Wang H, Yan H, Canoll P D, Silvennoinen O, Schlessinger J, Musacchio J M
Department of Pharmacology, New York University Medical Center, New York 10016, USA.
J Neurosci Res. 1995 Jun 15;41(3):297-310. doi: 10.1002/jnr.490410303.
The expression of receptor protein tyrosine phosphatase-sigma (RPTP-sigma) mRNA during rat development was examined by Northern blot and in situ hybridization analyses. Northern blot analysis revealed that the two transcripts (5.7 kb and 6.9 kb) had different spatial and temporal patterns of expression. The 6.9-kb transcript was more abundant during embryonic development, whereas the 5.7-kb transcript was more abundant during postnatal development and in the adult. In situ hybridization revealed that RPTP-sigma mRNA was widely expressed throughout the central and peripheral nervous system during embryonic development. Very high levels were seen in the ventricular zone, subventricular zone, cortex, dorsal root ganglia, cranial nerve ganglia, olfactory epithelium, and retina. During postnatal development the level of expression decreased in most brain regions. However, high levels continued to be seen in the hippocampus. Emulsion autoradiography revealed that the majority of RPTP-sigma mRNA is expressed in neurons. Northern analysis showed that cultured glial cells expressed the 6.9-kb transcript, but not the 5.7-kb. RPTP-sigma mRNA expression profiles were clearly distinct from those of leukocyte antigen-related protein (LAR), a closely related RPTP. The spatiotemporal pattern of RPTP-sigma mRNA expression indicates that RPTP-sigma may play a role in the development of the nervous system.
通过Northern印迹和原位杂交分析检测了大鼠发育过程中受体蛋白酪氨酸磷酸酶-σ(RPTP-σ)mRNA的表达。Northern印迹分析显示,两种转录本(5.7 kb和6.9 kb)具有不同的时空表达模式。6.9 kb的转录本在胚胎发育期间更为丰富,而5.7 kb的转录本在出生后发育期间及成年期更为丰富。原位杂交显示,在胚胎发育期间,RPTP-σ mRNA在中枢和外周神经系统中广泛表达。在脑室区、脑室下区、皮质、背根神经节、脑神经节、嗅上皮和视网膜中可见非常高的水平。在出生后发育过程中,大多数脑区的表达水平下降。然而,在海马中仍可见高水平表达。乳胶放射自显影显示,大多数RPTP-σ mRNA在神经元中表达。Northern分析表明,培养的胶质细胞表达6.9 kb的转录本,但不表达5.7 kb的转录本。RPTP-σ mRNA的表达谱与密切相关的RPTP——白细胞抗原相关蛋白(LAR)明显不同。RPTP-σ mRNA表达的时空模式表明,RPTP-σ可能在神经系统发育中起作用。