Nakada Yuji, Hunsaker Thomas L, Henke R Michael, Johnson Jane E
Center for Basic Neuroscience, UT Southwestern Medical Center, 5323 Harry Hines Blvd, Dallas, TX 75390-9111, USA.
Development. 2004 Mar;131(6):1319-30. doi: 10.1242/dev.01008.
Many members of the basic helix-loop-helix (bHLH) family of transcription factors play pivotal roles in the development of a variety of tissues and organisms. We identify activities for the neural bHLH proteins Mash1 and Math1 in inducing neuronal differentiation, and in inducing the formation of distinct dorsal interneuron subtypes in the chick neural tube. Although both factors induce neuronal differentiation, each factor has a distinct activity in the type of dorsal interneuron that forms, with overexpression of Math1 increasing dI1 interneurons, and Mash1 increasing dI3 interneurons. Math1 and Mash1 function as transcriptional activators for both of these functions. Furthermore, we define discrete domains within the bHLH motif that are required for these different activities in neural development. Helix 1 of the Mash1 HLH domain is necessary for Mash1 to be able to promote neuronal differentiation, and is sufficient to confer this activity to the non-neural bHLH factor MyoD. In contrast, helix 2 of Math1, and both helix 1 and 2 of Mash1, are the domains required for the neuronal specification activities of these factors. The requirement for distinct domains within the HLH motif of Mash1 and Math1 for driving neuronal differentiation and cell-type specification probably reflects the importance of unique protein-protein interactions involved in these functions.
许多基础螺旋-环-螺旋(bHLH)转录因子家族成员在多种组织和生物体的发育中发挥着关键作用。我们确定了神经bHLH蛋白Mash1和Math1在诱导神经元分化以及在鸡神经管中诱导形成不同的背侧中间神经元亚型方面的活性。尽管这两种因子都能诱导神经元分化,但每种因子在形成的背侧中间神经元类型中具有独特的活性,Math1过表达会增加dI1中间神经元,而Mash1过表达会增加dI3中间神经元。Math1和Mash1在这两种功能中均作为转录激活因子发挥作用。此外,我们定义了bHLH基序内的离散结构域,这些结构域是神经发育中这些不同活性所必需的。Mash1 HLH结构域的螺旋1是Mash1能够促进神经元分化所必需的,并且足以将这种活性赋予非神经bHLH因子MyoD。相比之下,Math1的螺旋2以及Mash1的螺旋1和螺旋2是这些因子的神经元特异性活性所需的结构域。Mash1和Math1的HLH基序内驱动神经元分化和细胞类型特异性所需的不同结构域可能反映了这些功能中独特的蛋白质-蛋白质相互作用的重要性。