Nesic-Taylor O, Cittelly D, Ye Z, Xu G Y, Unabia G, Lee J C, Svrakic N M, Liu X H, Youle R J, Wood T G, McAdoo D, Westlund K N, Hulsebosch C E, Perez-Polo J R
Department of Human Biological Chemistry and Genetics, University of Texas Medical Branch, Galveston, Texas 77555-1072, USA.
J Neurosci Res. 2005 Mar 1;79(5):628-37. doi: 10.1002/jnr.20400.
Spinal cord injury (SCI) induces neuronal death, including apoptosis, which is completed within 24 hr at and around the impact site. We identified early proapoptotic transcriptional changes, including upregulation of proapoptotic Bax and downregulation of antiapoptotic Bcl-xL, Bcl-2, and Bcl-w, using Affymetrix DNA microarrays. Because Bcl-xL is the most robustly expressed antiapoptotic Bcl-2 molecule in adult central nervous system, we decided to characterize better the effect of SCI on Bcl-xL expression. We found Bcl-xL expressed robustly throughout uninjured spinal cord in both neurons and glia cells. We also found Bcl-xL localized in different cellular compartments: cytoplasmic, mitochondrial, and nuclear. Bcl-xL protein levels decreased in the cytoplasm and mitochondria 2 hr after SCI and persisted for 24 hr. To test the contribution of proapoptotic decreases in Bcl-xL to neuronal death, we augmented endogenous Bcl-xL levels by administering Bcl-xL fusion protein (Bcl-xL FP) into injured spinal cords. Bcl-xL FP significantly increased neuronal survival, suggesting that SCI-induced changes in Bcl-xL contribute considerably to neuronal death. Because Bcl-xL FP increases survival of dorsal horn neurons and ventral horn motoneurons, it could become clinically relevant in preserving sensory and motor functions after SCI.
脊髓损伤(SCI)会导致神经元死亡,包括凋亡,这种凋亡在撞击部位及其周围24小时内完成。我们使用Affymetrix DNA微阵列鉴定了早期促凋亡转录变化,包括促凋亡蛋白Bax的上调以及抗凋亡蛋白Bcl-xL、Bcl-2和Bcl-w的下调。由于Bcl-xL是成年中枢神经系统中表达最丰富的抗凋亡Bcl-2分子,我们决定更深入地研究脊髓损伤对Bcl-xL表达的影响。我们发现,在未受损的脊髓中,神经元和神经胶质细胞均大量表达Bcl-xL。我们还发现Bcl-xL定位于不同的细胞区室:细胞质、线粒体和细胞核。脊髓损伤后2小时,细胞质和线粒体中的Bcl-xL蛋白水平下降,并持续24小时。为了测试Bcl-xL促凋亡水平下降对神经元死亡的作用,我们通过向受损脊髓注射Bcl-xL融合蛋白(Bcl-xL FP)来提高内源性Bcl-xL水平。Bcl-xL FP显著提高了神经元的存活率,这表明脊髓损伤诱导的Bcl-xL变化对神经元死亡有很大影响。由于Bcl-xL FP可提高背角神经元和腹角运动神经元的存活率,它在脊髓损伤后保留感觉和运动功能方面可能具有临床意义。