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诱导型转录因子c-Jun、JunB、JunD、c-Fos、FosB和Krox-24在成年大鼠脑中的基础表达。

Basal expression of the inducible transcription factors c-Jun, JunB, JunD, c-Fos, FosB, and Krox-24 in the adult rat brain.

作者信息

Herdegen T, Kovary K, Buhl A, Bravo R, Zimmermann M, Gass P

机构信息

II. Institute of Physiology, University of Heidelberg, Germany.

出版信息

J Comp Neurol. 1995 Mar 27;354(1):39-56. doi: 10.1002/cne.903540105.

Abstract

Jun, Fos, and Krox proteins are inducible transcription factors contributing to the control of gene expression. The elucidation of their individual expression patterns in the nervous system provides new insights into the ability of neurons to react with changes of gene expression to external stimulation under physiological or pathological conditions. The expression of c-Jun, JunB, JunD, c-Fos, FosB, and Krox-24 was investigated in the brain of untreated male Sprague-Dawley and female BDIX rats by immunocytochemistry using specific antibodies. JunD immunoreactivity (IR) labeled the highest number of neurons, being present in almost all neurons of the brain. JunD was expressed at high levels in those areas that also exhibit c-Jun, JunB, c-Fos, and FosB-IR, such as locus coeruleus, periolivary nuclei (ncl.), pontine and central gray, lateral lemniscal ncl., inferior and superior colliculi, leaflet of geniculate ncl., midline nuclei of thalamus, dorsomedial and paraventricular ncl. of hypothalamus, ncl. supraopticus, dorsolateral part of caudate putamen and lateral septal ncl. In contrast to the high number of JunD-positive neurons, c-Jun, JunB, c-Fos, and FosB proteins were detected in rather low numbers of neurons in these brain areas; the rank of the number of immunopositive neurons was c-Fos > JunB > c-Jun > FosB. Particularly high levels of expression were observed for c-Jun in medullary motoneurons, medial geniculate ncl., arcuate ncl., and dentate gyrus, and for JunB in the CA-1 area of the hippocampus and islands of Calleja. The zinc finger protein Krox-24 was expressed in many neurons of these brain areas, with only discrete Jun- and Fos-IR; additionally, many intensely labeled nuclei were present in spinal ncl. of the trigeminal ventromedial ncl. of the hypothalamus and the CA-1 area of the hippocampus. In the cerebellum, nuclear labeling was detected only for c-Jun, JunD, and Krox-24 in granule cells. JunD-IR was also found in glial cells of gray matter and fiber tracts, whereas glial c-Jun-IR was observed only in fiber tracts. Apart from a weak JunD-IR, some areas did not express Jun, Fos, and Krox proteins such as cuneate and gracile ncl., venterobasal complex of thalamus, globus pallidum, and Purkinje cells of the cerebellum. Our data indicate that inducible transcription factors of the fos, jun, and krox gene families show patterns of individual expression in untreated animals, thereby reflecting different mechanisms and/or thresholds for induction under physiological conditions.

摘要

Jun、Fos和Krox蛋白是有助于控制基因表达的诱导型转录因子。对它们在神经系统中各自表达模式的阐明,为神经元在生理或病理条件下对外部刺激作出基因表达变化反应的能力提供了新的见解。使用特异性抗体通过免疫细胞化学方法,在未经处理的雄性Sprague-Dawley大鼠和雌性BDIX大鼠的脑中研究了c-Jun、JunB、JunD、c-Fos、FosB和Krox-24的表达。JunD免疫反应性(IR)标记的神经元数量最多,几乎存在于脑的所有神经元中。JunD在那些也显示c-Jun、JunB、c-Fos和FosB-IR的区域高水平表达,如蓝斑、橄榄周核、脑桥和中央灰质、外侧丘系核、下丘和上丘、膝状核小叶、丘脑中线核、下丘脑背内侧核和室旁核、视上核、尾壳核背外侧部分和外侧隔核。与大量JunD阳性神经元形成对比的是,在这些脑区中,c-Jun、JunB、c-Fos和FosB蛋白在数量相当少的神经元中被检测到;免疫阳性神经元数量的排序为c-Fos > JunB > c-Jun > FosB。在延髓运动神经元、内侧膝状核、弓状核和齿状回中观察到c-Jun表达水平特别高,在海马CA-1区和Calleja岛中观察到JunB表达水平特别高。锌指蛋白Krox-24在这些脑区的许多神经元中表达,只有离散的Jun和Fos-IR;此外,在三叉神经脊髓束核、下丘脑腹内侧核和海马CA-1区有许多强阳性标记的细胞核。在小脑中,仅在颗粒细胞中检测到c-Jun、JunD和Krox-24的核标记。在灰质和纤维束的胶质细胞中也发现了JunD-IR,而仅在纤维束中观察到胶质细胞c-Jun-IR。除了微弱的JunD-IR外,一些区域不表达Jun、Fos和Krox蛋白,如楔束核和薄束核、丘脑腹侧基底复合体、苍白球和小脑浦肯野细胞。我们的数据表明,fos、jun和krox基因家族的诱导型转录因子在未经处理的动物中显示出个体表达模式,从而反映了生理条件下诱导的不同机制和/或阈值。

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