFT27 将 BBSome 与 IFT 连接起来,以维持纤毛信号隔室。
Dev Cell. 2014 Nov 10;31(3):279-290. doi: 10.1016/j.devcel.2014.09.011. Epub 2014 Oct 30.
8
Pallister-Hall syndrome has gone the way of modern medical genetics.帕利斯特-霍尔综合征已成为现代医学遗传学的研究对象。
Am J Med Genet C Semin Med Genet. 2014 Dec;166C(4):414-8. doi: 10.1002/ajmg.c.31419. Epub 2014 Nov 25.
9
Downregulating hedgehog signaling reduces renal cystogenic potential of mouse models.下调刺猬信号通路可降低小鼠模型的肾囊肿发生潜能。
J Am Soc Nephrol. 2014 Oct;25(10):2201-12. doi: 10.1681/ASN.2013070735. Epub 2014 Apr 3.
10
Loss of cilia suppresses cyst growth in genetic models of autosomal dominant polycystic kidney disease.纤毛缺失抑制常染色体显性遗传多囊肾病模型中的囊肿生长。
Nat Genet. 2013 Sep;45(9):1004-12. doi: 10.1038/ng.2715. Epub 2013 Jul 28.

Ift25不是一种多囊肾病基因,但却是肾脏发育早期阶段所必需的。

Ift25 is not a cystic kidney disease gene but is required for early steps of kidney development.

作者信息

Desai Paurav B, San Agustin Jovenal T, Stuck Michael W, Jonassen Julie A, Bates Carlton M, Pazour Gregory J

机构信息

Program in Molecular Medicine, University of Massachusetts Medical School, Biotech II, Suite 213, 373 Plantation Street, Worcester, MA 01605, United States.

Department of Microbiology and Physiological Systems, University of Massachusetts Medical School, 55 Lake Avenue North, Worcester, MA 01655, United States.

出版信息

Mech Dev. 2018 Jun;151:10-17. doi: 10.1016/j.mod.2018.04.001. Epub 2018 Apr 4.

DOI:10.1016/j.mod.2018.04.001
PMID:29626631
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5972074/
Abstract

Eukaryotic cilia are assembled by intraflagellar transport (IFT) where large protein complexes called IFT particles move ciliary components from the cell body to the cilium. Defects in most IFT particle proteins disrupt ciliary assembly and cause mid gestational lethality in the mouse. IFT25 and IFT27 are unusual components of IFT-B in that they are not required for ciliary assembly and mutant mice survive to term. The mutants die shortly after birth with numerous organ defects including duplex kidneys. Completely duplex kidneys result from defects in ureteric bud formation at the earliest steps of metanephric kidney development. Ureteric bud initiation is a highly regulated process involving reciprocal signaling between the ureteric epithelium and the overlying metanephric mesenchyme with regulation by the peri-Wolffian duct stroma. The finding of duplex kidney in Ift25 and Ift27 mutants suggests functions for these genes in regulation of ureteric bud initiation. Typically the deletion of IFT genes in the kidney causes rapid cyst growth in the early postnatal period. In contrast, the loss of Ift25 results in smaller kidneys, which show only mild tubule dilations that become apparent in adulthood. The smaller kidneys appear to result from reduced branching in the developing metanephric kidney. This work indicates that IFT25 and IFT27 are important players in the early development of the kidney and suggest that duplex kidney is part of the ciliopathy spectrum.

摘要

真核生物的纤毛通过鞭毛内运输(IFT)进行组装,在这个过程中,称为IFT颗粒的大型蛋白质复合物将纤毛成分从细胞体转运到纤毛。大多数IFT颗粒蛋白的缺陷会破坏纤毛组装,并导致小鼠在妊娠中期死亡。IFT25和IFT27是IFT-B的特殊成分,因为它们不是纤毛组装所必需的,突变小鼠能够存活至足月。这些突变体在出生后不久死亡,伴有许多器官缺陷,包括双肾盂。完全性双肾盂是由于后肾发育最早阶段输尿管芽形成缺陷所致。输尿管芽起始是一个高度调控的过程,涉及输尿管上皮与覆盖的后肾间充质之间的相互信号传导,并受沃尔夫管周围基质的调节。在Ift25和Ift27突变体中发现双肾盂表明这些基因在输尿管芽起始的调控中发挥作用。通常,肾脏中IFT基因的缺失会导致出生后早期囊肿迅速生长。相比之下,Ift25的缺失导致肾脏较小,仅表现出轻度的肾小管扩张,在成年期才会明显。较小的肾脏似乎是由于发育中的后肾分支减少所致。这项工作表明IFT25和IFT27是肾脏早期发育的重要参与者,并提示双肾盂是纤毛病谱系的一部分。