Departament de Ciències Fisiològiques II, Institut d'Investigació Biomèdica de Bellvitge, Universitat de Barcelona, L'Hospitalet de Llobregat Spain.
Front Cell Neurosci. 2013 Jun 4;7:87. doi: 10.3389/fncel.2013.00087. eCollection 2013.
Bone morphogenetic proteins (BMPs) make up a family of morphogens that are critical for patterning, development, and function of the central and peripheral nervous system. Their effects on neural cells are pleiotropic and highly dynamic depending on the stage of development and the local niche. Neural cells display a broad expression profile of BMP ligands, receptors, and transducer molecules. Moreover, interactions of BMP signaling with other incoming morphogens and signaling pathways are crucial for most of these processes. The key role of BMP signaling suggests that it includes many regulatory mechanisms that restrict BMP activity both temporally and spatially. BMPs affect neural cell fate specification in a dynamic fashion. Initially they inhibit proliferation of neural precursors and promote the first steps in neuronal differentiation. Later on, BMP signaling effects switch from neuronal induction to promotion of astroglial identity and inhibition of neuronal or oligodendroglial lineage commitment. Furthermore, in postmitotic cells, BMPs regulate cell survival and death, to modulate neuronal subtype specification, promote dendritic and axonal growth and induce synapse formation and stabilization. In this review, we examine the canonical and non-canonical mechanisms of BMP signal transduction. Moreover, we focus on the specific role of BMPs in the nervous system including their ability to regulate neural stem cell proliferation, self-renewal, lineage specification, and neuronal function.
骨形态发生蛋白(BMPs)构成了形态发生素家族,对于中枢和周围神经系统的模式形成、发育和功能至关重要。它们对神经细胞的影响是多效的,高度动态的,取决于发育阶段和局部小生境。神经细胞显示出广泛的 BMP 配体、受体和转导分子表达谱。此外,BMP 信号与其他传入形态发生素和信号通路的相互作用对于这些过程中的大多数都是至关重要的。BMP 信号的关键作用表明,它包含许多调节机制,可在时间和空间上限制 BMP 活性。BMP 以动态方式影响神经细胞命运特化。最初,它们抑制神经前体的增殖并促进神经元分化的第一步。后来,BMP 信号作用从神经元诱导转变为促进星形胶质细胞特征和抑制神经元或少突胶质细胞谱系决定。此外,在有丝分裂后的细胞中,BMP 调节细胞存活和死亡,以调节神经元亚型特化、促进树突和轴突生长并诱导突触形成和稳定。在这篇综述中,我们研究了 BMP 信号转导的经典和非经典机制。此外,我们专注于 BMP 在神经系统中的特定作用,包括它们调节神经干细胞增殖、自我更新、谱系特化和神经元功能的能力。