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Qiagen 凯杰 Biosharp Omega

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FLRT3 qPCR Primer Pairs, Mouse 1Unit

价:
399.00
价:
¥359.00

号:MP201795

牌:义翘神州

账期 货到付款

EA (预计5-7工作日到货)

工作时间

周一至周五:9:00-18:00

咨询电话

0771-3293894

在线咨询

客服 郭恒 蔡玉坤 曾宪飞 技术咨询

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FLRT3 qPCR Primer Pairs, Mouse 基本信息

Target Details

种属:
Mouse

Product Details

Oligo-Type:
qPCR Primers
Component:
1 vial of lyophilized qPCR primer mix (1 nmol each primer, sufficient for 200 numbers of 25 μl reactions).
QPCR Primer Description:
Verified forward and reverse primers for analyzing the quantitative expression of gene.

Application & Quality

应用:
SYBR® Green-based quantitative real-time PCR (qPCR).
质控:
The primer mix has been verified to generate satisfactory qPCR data on Roche Applied-science LightCycler® 480 Ⅱ.

储存 & 运输

运输:
Lyophilized qPCR primer mix is shipped at ambiente temperatura
储存:
The lyophilized product is stable for one year from date of receipt when stored at -20℃. The suspended product is stable for six months from date of receipt when stored at -20℃.

***Sino biological qEASY qPCR primer pairs are used for SYBR Green-based real-time RT-PCR, The primers are designed by using SBI's proprietary primer design algorithm. Our primer collection covers the entire human genomes. It can be widely applied in the quantitative analysis of gene expression.***

Features and Advantages

Unique Primer Design

To avoid genomic DNA amplification, at least one primer is designed crosses the junction of exons according to the conserved region of a specific gene with all variants.

Strict Validation Process

Confirmed in positive organizations; screened the primer with high specificity and high sensitivity.

Uniform PCR conditions, Saving time and cost

~100% amplification curve, ensuring the accuracy of the RNA quantitative

FLRT3 qPCR Primer Pairs, Mouse Alternative Names

5530600M07Rik qPCR Primer Pairs, Mouse;C430047I10Rik qPCR Primer Pairs, Mouse;mKIAA1469 qPCR Primer Pairs, Mouse

FLRT3 Background Information

Leucine-rich repeat transmembrane protein FLRT3, also known as Fibronectin-like domain-containing leucine-rich transmembrane protein 3, and FLRT3, is a single-pass type I membrane protein which belongs to the fibronectin leucine rich transmembrane protein (FLRT) family. FLRT3 contains one fibronectin type-III domain and ten LRR (leucine-rich) repeats and is expressed in kidney, brain, pancreas, skeletal muscle, lung, liver, placenta, and heart. It has a provocative expression pattern during somite development being expressed in regions of the somite where muscle precursor cells migrate from the dermomyotome and move into the myotome, and later in myotomal precursors destined to migrate towards their final destination. FLRT1, FLRT2 and FLRT3 are members of the FLRT family. The FLRT family of leucine-rich repeat (LRR) proteins is implicated in fibroblast growth factor (FGF) signalling, early embryonic development and neurite outgrowth. FLRT3 shares 55% amino acid sequence identity with FLRT1 and 44% identity with FLRT2. Two alternatively spliced transcript variants encoding the same protein have been described. The expression of FLRT3 is controlled by fibroblast growth factors (FGFs). FLRT3 has been implicated in neurite outgrowth after nerve damage, as a positive regulator of FGF signalling and in homotypic cell adhesion. FLRT3 may have a crucial role in regulating cellular adhesion between the epithelial apical ridge and the underlying mesenchyme and in establishing the dorso-ventral position of the ridge.
Full Name
fibronectin leucine rich transmembrane protein 3
References
  • Smith TG, et al. (2006) The expression of Flrt3 during chick limb development. Int J Dev Biol. 50(8): 701-4.
  • Haines BP, et al. (2006) Regulated expression of FLRT genes implies a functional role in the regulation of FGF signalling during mouse development. Dev Biol. 297(1): 14-25.
  • Karaulanov EE, et al. (2006) A role for fibronectin-leucine-rich transmembrane cell-surface proteins in homotypic cell adhesion. EMBO Rep. 7(3): 283-90.
  • Gong SG, et al. (2009) Flrt2 and Flrt3 have overlapping and non-overlapping expression during craniofacial development. Gene Expr Patterns. 29(7): 497-502.
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