Iacopino A M, Rhoten W B, Christakos S
Department of Biochemistry and Molecular Biology, University of Medicine and Dentistry of New Jersey/New Jersey Medical School, Newark 07103-2714.
Brain Res Mol Brain Res. 1990 Oct;8(4):283-90. doi: 10.1016/0169-328x(90)90041-b.
Calbindin-D28k (CaBP28k) protein and gene expression were examined in the mouse cerebellum during development and aging utilizing slot and Northern blot hybridization analyses for mRNA levels, Western blot analysis and radioimmunoassay (RIA) for protein levels, and by in situ studies using immunocytochemistry and hybridization cytochemistry on prepared tissue sections. Samples were obtained and analyzed from C57BL/6J mice aged day of birth and postnatal weeks 1, 2, 4, 8, and 120. A specific cDNA and antibody for CaBP28k were utilized in these studies. Analysis of mRNA levels showed a steady rise in CaBP28k mRNA from birth to a peak at postnatal week (3.4-fold increase) and then a decline to steady-state levels at postnatal weeks 4 and 8 (47% reduction of peak level) followed by a reduction of CaBP28k mRNA to birth levels at postnatal week 120. The specificity of the changes observed was tested by reprobing blots with beta-actin cDNA. Analysis of CaBP28k protein levels by both Western blot and RIA showed a similar pattern. In situ analysis of CaBP28k mRNA levels, based on hybridization signal (silver grains per cell), demonstrated a rise in cellular CaBP28k mRNA levels which peaked at postnatal week 2 (416.9 +/- 52.1) and then declined to steady-state levels by postnatal weeks 4 and 8 (267.4 +/- 35.8). Cellular CaBP28k mRNA levels exhibited a dramatic reduction in the aged cerebellum (postnatal week 120; 78.3 +/- 16.0). The levels of cellular CaBP28k mRNA corresponded to the intensity of immunoreactive CaBP28k localized by immunocytochemistry. The results are consistent with the hypothesis that CaBP28k may play a critical role in Purkinje cell maturation and maintenance.(ABSTRACT TRUNCATED AT 250 WORDS)
利用狭缝杂交和Northern印迹杂交分析法检测发育和衰老过程中小鼠小脑Calbindin-D28k(CaBP28k)的mRNA水平,用蛋白质印迹分析法和放射免疫分析法(RIA)检测蛋白质水平,并通过对制备的组织切片进行免疫细胞化学和杂交细胞化学原位研究。从出生当天及出生后第1、2、4、8和120周的C57BL/6J小鼠获取样本并进行分析。这些研究中使用了针对CaBP28k的特异性cDNA和抗体。mRNA水平分析显示,CaBP28k mRNA从出生到出生后第3周达到峰值(增加3.4倍)呈稳步上升,然后在出生后第4和8周降至稳态水平(峰值水平降低47%),随后在出生后第120周CaBP28k mRNA降至出生水平。通过用β-肌动蛋白cDNA重新检测印迹来测试观察到的变化的特异性。蛋白质印迹法和RIA对CaBP28k蛋白质水平的分析显示出相似的模式。基于杂交信号(每个细胞的银颗粒数)对CaBP28k mRNA水平进行原位分析表明,细胞CaBP28k mRNA水平升高,在出生后第2周达到峰值(416.9±52.1),然后在出生后第4和8周降至稳态水平(267.4±35.8)。老年小脑(出生后第120周;78.3±16.0)中细胞CaBP28k mRNA水平显著降低。细胞CaBP28k mRNA水平与通过免疫细胞化学定位的免疫反应性CaBP28k的强度相对应。这些结果与CaBP28k可能在浦肯野细胞成熟和维持中起关键作用的假设一致。(摘要截短于250字)