The requirement for Phr1 in CNS axon tract formation reveals the corticostriatal boundary as a choice point for cortical axons

被引:110
作者
Bloom, A. Joseph
Miller, Bradley R.
Sanes, Joshua R.
DiAntonio, Aaron [1 ]
机构
[1] Washington Univ, Dept Mol Biol & Pharmacol, St Louis, MO 63110 USA
[2] Harvard Univ, Dept Mol & Cellular Biol, Cambridge, MA 02138 USA
关键词
axon guidance; synapse formation; internal capsule; neuromuscular junction; DLK;
D O I
10.1101/gad.1592107
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Phr1 is the single well-conserved murine ortholog of the invertebrate ubiquitin ligase genes highwire ( in Drosophila) and rpm-1 ( in Caenorhabditis elegans). The function and mechanism of action of highwire and rpm-1 are similar-both cell-autonomously regulate synaptogenesis by down-regulating the ortholog of the mitogen-activated protein kinase kinase kinase dual leucine zipper kinase ( MAPKKK DLK). Here, using a targeted conditional mutant, we demonstrate that Phr1 also plays essential roles in mammalian neural development. As in invertebrates, Phr1 functions cell-autonomously to sculpt motor nerve terminals. In addition, Phr1 plays essential roles in the formation of major CNS axon tracts including those of the internal capsule, in part via cell-nonautonomous mechanisms, and these results reveal a choice point for cortical axons at the corticostriatal boundary. Furthermore, whereas the neurite morphology phenotypes of highwire and rpm-1 are suppressed by loss of DLK in flies and worms, Phr1-dependent CNS defects persist in Phr1, DLK double mutants. Thus, in the mammalian nervous system Phr1 is required for formation of major CNS axon tracts via a mechanism that is both cell-nonautonomous and independent of DLK.
引用
收藏
页码:2593 / 2606
页数:14
相关论文
共 41 条
[1]   Slit proteins prevent midline crossing and determine the dorsoventral position of major axonal pathways in the mammalian forebrain [J].
Bagri, A ;
Marín, O ;
Plump, AS ;
Mak, J ;
Pleasure, SJ ;
Rubenstein, JLR ;
Tessier-Lavigne, M .
NEURON, 2002, 33 (02) :233-248
[2]   Transgenic labeling of the corticospinal tract for monitoring axonal responses to spinal cord injury [J].
Bareyre, FM ;
Kerschensteiner, M ;
Misgeld, T ;
Sanes, JR .
NATURE MEDICINE, 2005, 11 (12) :1355-1360
[3]   Evidence for a conserved function in synapse formation reveals Phr1 as a candidate gene for respiratory failure in newborn mice [J].
Burgess, RW ;
Peterson, KA ;
Johnson, MJ ;
Roix, JJ ;
Welsh, IC ;
O'Brien, TP .
MOLECULAR AND CELLULAR BIOLOGY, 2004, 24 (03) :1096-1105
[4]   Cell migration along the lateral cortical stream to the developing basal telencephalic limbic system [J].
Carney, Rosalind S. E. ;
Alfonso, Teresa B. ;
Cohen, Daniela ;
Dai, Haining ;
Nery, Susana ;
Stoica, Bogdan ;
Slotkin, Jonathan ;
Bregman, Barbara S. ;
Fishell, Gord ;
Corbin, Joshua G. .
JOURNAL OF NEUROSCIENCE, 2006, 26 (45) :11562-11574
[5]  
Chapouton P, 2001, DEVELOPMENT, V128, P5149
[6]   Highwire restrains synaptic growth by attenuating a MAP kinase signal [J].
Collins, Catherine A. ;
Wairkar, Yogesh P. ;
Johnson, Sylvia L. ;
DiAntonio, Aaron .
NEURON, 2006, 51 (01) :57-69
[7]   Formation of the retinotectal projection requires Esrom, an ortholog of PAM (protein associated with Myc) [J].
D'Souza, J ;
Hendricks, M ;
Le Guyader, S ;
Subburaju, S ;
Grunewald, B ;
Scholich, K ;
Jesuthasan, S .
DEVELOPMENT, 2005, 132 (02) :247-256
[8]   Ubiquitination-dependent mechanisms regulate synaptic growth and function [J].
DiAntonio, A ;
Haghighi, AP ;
Portman, SL ;
Lee, JD ;
Amaranto, AM ;
Goodman, CS .
NATURE, 2001, 412 (6845) :449-452
[9]   Pax6, Tbr2, and Tbr1 are expressed sequentially by radial glia, intermediate progenitor cells, and postmitotic neurons in developing neocortex [J].
Englund, C ;
Fink, A ;
Lau, C ;
Pham, D ;
Daza, RAM ;
Bulfone, A ;
Kowalczyk, T ;
Hevner, RF .
JOURNAL OF NEUROSCIENCE, 2005, 25 (01) :247-251
[10]   Imaging neuronal subsets in transgenic mice expressing multiple spectral variants of GFP [J].
Feng, GP ;
Mellor, RH ;
Bernstein, M ;
Keller-Peck, C ;
Nguyen, QT ;
Wallace, M ;
Nerbonne, JM ;
Lichtman, JW ;
Sanes, JR .
NEURON, 2000, 28 (01) :41-51