Lewis M E, Sherman T G, Burke S, Akil H, Davis L G, Arentzen R, Watson S J
Proc Natl Acad Sci U S A. 1986 Aug;83(15):5419-23. doi: 10.1073/pnas.83.15.5419.
Synthetic oligonucleotide probes can be easily obtained and used, in contrast to cDNA cloning to develop probes, and thus the present study was carried out to determine whether such probes could also be useful for in situ hybridization. A 24-base synthetic oligonucleotide complementary to part of the alpha-melanocyte-stimulating hormone (alpha-MSH) coding region of proopiomelanocortin (POMC) mRNA was 5'-end-labeled by using [gamma-32P]ATP with T4 polynucleotide kinase or was 3' tailed by using [alpha-32P]dATP or [3H]dCTP with terminal deoxynucleotidyltransferase. Blot analysis of pituitary poly(A)+ RNA showed that the oligonucleotide hybridized to a single species with a molecular size of approximately 1200 nucleotides, consistent with that determined previously for POMC mRNA. The oligonucleotide, regardless of labeling method, hybridized to cells in the pituitary intermediate lobe, but not in the posterior lobe. Only the 3H-labeled probe gave resolution of individual pituitary anterior lobe cells. The specificity of the hybridization was determined by showing that the intermediate lobe signal was blocked by prehybridization of the tissue with unlabeled alpha-MSH oligonucleotide probe. Furthermore, the hybridized probe exhibited a sharp sigmoid curve when melted off. Finally, the oligonucleotide probe detected, in situ, the haloperidol-induced elevation of intermediate lobe POMC mRNA. Thus, the oligonucleotide probe exhibited hybridization in an anatomically and biochemically specific manner, and it detected a tissue-specific change in mRNA levels in situ.
与用于制备探针的cDNA克隆相比,合成寡核苷酸探针易于获得和使用,因此开展了本研究以确定此类探针是否也可用于原位杂交。通过使用[γ-32P]ATP和T4多核苷酸激酶对与阿黑皮素原(POMC)mRNA的α-促黑素细胞激素(α-MSH)编码区部分互补的24碱基合成寡核苷酸进行5'末端标记,或者通过使用[α-32P]dATP或[3H]dCTP和末端脱氧核苷酸转移酶进行3'加尾。垂体多聚腺苷酸(poly(A)+)RNA的印迹分析表明,该寡核苷酸与一种分子大小约为1200个核苷酸的单一物种杂交,这与先前确定的POMC mRNA一致。无论标记方法如何,该寡核苷酸都能与垂体中间叶的细胞杂交,但不能与后叶细胞杂交。只有3H标记的探针能够分辨单个垂体前叶细胞。通过用未标记的α-MSH寡核苷酸探针预杂交组织来阻断中间叶信号,从而确定杂交的特异性。此外,杂交探针在解链时呈现出尖锐的S形曲线。最后,寡核苷酸探针在原位检测到氟哌啶醇诱导的中间叶POMC mRNA升高。因此,寡核苷酸探针以解剖学和生化特异性方式呈现杂交,并在原位检测到mRNA水平的组织特异性变化。