| Gene information | Literature | Expression | lncRNA | Mutation | Homolog |
Basic Information | |
|---|---|
Gene ID | 8643 |
Name | PTCH2 |
Synonymous | patched 2;PTCH2;patched 2 |
Definition | patched homolog 2|protein patched homolog 2 |
Position | 1p34.1 |
Gene type | protein-coding |
Title | Abstract |
| Key role of Shc signaling in the transforming pathway triggered by Ret/ptc2 oncoprotein. | The RET/PTC oncogenes, generated by chromosomal rearrangements in papillary thyroid carcinomas, are constitutively activated versions of protoRET, a gene encoding two protein isoforms of a transmembrane tyrosine kinase receptor. By using Ret/ptc2 short isoform (iso9), we have previously demonstrated that Tyr586 (Tyr1062 of protoRet) is the docking site for both the PTB and the SH2 domains of Shc. To determine the relevance of this interaction for the transforming activity of Ret/ptc oncogenes, we have generated and characterized novel Ret/ptc mutants unable to activate Shc: Ret/ptc2 long isoform (iso51)-Y586F and both isoforms of Ret/ptc2-N583A. These mutants neither activate Shc nor transform NIH3T3 cells. Since Tyr1062 shows features of a multifunctional docking site, we have used a Shc mutant (Shc Y317F) to directly assess Shc role. We have demonstrated that in our cell system Shc Y317F behaves like a dominant interfering mutant on the activation of the Grb2-Sos pathway by endogenous Shc triggered by Ret/ptc2. A strong reduction of the transforming activity of Ret/ptc2 in presence of this mutant was also demonstrated. Our data suggest that Shc activation play a key role in the transforming pathways triggered by Ret/ptc oncoproteins. Moreover, we have shown that coexpression of the Shc-Y317F mutant with Ret/ptc2 specifically causes apoptosis, and that the surviving cells lose the long-term expression of one of the two genes. |
| The full oncogenic activity of Ret/ptc2 depends on tyrosine 539, a docking site for phospholipase Cgamma. | RET/PTC oncogenes, generated by chromosomal rearrangements in papillary thyroid carcinomas, are constitutively activated versions of proto-RET, a gene coding for a receptor-type tyrosine kinase (TK) whose ligand is still unknown. RET/PTCs encode fusion proteins in which proto-RET TK and C-terminal domains are fused to different donor genes. The respective Ret/ptc oncoproteins display constitutive TK activity and tyrosine phosphorylation. We found that Ret/ptcs associate with and phosphorylate the SH2-containing transducer phospholipase Cgamma (PLCgamma). Two putative PLCgamma docking sites, Tyr-505 and Tyr-539, have been identified on Ret/ptc2 by competition experiments using phosphorylated peptides modelled on Ret sequence. Transfection experiments and biochemical analysis using Tyr-->Phe mutants of Ret/ptc2 allowed us to rule out Tyr-505 and to identify Tyr-539 as a functional PLCgamma docking site in vivo. Moreover, kinetic measurements showed that Tyr-539 is able to mediate high-affinity interaction with PLCgamma. mutation of Tyr-539 resulted in a drastically reduced oncogenic activity of Ret/ptc2 on NIH 3T3 cells (75 to 90% reduction) both in vitro and in vivo, which correlates with impaired ability of Ret/ptc2 to activate PLCgamma. In conclusion, this paper demonstrates that Tyr-539 of Ret/ptc2 (Tyr-761 on the proto-RET product) is an essential docking site for the full transforming potential of the oncogene. In addition, the present data identify PLCgamma as a downstream effector of Ret/ptcs and suggest that this transducing molecule could play a crucial role in neoplastic signalling triggered by Ret/ptc oncoproteins. |
| ret/PTC-1, -2, and -3 oncogene rearrangements in human thyroid carcinomas: implications for metastatic potential?. | The ret/PTC oncogene is unique to papillary thyroid cancer. Three forms of this oncogene, formed by translocation of three different genes to the tyrosine kinase domain of the ret protooncogene, result in constitutive kinase activation. Correlation with clinical outcome is controversial; ret/PTC-1 has been suggested to predict aggressive behavior. There is no morphological description of ret/PTC-positive tumors. We analyzed 60 thyroid carcinomas for ret/PTC expression to determine correlation with clinical history, disease stage, or tumor morphology. Ribonucleic acid extracted from frozen tissue was reverse transcribed; PCR was performed to amplify ret/PTC-1, 2, and -3. The TPC-1 cell line was the positive control for ret/PTC-1. ALL tumors were characterized morphologically. Clinical data were collected. The 57 papillary and 3 follicular carcinomas were resected from 44 female patients and 15 males. The average age at diagnosis was 46.2 yr (range. 24-83 yr). Three patients had a history of neck irradiation. At diagnosis, 11 patients had extrathyroidal tumor extension, 20 had lymph node metastases, and 1 had lung metastasis. Thirteen patients had tall cell papillary carcinomas; 3 tumors had focal insular or anaplastic dedifferentiation. The average follow-up was 13.4 months, during which 4 patients had recurrent disease. No deaths occurred. One papillary carcinoma (1.7%) was positive for ret/PTC-1, none was positive for ret/PTC-2, and 2(3.4%) were positive for ret/PTC-3. Although ALL 3 patients who had tumors containing ret/PTC rearrangements were under the age of 45 yr (range, 26-44 yr) and had small tumors (< 1.2 cm), 2 of these 3 patients presented with lymph node metastases, and the third had lymphatic invasion. ret/PTC oncogene expression did not correlate with radiation history. In summary, ret/PTC oncogene rearrangements were found in 3 of 60 (5%) thyroid carcinomas and were not present in tumors with aggressive morphological features. However, we found ret/PTC rearrangements in young patients (< 45 yr of age) with small thyroid carcinomas showing a predisposition for lymphatic involvement, suggesting a possible role in the development of this subgroup of tumors. |
| ret/PTC-1, -2, and -3 oncogene rearrangements in human thyroid carcinomas: implications for metastatic potential?. | Anomalous arrangement of the pancreaticobiliary ducts is a congenital condition which predisposes the affected person to biliary tract carcinoma. We developed an experimental dog model of anomalous arrangement of the pancreaticobiliary ducts to investigate the mechanism of carcinogenesis in this condition. We used this model to analyze point mutations in the c-Ki-ras gene, and to assess the expression of mutant p53 protein in the gallbladder mucosa. The histopathological appearance of the gallbladder mucosa was also examined. Glandular structures were seen in four of seven (57%) gallbladders examined 14 months after the surgical creation of an anastomosis between the gallbladder and the pancreatic duct. Goblet cells were seen in two of seven gallbladders (29%). However, dot-blot hybridization and immunohistochemical study did not reveal any mutations in the c-Ki-ras gene, or any over-expression of the p53 protein in the specimens. These results show that the gallbladder mucosa is damaged by refluxing pancreatic juice in this dog model of anomalous arrangement of the pancreaticobiliary ducts, but that severe damage may be necessary to induce mutations in the c-Ki-ras proto-oncogene, or in the p53 gene. |