Hutton L A, Perez-Polo J R
Department of Human Biological Chemistry and Genetics, University of Texas Medical Branch at Galveston 77555-0652, USA.
J Neurosci Res. 1995 Jun 1;41(2):185-96. doi: 10.1002/jnr.490410206.
Nerve growth factor (NGF) stimulates expression of the low affinity neurotrophin receptor p75NGFR mRNA in primary cultures of neonatal rat cortical type I astrocytes. Nerve growth factor treatment altered glial morphology in glial fibrillary acidic protein positive (GFAP+) cell cultures derived from newborn (P0) and 3-day-old (P3) rat pups. When P0- or P3-derived primary glial cultures were serum-deprived, in the presence of 200 pM NGF for 5 days, the flat polygonal glia present in culture assumed a fibrous morphology, an effect not seen in the untreated serum-deprived controls. The NGF effect on astrocytic morphology was blocked by continuous serum treatment. Nerve growth factor did not stimulate astrocytic proliferation under these culture conditions, as assayed by cell cycle analysis using 3H thymidine autoradiography. P0-derived primary glial cultures expressed the signal transducing neurotrophin receptors p145trkB and p140trkA as determined by reverse transcription-polymerase chain reaction (RT-PCR). RT-PCR products were identified by sequencing or restriction enzyme analysis. Astrocytes internalized 125I-NGF at 37 degrees C but not at 4 degrees C, consistent with energy requirements for internalization. Also, internalization of 125I-NGF was abolished by the addition of a 300-1,000-fold excess of unlabeled NGF. Thus, astroglial cells in culture internalize NGF through a specific receptor-mediated process, express trkA and full-length trkB mRNAs at low levels, and respond to exogenous NGF by expressing a fibrous morphology under serum-free culture conditions.
神经生长因子(NGF)可刺激新生大鼠皮质I型星形胶质细胞原代培养物中低亲和力神经营养因子受体p75NGFR mRNA的表达。神经生长因子处理改变了源自新生(P0)和3日龄(P3)大鼠幼崽的胶质纤维酸性蛋白阳性(GFAP+)细胞培养物中的胶质形态。当将源自P0或P3的原代胶质培养物血清剥夺,在200 pM NGF存在下培养5天时,培养物中原本扁平的多边形胶质细胞呈现出纤维形态,而在未处理的血清剥夺对照中未观察到这种效应。NGF对星形胶质细胞形态的影响可被持续的血清处理所阻断。在这些培养条件下,通过使用3H胸苷放射自显影进行细胞周期分析测定,神经生长因子不会刺激星形胶质细胞增殖。通过逆转录-聚合酶链反应(RT-PCR)测定,源自P0的原代胶质培养物表达信号转导神经营养因子受体p145trkB和p140trkA。RT-PCR产物通过测序或限制性内切酶分析进行鉴定。星形胶质细胞在37℃而非4℃内化125I-NGF,这与内化所需的能量需求一致。此外,加入300 - 1000倍过量的未标记NGF可消除125I-NGF的内化。因此,培养中的星形胶质细胞通过特定的受体介导过程内化NGF,低水平表达trkA和全长trkB mRNA,并在无血清培养条件下通过呈现纤维形态对外源性NGF作出反应。