Jaworski D M, Kelly G M, Hockfield S
Yale University School of Medicine, Section of Neurobiology, New Haven, Connecticut 06510.
J Neurosci. 1995 Feb;15(2):1352-62. doi: 10.1523/JNEUROSCI.15-02-01352.1995.
Hyaluronan (HA) is a ubiquitous component of extracellular matrices, and in several systems it plays a central role in regulating cellular proliferation and differentiation. Cell, or tissue,-specific functions of HA are likely to be mediated by cell, or tissue,-specific HA-binding proteins. We previously hyaluronan-binding protein from rat and cat (Jaworski et al., 1994). In view of the potential role of HA in neural differentiation, we examined the expression of BEHAB during late embryonic and early postnatal development of the rat. BEHAB is expressed at very high levels in ventricular zones throughout the neuraxis. Expression is first detected at embryonic day 15 (E15) in the spinal cord, and is detected at progressively more rostral levels at later ages. BEHAB expression, like other features of neural development, follows both caudal-to-rostral and ventral-to-dorsal gradients. The timing of BEHAB expression parallels the timing of the generation of glial cells. In all areas of the CNS examined, BEHAB expression begins after the peak of neurogenesis and coincident with gliogenesis. The regulation of proliferation and differentiation by HA in other tissues, together with the expression of BEHAB in zones of mitotic activity coincident with the generation of glia, suggests that the extracellular matrix protein encoded by BEHAB could play a role in the generation or differentiation of CNS glia.
透明质酸(HA)是细胞外基质中普遍存在的成分,在多个系统中,它在调节细胞增殖和分化方面发挥着核心作用。HA的细胞或组织特异性功能可能由细胞或组织特异性HA结合蛋白介导。我们之前从大鼠和猫中分离出了透明质酸结合蛋白(Jaworski等人,1994年)。鉴于HA在神经分化中的潜在作用,我们研究了大鼠胚胎后期和出生后早期发育过程中BEHAB的表达情况。BEHAB在整个神经轴的脑室区高水平表达。在胚胎第15天(E15)首次在脊髓中检测到表达,在随后的发育阶段,在更靠前的水平逐渐检测到表达。BEHAB的表达,与神经发育的其他特征一样,遵循从尾端到头端以及从腹侧到背侧的梯度。BEHAB表达的时间与神经胶质细胞生成的时间平行。在所有检查的中枢神经系统区域,BEHAB的表达在神经发生高峰之后开始,并与胶质细胞生成同时发生。HA在其他组织中对增殖和分化的调节,以及BEHAB在与神经胶质细胞生成同时发生的有丝分裂活动区域的表达,表明由BEHAB编码的细胞外基质蛋白可能在中枢神经系统神经胶质细胞的生成或分化中发挥作用。