Kim Tae-Aug, Jiang Shuxian, Seng Seyha, Cha Kiweon, Avraham Hava Karsenty, Avraham Shalom
Division of Experimental Medicine, Beth Israel Deaconess Medical Center, Harvard Institutes of Medicine, Boston, MA 02115, USA.
J Cell Sci. 2005 Dec 1;118(Pt 23):5537-48. doi: 10.1242/jcs.02643.
The neuronal nuclear matrix protein, NRP/B, contains a BTB domain and kelch repeats and is expressed in primary neurons but not in primary glial cells. To examine the function of NRP/B in neurons, we analyzed the structure/function of the NRP/B-BTB domain and its role in neurite outgrowth. Based on three-dimensional modeling of NRP/B, we generated an NRP/B-BTB mutant containing three mutations in the conserved amino acids D47A, H60A and R61D that was termed BTB mutant A. BTB mutant A significantly reduced the dimerization of NRP/B compared to wild-type NRP/B. The NRP/B-BTB domain was required for nuclear localization and mediated the association of NRP/B with p110RB through the TR subdomain within the B pocket of p110RB. Overexpression of wild-type NRP/B and NRP/B-BTB domain significantly induced neurite outgrowth in PC12 cells and enhanced the G0-G1 cell population by approximately 23% compared to the control cells, whereas NRP/B-BTB mutant A reduced neurite outgrowth by 70-80%, and inhibited NRP/B-p110RB association. Single cell microinjection of NRP/B-specific antibodies also blocked the neurite outgrowth of PC12 cells upon NGF stimulation. Interference of NRP/B expression by small interfering RNA (NRP/B-siRNA) inhibited neurite outgrowth and suppressed the NGF-induced outgrowth of neurites in PC12 cells. Additionally, p110RB phosphorylation at serine residue 795 was significantly reduced in PC12 cells treated with NRP/B siRNA compared to those treated with control GFP-siRNA, indicating that p110RB is a downstream target of NRP/B. Thus, the BTB domain of NRP/B regulates neurite outgrowth through its interaction with the TR subdomain within the B pocket of p110RB, and the conserved amino acids D47A, H60A and R61D within this domain of NRP/B are crucial residues for neurite extension in neuronal cells. These findings support a role for the BTB-domain of NRP/B as an important regulator of neuronal differentiation.
神经元核基质蛋白NRP/B含有一个BTB结构域和kelch重复序列,在原代神经元中表达,但在原代神经胶质细胞中不表达。为了研究NRP/B在神经元中的功能,我们分析了NRP/B - BTB结构域的结构/功能及其在神经突生长中的作用。基于NRP/B的三维建模,我们构建了一个NRP/B - BTB突变体,该突变体在保守氨基酸D47A、H60A和R61D处有三个突变,被称为BTB突变体A。与野生型NRP/B相比,BTB突变体A显著降低了NRP/B的二聚化。NRP/B - BTB结构域是核定位所必需的,并通过p110RB的B口袋内的TR亚结构域介导NRP/B与p110RB的结合。野生型NRP/B和NRP/B - BTB结构域的过表达显著诱导PC12细胞中的神经突生长,与对照细胞相比,G0 - G1期细胞群体增加了约23%,而NRP/B - BTB突变体A使神经突生长减少了70 - 80%,并抑制了NRP/B - p110RB的结合。单细胞显微注射NRP/B特异性抗体也阻断了NGF刺激后PC12细胞的神经突生长。小干扰RNA(NRP/B - siRNA)干扰NRP/B的表达抑制了神经突生长,并抑制了PC12细胞中NGF诱导的神经突生长。此外,与用对照GFP - siRNA处理的PC12细胞相比,用NRP/B siRNA处理的PC12细胞中丝氨酸残基795处的p110RB磷酸化显著降低,表明p110RB是NRP/B的下游靶点。因此,NRP/B的BTB结构域通过与p110RB的B口袋内的TR亚结构域相互作用来调节神经突生长,并且NRP/B该结构域内的保守氨基酸D47A、H60A和R61D是神经元细胞中神经突延伸的关键残基。这些发现支持NRP/B的BTB结构域作为神经元分化的重要调节因子的作用。