RNASE10-CD38 Gene Fusion FISH Probe
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Catalog: |
GFFP-RNASE10/CD38-15502 |
Classification: |
Gene Fusion FISH Probes |
Description: |
The RNASE10-CD38 Gene Fusion FISH Probe can detect the fusion of ABCA5 and BCAS3 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: |
RNASE10-CD38 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 |
CD38 Molecule |
Gene Summary 1 |
The protein encoded by this gene is a non-lineage-restricted, type II transmembrane glycoprotein that synthesizes and hydrolyzes cyclic adenosine 5'-diphosphate-ribose, an intracellular calcium ion mobilizing messenger. The release of soluble protein and the ability of membrane-bound protein to become internalized indicate both extracellular and intracellular functions for the protein. This protein has an N-terminal cytoplasmic tail, a single membrane-spanning domain, and a C-terminal extracellular region with four N-glycosylation sites. Crystal structure analysis demonstrates that the functional molecule is a dimer, with the central portion containing the catalytic site. It is used as a prognostic marker for patients with chronic lymphocytic leukemia. Alternative splicing results in multiple transcript variants. [provided by RefSeq, Sep 2015] |
Chromosome 1 |
Chromosome 4 |
Locus 1 |
4p15.32 |
Coordinates 1 |
This gene maps to 15779930-15850706in GRCh37 coordinates. |
Gene Name 2 |
Ribonuclease A Family Member 10 (inactive) |
Gene Summary 2 |
The Ribonuclease A Family Member 10 (inactive) (RNASE10) gene is located on chr14 :20978630-20979281 at 14q11.2. |
Chromosome 2 |
Chromosome14 |
Locus 2 |
14q11.2 |
Coordinates 2 |
This gene maps to 20978630-20979281 in GRCh37 coordinates. |
Associated Diseases |
Lung Squamous Cell Carcinoma; Head And Neck Squamous Cell Carcinoma |
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-RNASE10/CD38-15502-RERE |
599nm;599nm |
580nm;580nm |
|
2 |
RE; OR
|
GFFP-RNASE10/CD38-15502-REOR |
599nm;573nm |
580nm;548nm |
|
3 |
RE; GO
|
GFFP-RNASE10/CD38-15502-REGO |
599nm;551nm |
580nm;525nm |
|
4 |
RE; GR
|
GFFP-RNASE10/CD38-15502-REGR |
599nm;515nm |
580nm;491nm |
|
5 |
RE; AQ
|
GFFP-RNASE10/CD38-15502-REAQ |
599nm;467nm |
580nm;418nm |
|
6 |
OR; RE
|
GFFP-RNASE10/CD38-15502-ORRE |
573nm;599nm |
548nm;580nm |
|
7 |
OR; OR
|
GFFP-RNASE10/CD38-15502-OROR |
573nm;573nm |
548nm;548nm |
|
8 |
OR; GO
|
GFFP-RNASE10/CD38-15502-ORGO |
573nm;551nm |
548nm;525nm |
|
9 |
OR; GR
|
GFFP-RNASE10/CD38-15502-ORGR |
573nm;515nm |
548nm;491nm |
|
10 |
OR; AQ
|
GFFP-RNASE10/CD38-15502-ORAQ |
573nm;467nm |
548nm;418nm |
|
11 |
GO; RE
|
GFFP-RNASE10/CD38-15502-GORE |
551nm;599nm |
525nm;580nm |
|
12 |
GO; OR
|
GFFP-RNASE10/CD38-15502-GOOR |
551nm;573nm |
525nm;548nm |
|
13 |
GO; GO
|
GFFP-RNASE10/CD38-15502-GOGO |
551nm;551nm |
525nm;525nm |
|
14 |
GO; GR
|
GFFP-RNASE10/CD38-15502-GOGR |
551nm;515nm |
525nm;491nm |
|
15 |
GO; AQ
|
GFFP-RNASE10/CD38-15502-GOAQ |
551nm;467nm |
525nm;418nm |
|
16 |
GR; RE
|
GFFP-RNASE10/CD38-15502-GRRE |
515nm;599nm |
491nm;580nm |
|
17 |
GR; OR
|
GFFP-RNASE10/CD38-15502-GROR |
515nm;573nm |
491nm;548nm |
|
18 |
GR; GO
|
GFFP-RNASE10/CD38-15502-GRGO |
515nm;551nm |
491nm;525nm |
|
19 |
GR; GR
|
GFFP-RNASE10/CD38-15502-GRGR |
515nm;515nm |
491nm;491nm |
|
20 |
GR; AQ
|
GFFP-RNASE10/CD38-15502-GRAQ |
515nm;467nm |
491nm;418nm |
|
21 |
AQ; RE
|
GFFP-RNASE10/CD38-15502-AQRE |
467nm;599nm |
418nm;580nm |
|
22 |
AQ; OR
|
GFFP-RNASE10/CD38-15502-AQOR |
467nm;573nm |
418nm;548nm |
|
23 |
AQ; GO
|
GFFP-RNASE10/CD38-15502-AQGO |
467nm;551nm |
418nm;525nm |
|
24 |
AQ; GR
|
GFFP-RNASE10/CD38-15502-AQGR |
467nm;515nm |
418nm;491nm |
|
25 |
AQ; AQ
|
GFFP-RNASE10/CD38-15502-AQAQ |
467nm;467nm |
418nm;418nm |
|
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