Parrella Paola, Fazio Vito M, Gallo Antonietta P, Sidransky David, Merbs Shannath L
Istituto di Ricovero e Cura a Carattere Scientifico H. "Casa Sollievo della Sofferenza" Laboratory of Gene Therapy and Oncology, San Giovanni Rotondo (FG), Italy.
Cancer Res. 2003 Dec 1;63(23):8507-10.
To identify minimal common areas of allelic loss on chromosome 3, we have mapped both arms of the chromosome in 21 uveal melanomas that did not show monosomy 3 in our previous allelotype study. DNA was isolated from microdissected paraffin sections and amplified by PCR. In an initial screening, 14 microsatellite markers on chromosomal arm 3p and 13 on chromosomal arm 3q were used. Loss of heterozygosity for at least one marker was found in 9 of 21 tumors (43%) on 3p and 8 of 21 tumors (38%) on 3q. The initial analysis defined two common regions of allelic loss on 3p, a 7.3-Mb region between markers D3S1263 and D3S3510 spanning 3p25.3-24.3 and a larger region between markers D3S1578 and D3S1284. The two common regions of allelic loss were further mapped with an additional 14 microsatellite markers. A 1.4-Mb minimal region of allelic loss was identified between microsatellite markers D3S3610 and D3S1554 on 3p25.1-3p25.2. A total of 10 tumors had allelic loss in this region; 2 of these tumors had corresponding putative homozygous deletions. These homozygous deletions may further narrow the region of interest to 0.1 Mb. This 1.4-Mb minimum region of deletion includes several genes that might be involved in the carcinogenesis of uveal melanoma as well as other important tumor types.
为了确定3号染色体上等位基因缺失的最小共同区域,我们在21例葡萄膜黑色素瘤中对该染色体的两条臂进行了定位,这些病例在我们之前的等位基因分型研究中未显示3号染色体单体性。从显微切割的石蜡切片中分离DNA,并通过PCR进行扩增。在初步筛选中,使用了位于3号染色体短臂上的14个微卫星标记和位于3号染色体长臂上的13个微卫星标记。在21个肿瘤中的9个(43%)肿瘤的3p上发现至少一个标记的杂合性缺失,在21个肿瘤中的8个(38%)肿瘤的3q上发现杂合性缺失。初步分析确定了3p上两个等位基因缺失的共同区域,一个是标记D3S1263和D3S3510之间7.3 Mb的区域,跨越3p25.3 - 24.3,另一个是标记D3S1578和D3S1284之间更大的区域。用另外14个微卫星标记对这两个等位基因缺失的共同区域进行了进一步定位。在3p25.1 - 3p25.2的微卫星标记D3S3610和D3S1554之间确定了一个1.4 Mb的最小等位基因缺失区域。共有10个肿瘤在该区域存在等位基因缺失;其中2个肿瘤有相应的推定纯合缺失。这些纯合缺失可能会将感兴趣的区域进一步缩小到0.1 Mb。这个1.4 Mb的最小缺失区域包含几个可能参与葡萄膜黑色素瘤以及其他重要肿瘤类型致癌过程的基因。