Coordinated genomic control of ciliogenesis and cell movement by RFX2

被引:106
作者
Chung, Mei-I [1 ]
Kwon, Taejoon [1 ]
Tu, Fan [1 ]
Brooks, Eric R. [1 ]
Gupta, Rakhi [2 ]
Meyer, Matthew [1 ]
Baker, Julie C. [2 ]
Marcotte, Edward M. [1 ,3 ,4 ]
Wallingford, John B. [1 ,3 ,4 ,5 ]
机构
[1] Univ Texas Austin, Dept Mol Biosci, Austin, TX 78712 USA
[2] Stanford Univ, Dept Genet, Stanford, CA 94305 USA
[3] Univ Texas Austin, Ctr Syst & Synthet Biol, Austin, TX 78712 USA
[4] Univ Texas Austin, Inst Cellular & Mol Biol, Austin, TX 78712 USA
[5] Univ Texas Austin, Howard Hughes Med Inst, Austin, TX 78712 USA
来源
ELIFE | 2014年 / 3卷
关键词
PRIMARY CILIARY DYSKINESIA; HUMAN AIRWAY EPITHELIUM; GENE-EXPRESSION DATA; INTRAFLAGELLAR TRANSPORT; BASAL-CELLS; INTERACTION NETWORKS; STEM-CELLS; PROTEIN; XENOPUS; POLARITY;
D O I
10.7554/eLife.01439
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
The mechanisms linking systems-level programs of gene expression to discrete cell biological processes in vivo remain poorly understood. In this study, we have defined such a program for multi-ciliated epithelial cells (MCCs), a cell type critical for proper development and homeostasis of the airway, brain and reproductive tracts. Starting from genomic analysis of the cilia-associated transcription factor Rfx2, we used bioinformatics and in vivo cell biological approaches to gain insights into the molecular basis of cilia assembly and function. Moreover, we discovered a previously unrecognized role for an Rfx factor in cell movement, finding that Rfx2 cell-autonomously controls apical surface expansion in nascent MCCs. Thus, Rfx2 coordinates multiple, distinct gene expression programs in MCCs, regulating genes that control cell movement, ciliogenesis, and cilia function. As such, the work serves as a paradigm for understanding genomic control of cell biological processes that span from early cell morphogenetic events to terminally differentiated cellular functions.
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页数:22
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共 81 条
[1]  
AFZELIUS B A, 1976, Science (Washington D C), V193, P317
[2]   The Transcription Factor Rfx3 Regulates β-Cell Differentiation, Function, and Glucokinase Expression [J].
Ait-Lounis, Aouatef ;
Bonal, Claire ;
Seguin-Estevez, Queralt ;
Schmid, Christoph D. ;
Bucher, Philipp ;
Herrera, Pedro L. ;
Durand, Benedicte ;
Meda, Paolo ;
Reith, Walter .
DIABETES, 2010, 59 (07) :1674-1685
[3]   Robo1 regulates the development of major axon tracts and interneuron migration in the forebrain [J].
Andrews, William ;
Liapi, Anastasia ;
Plachez, Celine ;
Camurri, Laura ;
Zhang, Jiangyang ;
Mori, Susumu ;
Murakami, Fujio ;
Parnavelas, John G. ;
Sundaresan, Vasi ;
Richards, Linda J. .
DEVELOPMENT, 2006, 133 (11) :2243-2252
[4]   The Rfx4 Transcription Factor Modulates Shh Signaling by Regional Control of Ciliogenesis [J].
Ashique, Amir M. ;
Choe, Youngshik ;
Karlen, Mattias ;
May, Scott R. ;
Phamluong, Khanhky ;
Solloway, Mark J. ;
Ericson, Johan ;
Peterson, Andrew S. .
SCIENCE SIGNALING, 2009, 2 (95) :ra70
[5]   The Ciliogenic Transcription Factor RFX3 Regulates Early Midline Distribution of Guidepost Neurons Required for Corpus Callosum Development [J].
Benadiba, Carine ;
Magnani, Dario ;
Niquille, Mathieu ;
Morle, Laurette ;
Valloton, Delphine ;
Nawabi, Homaira ;
Ait-Lounis, Aouatef ;
Otsmane, Belkacem ;
Reith, Walter ;
Theil, Thomas ;
Hornung, Jean-Pierre ;
Lebrand, Cecile ;
Durand, Benedicte .
PLOS GENETICS, 2012, 8 (03)
[6]   The transcription factor RFX3 directs nodal cilium development and left-right asymmetry specification [J].
Bonnafe, E ;
Touka, M ;
AitLounis, A ;
Baas, D ;
Barras, E ;
Ucla, C ;
Moreau, A ;
Flamant, F ;
Dubruille, R ;
Couble, P ;
Collignon, J ;
Durand, B ;
Reith, W .
MOLECULAR AND CELLULAR BIOLOGY, 2004, 24 (10) :4417-4427
[7]   Control of vertebrate intraflagellar transport by the planar cell polarity effector Fuz [J].
Brooks, Eric R. ;
Wallingford, John B. .
JOURNAL OF CELL BIOLOGY, 2012, 198 (01) :37-45
[8]   The in vivo dissection of direct RFX-target gene promoters in C. elegans reveals a novel cis-regulatory element, the C-box [J].
Burghoorn, Jan ;
Piasecki, Brian P. ;
Crona, Filip ;
Phirke, Prasad ;
Jeppsson, Kristian E. ;
Swoboda, Peter .
DEVELOPMENTAL BIOLOGY, 2012, 368 (02) :415-426
[9]   Exome Capture Reveals ZNF423 and CEP164 Mutations, Linking Renal Ciliopathies to DNA Damage Response Signaling [J].
Chaki, Moumita ;
Airik, Rannar ;
Ghosh, Amiya K. ;
Giles, Rachel H. ;
Chen, Rui ;
Slaats, Gisela G. ;
Wang, Hui ;
Hurd, Toby W. ;
Zhou, Weibin ;
Cluckey, Andrew ;
Gee, Heon Yung ;
Ramaswami, Gokul ;
Hong, Chen-Jei ;
Hamilton, Bruce A. ;
Cervenka, Igor ;
Ganji, Ranjani Sri ;
Bryja, Vitezslav ;
Arts, Heleen H. ;
van Reeuwijk, Jeroen ;
Oud, Machteld M. ;
Letteboer, Stef J. F. ;
Roepman, Ronald ;
Husson, Herve ;
Ibraghimov-Beskrovnaya, Oxana ;
Yasunaga, Takayuki ;
Walz, Gerd ;
Eley, Lorraine ;
Sayer, John A. ;
Schermer, Bernhard ;
Liebau, Max C. ;
Benzing, Thomas ;
Le Corre, Stephanie ;
Drummond, Iain ;
Janssen, Sabine ;
Allen, Susan J. ;
Natarajan, Sivakumar ;
O'Toole, John F. ;
Attanasio, Massimo ;
Saunier, Sophie ;
Antignac, Corinne ;
Koenekoop, Robert K. ;
Ren, Huanan ;
Lopez, Irma ;
Nayir, Ahmet ;
Stoetzel, Corinne ;
Dollfus, Helene ;
Massoudi, Rustin ;
Gleeson, Joseph G. ;
Andreoli, Sharon P. ;
Doherty, Dan G. .
CELL, 2012, 150 (03) :533-548
[10]   RFX2 is broadly required for ciliogenesis during vertebrate development [J].
Chung, Mei-I ;
Peyrot, Sara M. ;
LeBoeuf, Sarah ;
Park, Tae Joo ;
McGary, Kriston L. ;
Marcotte, Edward M. ;
Wallingford, John B. .
DEVELOPMENTAL BIOLOGY, 2012, 363 (01) :155-165