RAD9A-CLPB Gene Fusion FISH Probe
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Catalog: |
GFFP-RAD9A/CLPB-09818 |
Classification: |
Gene Fusion FISH Probes |
Description: |
The RAD9A-CLPB Gene Fusion FISH Probecan detect the fusion of RAD9A and CLPB genes. Our product usually consists of a combination of reagents, which consists of a probe with a selected dye color and a hybridization reagent. We offer a variety of dye color combinations for FISH probes for gene fusions. This product has been verified in both interphase nuclei and metaphase spreads of normal peripheral blood. This is key quality control, you can trust our quality. |
Category: |
Gene Fusion FISH Probes |
Application: |
RAD9A-CLPB Gene Fusion FISH Probe can be used for chromosomal diagnosis to determine gene fusion phenomena associated with diseases such as cancer. You can confirm this in "Associated Diseases" in the product information. This product has been verified in both interphase nuclei and metaphase spreads of normal peripheral blood. This is key quality control, you can trust our quality. |
Probe Kits Volume (µL): |
40 μL |
Quantity: |
20 Tests |
Hybridization Solution (µL): |
200 μL |
Turnaround Time: |
7-10 Business Days |
Shipping Time: |
1-2 Day Expedited Shipping |
Storage Conditions: |
Store at -20℃ and avoid light; |
Shipping Conditions: |
-20℃ |
Gene Details
Gene Name 1 |
RAD9 Checkpoint Clamp Component A |
Gene Summary 1 |
This gene product is highly similar to Schizosaccharomyces pombe rad9, a cell cycle checkpoint protein required for cell cycle arrest and DNA damage repair. This protein possesses 3' to 5' exonuclease activity, which may contribute to its role in sensing and repairing DNA damage. It forms a checkpoint protein complex with RAD1 and HUS1. This complex is recruited by checkpoint protein RAD17 to the sites of DNA damage, which is thought to be important for triggering the checkpoint-signaling cascade. Alternatively spliced transcript variants encoding different isoforms have been found for this gene. [provided by RefSeq, Aug 2011] |
Chromosome 1 |
Chromosome 11 |
Locus 1 |
11q13.2 |
Coordinates 1 |
This gene maps to 67159422-67165883 in GRCh37 coordinates. |
Gene Name 2 |
ClpB Homolog, Mitochondrial AAA ATPase Chaperonin |
Gene Summary 2 |
This gene belongs to the ATP-ases associated with diverse cellular activities (AAA+) superfamily. Members of this superfamily form ring-shaped homo-hexamers and have highly conserved ATPase domains that are involved in various processes including DNA replication, protein degradation and reactivation of misfolded proteins. All members of this family hydrolyze ATP through their AAA+ domains and use the energy generated through ATP hydrolysis to exert mechanical force on their substrates. In addition to an AAA+ domain, the protein encoded by this gene contains a C-terminal D2 domain, which is characteristic of the AAA+ subfamily of Caseinolytic peptidases to which this protein belongs. It cooperates with Hsp70 in the disaggregation of protein aggregates. Allelic variants of this gene are associated with 3-methylglutaconic aciduria, which causes cataracts and neutropenia. Alternative splicing results in multiple transcript variants. [provided by RefSeq, Apr 2015] |
Chromosome 2 |
Chromosome11 |
Locus 2 |
11q13.4 |
Coordinates 2 |
This gene maps to 72003469-72145568 in GRCh37 coordinates. |
Associated Diseases |
Skin Cutaneous Melanoma |
Species |
Human |
Dye Colors:
RE
RE
RE
OR
RE
GO
RE
GR
RE
AQ
OR
RE
OR
OR
OR
GO
OR
GR
OR
AQ
GO
RE
GO
OR
GO
GO
GO
GR
GO
AQ
GR
RE
GR
OR
GR
GO
GR
GR
GR
AQ
AQ
RE
AQ
OR
AQ
GO
AQ
GR
AQ
AQ
Order Sheet
Number |
Dye Color |
Order Name |
Absorbance Maximum |
Emission Maximum |
Add to Cart |
1 |
RE; RE
|
GFFP-RAD9A/CLPB-09818-RERE |
599nm;599nm |
580nm;580nm |
|
2 |
RE; OR
|
GFFP-RAD9A/CLPB-09818-REOR |
599nm;573nm |
580nm;548nm |
|
3 |
RE; GO
|
GFFP-RAD9A/CLPB-09818-REGO |
599nm;551nm |
580nm;525nm |
|
4 |
RE; GR
|
GFFP-RAD9A/CLPB-09818-REGR |
599nm;515nm |
580nm;491nm |
|
5 |
RE; AQ
|
GFFP-RAD9A/CLPB-09818-REAQ |
599nm;467nm |
580nm;418nm |
|
6 |
OR; RE
|
GFFP-RAD9A/CLPB-09818-ORRE |
573nm;599nm |
548nm;580nm |
|
7 |
OR; OR
|
GFFP-RAD9A/CLPB-09818-OROR |
573nm;573nm |
548nm;548nm |
|
8 |
OR; GO
|
GFFP-RAD9A/CLPB-09818-ORGO |
573nm;551nm |
548nm;525nm |
|
9 |
OR; GR
|
GFFP-RAD9A/CLPB-09818-ORGR |
573nm;515nm |
548nm;491nm |
|
10 |
OR; AQ
|
GFFP-RAD9A/CLPB-09818-ORAQ |
573nm;467nm |
548nm;418nm |
|
11 |
GO; RE
|
GFFP-RAD9A/CLPB-09818-GORE |
551nm;599nm |
525nm;580nm |
|
12 |
GO; OR
|
GFFP-RAD9A/CLPB-09818-GOOR |
551nm;573nm |
525nm;548nm |
|
13 |
GO; GO
|
GFFP-RAD9A/CLPB-09818-GOGO |
551nm;551nm |
525nm;525nm |
|
14 |
GO; GR
|
GFFP-RAD9A/CLPB-09818-GOGR |
551nm;515nm |
525nm;491nm |
|
15 |
GO; AQ
|
GFFP-RAD9A/CLPB-09818-GOAQ |
551nm;467nm |
525nm;418nm |
|
16 |
GR; RE
|
GFFP-RAD9A/CLPB-09818-GRRE |
515nm;599nm |
491nm;580nm |
|
17 |
GR; OR
|
GFFP-RAD9A/CLPB-09818-GROR |
515nm;573nm |
491nm;548nm |
|
18 |
GR; GO
|
GFFP-RAD9A/CLPB-09818-GRGO |
515nm;551nm |
491nm;525nm |
|
19 |
GR; GR
|
GFFP-RAD9A/CLPB-09818-GRGR |
515nm;515nm |
491nm;491nm |
|
20 |
GR; AQ
|
GFFP-RAD9A/CLPB-09818-GRAQ |
515nm;467nm |
491nm;418nm |
|
21 |
AQ; RE
|
GFFP-RAD9A/CLPB-09818-AQRE |
467nm;599nm |
418nm;580nm |
|
22 |
AQ; OR
|
GFFP-RAD9A/CLPB-09818-AQOR |
467nm;573nm |
418nm;548nm |
|
23 |
AQ; GO
|
GFFP-RAD9A/CLPB-09818-AQGO |
467nm;551nm |
418nm;525nm |
|
24 |
AQ; GR
|
GFFP-RAD9A/CLPB-09818-AQGR |
467nm;515nm |
418nm;491nm |
|
25 |
AQ; AQ
|
GFFP-RAD9A/CLPB-09818-AQAQ |
467nm;467nm |
418nm;418nm |
|
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