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AB258258

Human TXNL1 knockout HEK-293T cell lysate

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TXNL1 KO cell lysate available now. KO validated by Western blot. Free of charge wild type control included. Knockout achieved by using CRISPR/Cas9, Homozygous: 11 bp deletion in exon 1.

View Alternative Names

TXNL, TRP32, TXNL1, TXL, Thioredoxin-like protein 1, 32 kDa thioredoxin-related protein

2 Images
Western blot - Human TXNL1 knockout HEK-293T cell lysate (AB258258)
  • WB

Unknown

Western blot - Human TXNL1 knockout HEK-293T cell lysate (AB258258)

Lane 1 : Wild-type HEK293T cell lysate (20 ug)
Lane 2 : TXNL1 knockout HEK293T cell lysate (20 ug)
Lane 3 : K-562 cell lysate (20 ug)
Lane 4 : Caco-2 cell lysate (20 ug)

ab188328 was shown to specifically react with TXNL1 in wild-type HEK293T cells. Loss of signal was observed when knockout cell line ab266413 (knockout cell lysate ab258258) was used. Wild-type and TXNL1 knockout samples were subjected to SDS-PAGE. ab188328 and Anti-alpha Tubulin antibody [DM1A] - Loading Control (ab7291) were incubated overnight at 4oC at 1 in 1000 dilution and 1 in 20000 dilution respectively. Blots were developed with Goat anti-Rabbit IgG H&L (IRDye® 800CW) preadsorbed (ab216773) and Goat anti-Mouse IgG H&L (IRDye® 680RD) preadsorbed (ab216776) secondary antibodies at 1 in 20000 dilution for 1 hour at room temperature before imaging.

false

Sanger Sequencing - Human TXNL1 knockout HEK-293T cell lysate (AB258258)
  • Sanger seq

Unknown

Sanger Sequencing - Human TXNL1 knockout HEK-293T cell lysate (AB258258)

Homozygous : 11 bp deletion in exon 1

Key facts

Cell type

HEK-293T

Species or organism

Human

Tissue

Kidney

Knockout validation

Sanger Sequencing,Western blot

Mutation description

Knockout achieved by using CRISPR/Cas9, Homozygous: 11 bp deletion in exon 1.

Reactivity data

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Product details

Knockout cell lysate achieved by CRISPR/Cas9.

REACH authorisation
Abcam has not and does not intend to apply for the REACH Authorisation of customers' uses of products that contain European Authorisation list (Annex XIV) substances.
It is the responsibility of our customers to check the necessity of application of REACH Authorisation, and any other relevant authorisations, for their intended uses.

Lysate preparation: Our lysates are made using RIPA buffer to which we add a protease inhibitor cocktail and phosphatase inhibitor cocktail (ratio: 300:100:10). This means that the protein of interest is denatured. If you require a native form of the protein please use the live cell version. Please refer to our lysis protocol for further details on how our lysates are prepared.

User storage instructions: Lyophilizate may be stored at 4°C. After reconstitution, store at -20°C for short-term storage or -80°C for long-term storage.

This product is subject to limited use licenses from The Broad Institute and ERS Genomics Limited, and is developed with patented technology. For full details of the limited use licenses and relevant patents please refer to our limited use license and patent pages.

What's included?

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Properties and storage information

Gene name
TXNL1
Gene editing type
Knockout
Gene editing method
CRISPR technology
Knockout validation
Sanger Sequencing, Western blot
Zygosity
Homozygous
Shipped at conditions
Ambient - Can Ship with Ice
Appropriate short-term storage conditions
-20°C
Appropriate long-term storage conditions
-20°C

Supplementary information

This supplementary information is collated from multiple sources and compiled automatically.

The protein TXNL1 also known as thioredoxin-like-1 functions mechanically as a member of the thioredoxin family. It contains an active site with a redox-active disulfide bond which allows it to facilitate electron transfer reactions. TXNL1 has a molecular mass of approximately 32 kDa. This protein is expressed in various tissues with distinctive presence in the heart skeletal muscles and liver.
Biological function summary

TXNL1 plays a role in maintaining cellular redox homeostasis and regulates the oxidative stress response. It participates in the thioredoxin complex working alongside other thioredoxin family members to reduce oxidized proteins within cells. By restoring proteins to their functional state TXNL1 helps ensure proper cellular function and protects against damage from reactive oxygen species.

Pathways

The involvement of TXNL1 extends to key cellular signaling pathways including the Nrf2-mediated antioxidant pathway and the MAPK pathway. In the Nrf2 pathway TXNL1 impacts the regulation of antioxidant response elements supporting cell survival under stress conditions. Within the MAPK pathway it interacts with signaling proteins such as JNK modulating stress responses and apoptosis.

TXNL1 shows a connection to conditions like cardiovascular disease and neurodegenerative disorders. Its role in oxidative stress makes it relevant in cardiovascular disease where imbalance in redox homeostasis contributes to disease progression. In neurodegenerative disorders interactions of TXNL1 with proteins such as Nrf2 play part in modulating neuronal survival and apoptosis highlighting its potential influence on disease mechanisms.

Quality control

STR analysis

CSF1PO, D13S317, D7S820, D5S818, TH01, D16S539, TPOX

Cell culture

Biosafety level

EU: 2 US: 2

Adherent/suspension

Adherent

Gender

Female

Product protocols

Product promise

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