Martin Donna M, Skidmore Jennifer M, Philips Steven T, Vieira Claudia, Gage Philip J, Condie Brian G, Raphael Yehoash, Martinez Salvador, Camper Sally A
Department of Pediatrics and Communicable Diseases, The University of Michigan, Ann Arbor, MI 48109, USA.
Dev Biol. 2004 Mar 1;267(1):93-108. doi: 10.1016/j.ydbio.2003.10.035.
Pitx2, a homeodomain transcription factor, is essential for normal development of the pituitary gland, craniofacial region, eyes, heart, abdominal viscera, and limbs. Complete loss of Pitx2 in mice (Pitx2(-/-)) results in embryonic lethality by approximately e15 due to cardiac defects, whereas embryos with partial loss of function (Pitx2(neo/-) or Pitx2(neo/neo)) survive until later in development (e17-e19). Pitx2 is expressed in discrete populations of postmitotic neurons in the mouse brain, but its role in mammalian central nervous system (CNS) development is not known. We undertook an analysis of Pitx2-deficient embryos to determine whether loss of Pitx2 affects CNS development. The CNS is normal in hypomorphic e16.5 Pitx2(neo/-) and e18.5 Pitx2(neo/neo) embryos, with no evidence of midline or other defects. Midgestation (e10.5) Pitx2(-/-) embryos have normally formed neural tube structures and cerebral vesicles, whereas older (e14.5) Pitx2(-/-) embryos exhibit loss of gene expression and axonal projections in the subthalamic nucleus (a group of cells in the ventrolateral thalamus) and in the developing superior colliculus of dorsal midbrain. Our results suggest a role for Pitx2 in regulating regionally specific terminal neuronal differentiation in the developing ventrolateral thalamus and midbrain.
Pitx2是一种含同源结构域的转录因子,对垂体、颅面部区域、眼睛、心脏、腹部脏器和四肢的正常发育至关重要。小鼠中Pitx2完全缺失(Pitx2(-/-))会因心脏缺陷导致胚胎在约E15时死亡,而功能部分缺失的胚胎(Pitx2(neo/-)或Pitx2(neo/neo))则能存活至发育后期(E17 - E19)。Pitx2在小鼠大脑中处于有丝分裂后神经元的离散群体中表达,但其在哺乳动物中枢神经系统(CNS)发育中的作用尚不清楚。我们对Pitx2缺陷胚胎进行了分析,以确定Pitx2的缺失是否会影响CNS发育。在低表达的E16.5 Pitx2(neo/-)和E18.5 Pitx2(neo/neo)胚胎中,CNS是正常的,没有中线或其他缺陷的迹象。妊娠中期(E10.5)的Pitx2(-/-)胚胎具有正常形成的神经管结构和脑泡,而较老的(E14.5)Pitx2(-/-)胚胎在丘脑底核(腹外侧丘脑中的一组细胞)和背侧中脑发育中的上丘中表现出基因表达丧失和轴突投射缺失。我们的结果表明Pitx2在调节发育中的腹外侧丘脑和中脑区域特异性终末神经元分化中发挥作用。