Msx1 and Msx2 act as essential activators of Atoh1 expression in the murine spinal cord

被引:18
|
作者
Duval, Nathalie [1 ]
Daubas, Philippe [1 ]
de Carbon, Celine Bourcier [1 ]
St Cloment, Cecile [1 ]
Tinevez, Jean-Yves [2 ]
Lopes, Miguel [1 ]
Ribes, Vanessa [3 ]
Robert, Benoit [1 ]
机构
[1] Inst Pasteur, CNRS, URA 2578, F-75015 Paris, France
[2] Inst Pasteur, Dynam Imaging Platform, F-75015 Paris, France
[3] UPMC, INSERM, Pitie Salpetriere, Myol Grp,UMR S787, F-75634 Paris, France
来源
DEVELOPMENT | 2014年 / 141卷 / 08期
关键词
Homeodomain transcription factor; Neurogenesis; Developing spinal cord; COMMISSURAL NEURON IDENTITY; DEVELOPING NERVOUS-SYSTEM; MSH HOMEOBOX GENE; ROOF PLATE; MATH1; EXPRESSION; HOMEODOMAIN PROTEINS; VERTEBRATE CNS; HORMONE GENE; FACTOR OLIG3; DORSAL;
D O I
10.1242/dev.099002
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Dorsal spinal neurogenesis is orchestrated by the combined action of signals secreted from the roof plate organizer and a downstream transcriptional cascade. Within this cascade, Msx1 and Msx2, two homeodomain transcription factors (TFs), are induced earlier than bHLH neuralizing TFs. Whereas bHLH TFs have been shown to specify neuronal cell fate, the function of Msx genes remains poorly defined. We describe dramatic alterations of neuronal patterning in Msx1/Msx2 double-mutant mouse embryos. The most dorsal spinal progenitor pool fails to express the bHLH neuralizing TF Atoh1, which results in a lack of Lhx2-positive and Barhl2-positive dl1 interneurons. Neurog1 and Ascl1 expression territories are dorsalized, leading to ectopic dorsal differentiation of dl2 and dl3 interneurons. In proportion, the amount of Neurog1-expressing progenitors appears unaffected, whereas the number of Ascl1-positive cells is increased. These defects occur while BMP signaling is still active in the Msx1/Msx2 mutant embryos. Cell lineage analysis and co-immunolabeling demonstrate that Atoh1-positive cells derive from progenitors expressing both Msx1 and Msx2. In vitro, Msx1 and Msx2 proteins activate Atoh1 transcription by specifically interacting with several homeodomain binding sites in the Atoh1 3' enhancer. In vivo, Msx1 and Msx2 are required for Atoh1 3 ' enhancer activity and ChIP experiments confirm Msx1 binding to this regulatory sequence. These data support a novel function of Msx1 and Msx2 as transcriptional activators. Our study provides new insights into the transcriptional control of spinal cord patterning by BMP signaling, with Msx1 and Msx2 acting upstream of Atoh1.
引用
收藏
页码:1726 / 1736
页数:11
相关论文
共 50 条
  • [31] Differential expression of Msx1 sense and antisense transcripts during craniofacial bone formation related to the Msx1 protein expression pattern.
    Vi-Fane, B.
    Davideau, J. -L.
    Hotton, D.
    Berdal, A.
    JOURNAL OF DENTAL RESEARCH, 2003, 82 : B168 - B168
  • [32] Loss of homeoprotein Msx1 and Msx2 leading to athletic and kinematic impairment related to the increasing neural excitability of neurons in aberrant neocortex in mice
    Yu, Bin
    Jin, Yuqing
    Shen, Yi
    Yang, Yenan
    Wang, Gang
    Zhu, Haiying
    Yu, Yuguo
    Wang, Jingqiang
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2019, 516 (01) : 229 - 235
  • [33] LIM homeobox transcription factor Lhx2 inhibits skeletal muscle differentiation in part via transcriptional activation of Msx1 and Msx2
    Kodaka, Yusaku
    Tanaka, Kiyoko
    Kitajima, Kenji
    Tanegashima, Kosuke
    Matsuda, Ryoichi
    Hara, Takahiko
    EXPERIMENTAL CELL RESEARCH, 2015, 331 (02) : 309 - 319
  • [34] Expression of MSX1 in Human Normal Pituitaries and Pituitary Adenomas
    Yoshihito Mizokami
    Noboru Egashira
    Susumu Takekoshi
    Johbu Itoh
    Yoshiko Itoh
    Robert Yoshiyuki Osamura
    Mitsunori Matsumae
    Endocrine Pathology, 2008, 19 : 54 - 61
  • [35] Msx1 is essential for proper rostral tip formation of the mouse mandible
    Shibuya, Saori
    Nakatomi, Mitsushiro
    Kometani-Gunjigake, Kaori
    Nakao-Kuroishi, Kayoko
    Matsuyama, Kae
    Kataoka, Shinji
    Toyono, Takashi
    Seta, Yuji
    Kawamoto, Tatsuo
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2023, 642 : 75 - 82
  • [36] Targeted Reduction of Vascular Msx1 and Msx2 Mitigates Arteriosclerotic Calcification and Aortic Stiffness in LDLR-Deficient Mice Fed Diabetogenic Diets
    Cheng, Su-Li
    Behrmann, Abraham
    Shao, Jian-Su
    Ramachandran, Bindu
    Krchma, Karen
    Arredondo, Yoanna Bello
    Kovacs, Attila
    Mead, Megan
    Maxson, Robert
    Towler, Dwight A.
    DIABETES, 2014, 63 (12) : 4326 - 4337
  • [37] Expression of MSX1 in human normal pituitaries and pituitary adenomas
    Mizokami, Yoshihito
    Egashira, Noboru
    Takekoshi, Susumu
    Itoh, Johbu
    Itoh, Yoshiko
    Osamura, Robert Yoshiyuki
    Matsumae, Mitsunori
    ENDOCRINE PATHOLOGY, 2008, 19 (01) : 54 - 61
  • [38] Msx1 and Msx2 regulate survival of secondary heart field precursors and post-migratory proliferation of cardiac neural crest in the outflow tract
    Chen, Yi-Hui
    Ishii, Mamoru
    Sun, Jingjing
    Sucov, Henry M.
    Maxson, Robert E., Jr.
    DEVELOPMENTAL BIOLOGY, 2007, 308 (02) : 421 - 437
  • [39] Expression and regulation of the Msx1 natural antisense transcript during development
    Coudert, AE
    Pibouin, L
    Vi-Fane, B
    Thomas, BL
    Macdougall, M
    Choudhury, A
    Robert, B
    Sharpe, PT
    Berdal, A
    Lezot, F
    NUCLEIC ACIDS RESEARCH, 2005, 33 (16) : 5208 - 5218
  • [40] Autoregulatory Loop of Msx1 Expression Involving Its Antisense Transcripts
    Petit, Stephane
    Meary, Fleur
    Pibouin, Laurence
    Jeanny, Jean-Claude
    Fernandes, Isabelle
    Poliard, Anne
    Hotton, Dominique
    Berdal, Ariane
    Babajko, Sylvie
    JOURNAL OF CELLULAR PHYSIOLOGY, 2009, 220 (02) : 303 - 310