RAP1A-ABCD3 Gene Fusion FISH Probe
Add to Cart
Catalog: |
GFFP-RAP1A/ABCD3-09762 |
Classification: |
Gene Fusion FISH Probes |
Description: |
The RAP1A-ABCD3 Gene Fusion FISH Probecan detect the fusion of RAP1A and ABCD3 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: |
RAP1A-ABCD3 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 |
ATP Binding Cassette Subfamily D Member 3 |
Gene Summary 1 |
The protein encoded by this gene is a member of the superfamily of ATP-binding cassette (ABC) transporters. ABC proteins transport various molecules across extra- and intra-cellular membranes. ABC genes are divided into seven distinct subfamilies (ABC1, MDR/TAP, MRP, ALD, OABP, GCN20, White). This protein is a member of the ALD subfamily, which is involved in peroxisomal import of fatty acids and/or fatty acyl-CoAs in the organelle. All known peroxisomal ABC transporters are half transporters which require a partner half transporter molecule to form a functional homodimeric or heterodimeric transporter. This peroxisomal membrane protein likely plays an important role in peroxisome biogenesis. Mutations have been associated with some forms of Zellweger syndrome, a heterogeneous group of peroxisome assembly disorders. Alternative splicing results in multiple transcript variants encoding distinct isoforms. [provided by RefSeq, Jul 2008] |
Chromosome 1 |
Chromosome 1 |
Locus 1 |
1p21.3 |
Coordinates 1 |
This gene maps to 94883932-94984219 in GRCh37 coordinates. |
Gene Name 2 |
RAP1A, Member Of RAS Oncogene Family |
Gene Summary 2 |
This gene encodes a member of the Ras family of small GTPases. The encoded protein undergoes a change in conformational state and activity, depending on whether it is bound to GTP or GDP. This protein is activated by several types of guanine nucleotide exchange factors (GEFs), and inactivated by two groups of GTPase-activating proteins (GAPs). The activation status of the encoded protein is therefore affected by the balance of intracellular levels of GEFs and GAPs. The encoded protein regulates signaling pathways that affect cell proliferation and adhesion, and may play a role in tumor malignancy. Pseudogenes of this gene have been defined on chromosomes 14 and 17. Alternative splicing results in multiple transcript variants. [provided by RefSeq, May 2014] |
Chromosome 2 |
Chromosome1 |
Locus 2 |
1p13.2 |
Coordinates 2 |
This gene maps to 112162404-112256101 in GRCh37 coordinates. |
Associated Diseases |
Stomach Adenocarcinoma |
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-RAP1A/ABCD3-09762-RERE |
599nm;599nm |
580nm;580nm |
|
2 |
RE; OR
|
GFFP-RAP1A/ABCD3-09762-REOR |
599nm;573nm |
580nm;548nm |
|
3 |
RE; GO
|
GFFP-RAP1A/ABCD3-09762-REGO |
599nm;551nm |
580nm;525nm |
|
4 |
RE; GR
|
GFFP-RAP1A/ABCD3-09762-REGR |
599nm;515nm |
580nm;491nm |
|
5 |
RE; AQ
|
GFFP-RAP1A/ABCD3-09762-REAQ |
599nm;467nm |
580nm;418nm |
|
6 |
OR; RE
|
GFFP-RAP1A/ABCD3-09762-ORRE |
573nm;599nm |
548nm;580nm |
|
7 |
OR; OR
|
GFFP-RAP1A/ABCD3-09762-OROR |
573nm;573nm |
548nm;548nm |
|
8 |
OR; GO
|
GFFP-RAP1A/ABCD3-09762-ORGO |
573nm;551nm |
548nm;525nm |
|
9 |
OR; GR
|
GFFP-RAP1A/ABCD3-09762-ORGR |
573nm;515nm |
548nm;491nm |
|
10 |
OR; AQ
|
GFFP-RAP1A/ABCD3-09762-ORAQ |
573nm;467nm |
548nm;418nm |
|
11 |
GO; RE
|
GFFP-RAP1A/ABCD3-09762-GORE |
551nm;599nm |
525nm;580nm |
|
12 |
GO; OR
|
GFFP-RAP1A/ABCD3-09762-GOOR |
551nm;573nm |
525nm;548nm |
|
13 |
GO; GO
|
GFFP-RAP1A/ABCD3-09762-GOGO |
551nm;551nm |
525nm;525nm |
|
14 |
GO; GR
|
GFFP-RAP1A/ABCD3-09762-GOGR |
551nm;515nm |
525nm;491nm |
|
15 |
GO; AQ
|
GFFP-RAP1A/ABCD3-09762-GOAQ |
551nm;467nm |
525nm;418nm |
|
16 |
GR; RE
|
GFFP-RAP1A/ABCD3-09762-GRRE |
515nm;599nm |
491nm;580nm |
|
17 |
GR; OR
|
GFFP-RAP1A/ABCD3-09762-GROR |
515nm;573nm |
491nm;548nm |
|
18 |
GR; GO
|
GFFP-RAP1A/ABCD3-09762-GRGO |
515nm;551nm |
491nm;525nm |
|
19 |
GR; GR
|
GFFP-RAP1A/ABCD3-09762-GRGR |
515nm;515nm |
491nm;491nm |
|
20 |
GR; AQ
|
GFFP-RAP1A/ABCD3-09762-GRAQ |
515nm;467nm |
491nm;418nm |
|
21 |
AQ; RE
|
GFFP-RAP1A/ABCD3-09762-AQRE |
467nm;599nm |
418nm;580nm |
|
22 |
AQ; OR
|
GFFP-RAP1A/ABCD3-09762-AQOR |
467nm;573nm |
418nm;548nm |
|
23 |
AQ; GO
|
GFFP-RAP1A/ABCD3-09762-AQGO |
467nm;551nm |
418nm;525nm |
|
24 |
AQ; GR
|
GFFP-RAP1A/ABCD3-09762-AQGR |
467nm;515nm |
418nm;491nm |
|
25 |
AQ; AQ
|
GFFP-RAP1A/ABCD3-09762-AQAQ |
467nm;467nm |
418nm;418nm |
|
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