Occurrence of chromosome 3p deletions in a large number of human tumours suggests the existence of uncharted tumour suppressor gene(s). We previously applied a functional assay, named the Elimination test (Et), for the identification of regions containing tumour growth antagonising genes. This resulted in the definition of chromosome 3 common eliminated region 1 (C3CER1) on 3p21.3, which is regularly eliminated from SCID-derived tumours. Systematic genomic sequencing of 11 PAC clones, combined with comparisons of genomic sequence against EST databases and PCR-based cloning of cDNA sequences allowed us to assemble a comprehensive transcriptional map of 1.4 Mb that includes 19 active genes and three processed pseudogenes. We report four novel genes: FYVE and coiled-coil domain containing 1 (FYCO1), transmembrane protein 7 (TMEM7), leucine-rich repeat-containing 2 (LRRC2) and leucine zipper protein 3 (LUZP3). A striking feature of C3CER1 is a presence of a cluster of eight chemokine receptor genes. Based on a new analysis of the microcell hybrid-derived panel of SCID tumours we also redefined the centromeric border of the C3CER1. It is now located within LRRC2 gene, which is a relative of RSP-1 (Ras Suppressor Protein 1). The detailed knowledge of gene content in C3CER1 is a prerequisite for functional analysis of these genes and understanding of their possible role in tumorigenesis.
We have cloned and sequenced the rat Bmyc gene. The rat Bmyc gene contains sequences related to the central part of c-myc, namely the first intron, the second exon, and the noncoding part of the third exon. The homology drops in the 3' part of the c-myc second exon, but continues in the noncoding part of the third exon. We have sequenced the total predicted coding region of the Bmyc. The longest open reading frame in Bmyc suggests a protein of 178 amino acids, which is only 41% of the c-myc protein size. To confirm the putative open reading frame, we have produced a trpE-Bmyc protein that is detected with a pan-myc antibody. We discuss these findings in the context of potential functional domains and the possibility of overlapping and distinct activities of myc-family proteins.