Bourdon M A, Shiga M, Ruoslahti E
Mol Cell Biol. 1987 Jan;7(1):33-40. doi: 10.1128/mcb.7.1.33-40.1987.
We have examined genomic sequences and mRNA species hybridizing to a cDNA clone of a yolk sac carcinoma chondroitin sulfate proteoglycan designated PG19. Genomic blot hybridizations with cDNAs covering the majority of the PG19 mRNA sequence revealed 15 to 17 gene fragments. Similar analysis with probes representing either the propeptide or the combined core protein COOH-terminal domain and 3' untranslated sequences revealed single genomic fragments indicating that a single gene codes for the PG19 proteoglycan. Genomic blot analysis with cDNA sequences coding for the serine-glycine repeat of the core protein identified the same gene fragments observed with the entire PG19 cDNA, indicating that this coding region is homologous with sequences present in multiple genes. The same probes were also used to examine mRNA expression. In addition to the PG19 mRNA, several PG19-related mRNAs could be seen. These PG19-related mRNAs had homology with the serine-glycine coding sequence of the PG19 cDNA. These mRNAs may be coding for proteoglycans. The mRNA coding for PG19 appeared to be uniquely expressed in parietal yolk sac and mast cell lineages. The PG19 mRNA existed in different forms in parietal yolk sac and mast cell lines due to cell-type-specific differences in the length of the 5' untranslated sequences. These results indicate that expression of the PG19 proteoglycan gene is regulated both in terms of cell-type-specific transcription and selection of a transcriptional start site.
我们已经检测了与一种名为PG19的卵黄囊癌硫酸软骨素蛋白聚糖的cDNA克隆杂交的基因组序列和mRNA种类。用覆盖PG19 mRNA序列大部分的cDNA进行基因组印迹杂交,发现了15至17个基因片段。用代表前肽或核心蛋白COOH末端结构域与3'非翻译序列的探针进行类似分析,发现单个基因组片段,表明单个基因编码PG19蛋白聚糖。用编码核心蛋白丝氨酸 - 甘氨酸重复序列的cDNA序列进行基因组印迹分析,鉴定出与整个PG19 cDNA观察到的相同基因片段,表明该编码区域与多个基因中存在的序列同源。相同的探针也用于检测mRNA表达。除了PG19 mRNA外,还可以看到几种与PG19相关的mRNA。这些与PG19相关的mRNA与PG19 cDNA的丝氨酸 - 甘氨酸编码序列具有同源性。这些mRNA可能编码蛋白聚糖。编码PG19的mRNA似乎在壁层卵黄囊和肥大细胞谱系中独特表达。由于5'非翻译序列长度的细胞类型特异性差异,PG19 mRNA在壁层卵黄囊和肥大细胞系中以不同形式存在。这些结果表明,PG19蛋白聚糖基因的表达在细胞类型特异性转录和转录起始位点的选择方面均受到调控。