CONTACT SUPPORT
Online Inquiry
| Catalog: | GBAFP-PTEN-16296 |
| Classification: | Gene-specific Break Apart Probes |
| Description: | Our Gene-specific Break Apart Probes usually target the flanks of the target gene (PTEN). Due to this design method, our probe products can detect chromosomal rearrangements, such as translocations, by FISH.The product usually consists of a reagent combination composed of a probe with a selected dye color and a hybridization reagent. |
| Application: | PTEN Gene-specific Break Apart Probe is designed to detect potential PTEN rearrangements. This probe has been confirmed on the metaphase and interphase chromosomes by FISH. We provide a variety of dye color combinations for Break Apart Probes for customers to choose from. Probe products not only provide some classic color combinations, but also provide customized probe services. |
| Quantity: | 20 Tests |
| Probe Kits Volume (µL): | 40 μL |
| Hybridization Solution (µL): | 200 μL |
| Turnaround Time: | Within 10 Business Days |
| Shipping Time: | 1-2 Day Expedited Shipping |
| Shipping Conditions: | -20℃ |
| Storage Conditions: | Store at -20℃ and avoid light; |
| Gene Name | Phosphatase And Tensin Homolog |
| Gene Summary [Provided by RefSeq] | This gene was identified as a tumor suppressor that is mutated in a large number of cancers at high frequency. The protein encoded by this gene is a phosphatidylinositol-3,4,5-trisphosphate 3-phosphatase. It contains a tensin like domain as well as a catalytic domain similar to that of the dual specificity protein tyrosine phosphatases. Unlike most of the protein tyrosine phosphatases, this protein preferentially dephosphorylates phosphoinositide substrates. It negatively regulates intracellular levels of phosphatidylinositol-3,4,5-trisphosphate in cells and functions as a tumor suppressor by negatively regulating AKT/PKB signaling pathway. The use of a non-canonical (CUG) upstream initiation site produces a longer isoform that initiates translation with a leucine, and is thought to be preferentially associated with the mitochondrial inner membrane. This longer isoform may help regulate energy metabolism in the mitochondria. A pseudogene of this gene is found on chromosome 9. Alternative splicing and the use of multiple translation start codons results in multiple transcript variants encoding different isoforms. [provided by RefSeq, Feb 2015] |
| Gene Symbol | PTEN |
| Location | 10q23.31 |
| Chromosome | Chromosome10 |
| Coordinates | This gene maps to 89623194-89728532 in GRCh37 coordinates. |
| Species | Human |
| Number | Dye Color | Order Name | Absorbance Maximum | Emission Maximum | Add to Cart |
| 1 | OR; GR | GBAFP-PTEN-16296-ORGR | 573nm;515nm | 548nm;491nm | |
| 2 | AQ; OR | GBAFP-PTEN-16296-AQOR | 467nm;573nm | 418nm;548nm | |
| 3 | GO; GR | GBAFP-PTEN-16296-GOGR | 551nm;515nm | 525nm;491nm | |
| 4 | GO; RE | GBAFP-PTEN-16296-GORE | 551nm;599nm | 525nm;580nm | |
| 5 | GR; GO | GBAFP-PTEN-16296-GRGO | 515nm;551nm | 491nm;525nm | |
| 6 | GR; OR | GBAFP-PTEN-16296-GROR | 515nm;573nm | 491nm;548nm | |
| 7 | GR; RE | GBAFP-PTEN-16296-GRRE | 515nm;599nm | 491nm;580nm | |
| 8 | RE; GO | GBAFP-PTEN-16296-REGO | 599nm;551nm | 580nm;525nm | |
| 9 | RE; GR | GBAFP-PTEN-16296-REGR | 599nm;515nm | 580nm;491nm |
Other Products