Recurrent gene fusions in prostate cancer
Recurrent gene fusions of androgen regulated genes and ETS family member genes in prostate cancer are described. Compositions and methods having utility in prostate cancer diagnosis, research, and therapy are also provided.
1. A method for identifying or characterizing prostate cancer in a subject comprising: contacting a sample obtained from the subject, wherein the sample is selected from the group of consisting of prostate tissue, blood, urine, semen, prostatic secretions and prostate cells, with a nucleic acid diagnostic reagent, and detecting the presence, or determining the absence, in the sample of:
(a) a gene fusion having or resulting from the fusion of, rearrangement of, or genomic deletion between, a 5′ portion from a TMPRSS2 gene and a 3′ portion from an ETS family member gene, wherein the ETS family member gene is selected from the group consisting of ERG, ETV1, ETV4, and FLI1; and
(b) a PCA3 nucleic acid molecule,
wherein detecting the presence in the sample of the gene fusion and PCA3 identifies or characterizes prostate cancer in the subject.
2. The method of claim 1 , wherein the 5′ portion from the TMPRSS2 gene comprises a transcriptional regulatory region of the TMPRSS2 gene.
3. The method of claim 2 , wherein the transcriptional regulatory region comprises a promoter region.
4. The method of claim 1 , further comprising detecting the presence, or determining the absence, in the sample of a prostate specific antigen (PSA) nucleic acid molecule.
5. The method of claim 1 , further comprising detecting the presence, or determining the absence, in the sample of a nucleic acid molecule selected from one or more of the group consisting of AMACR/P504S, PCGEM1, prostein/P501S, P503S, P504S, P509S, P510S, prostase/P703P, and P710P.
6. The method of claim 5 , further comprising detecting the presence, or determining the absence, in the sample of a PSA nucleic acid molecule.
7. The method of claim 1 , wherein the characterizing prostate cancer comprises determining a presence or reoccurrence of prostate cancer in the subject.
8. The method of claim 1 , wherein the characterizing prostate cancer comprises determining the type, progression, or aggressiveness of the prostate cancer.
9. The method of claim 1 , further comprising any one or more of the following:
(a) diagnosing prostate cancer in the subject based on the detected presence of the gene fusion and PCA3 in the sample;
(b) determining a prognosis for the subject based on the detected presence of the gene fusion and PCA3 in the sample; or
(c) selecting a therapeutic strategy for the subject based on the detected presence of the gene fusion and PCA3 in the sample.
10. A method for identifying or characterizing prostate cancer in a subject comprising: detecting, if present, in a sample obtained from the subject, wherein the sample is selected from the group of consisting of prostate tissue, blood, urine, semen, prostatic secretions and prostate cells:
(a) a gene fusion having or resulting from the fusion of, rearrangement of, or genomic deletion between, a 5′ portion from a TMPRSS2 gene and a 3′ portion from an ERG gene; and
(b) a PCA3 nucleic acid molecule,
wherein detecting the presence in the sample of the gene fusion and PCA3 identifies or characterizes prostate cancer in the subject.
11. The method of claim 10 , wherein the 5′ portion from the TMPRSS2 gene comprises a transcriptional regulatory region of the TMPRSS2 gene.
12. The method of claim 11 , wherein the transcriptional regulatory region comprises a promoter region.
13. The method of claim 10 , further comprising detecting the presence, or determining the absence, in the sample of a prostate specific antigen (PSA) nucleic acid molecule.
14. The method of claim 10 , further comprising detecting the presence, or determining the absence, in the sample of a nucleic acid molecule selected from one or more of the group consisting of AMACR/P504S, PCGEM1, prostein/P501S, P503S, P504S, P509S, P510S, prostase/P703P, and P710P.
15. The method of claim 14 , further comprising detecting the presence, or determining the absence, in the sample of a PSA nucleic acid molecule.
16. The method of claim 10 , wherein the characterizing prostate cancer comprises determining a presence or reoccurrence of prostate cancer in the subject.
17. The method of claim 10 , wherein the characterizing prostate cancer comprises determining the type, progression, or aggressiveness of the prostate cancer.
18. The method of claim 10 , further comprising any one or more of the following:
(a) diagnosing prostate cancer in the subject based on the detected presence of the gene fusion and PCA3 in the sample;
(b) determining a prognosis for the subject based on the detected presence of the gene fusion and PCA3 in the sample; or
(c) selecting a therapeutic strategy for the subject based on the detected presence of the gene fusion and PCA3 in the sample.