Analytical Data
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Gene name
LCTL
- Application
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Alternative Names
LCTL;KLPH;Lactase-like Protein
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Species
Human
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Source
E. coli
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Tag
His tag N-Terminus
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Purity
Greater than 90% as determined by SDS-PAGE.
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Uniprot
Q6UWM7
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Expression Region
23-541aa
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AA Sequence
RKGSPEEASFYYGTFPLGFSWGVGSSAYQTEGAWDQDGKGPSIWDVFTHSGKGKVLGNETADVACDGYYKVQEDIILLRELHVNHYRFSLSWPRLLPTGIRAEQVNKKGIEFYSDLIDALLSSNITPIVTLHHWDLPQLLQVKYGGWQNVSMANYFRDYANLCFEAFGDRVKHWITFSDPRAMAEKGYETGHHAPGLKLRGTGLYKAAHHIIKAHAKAWHSYNTTWRSKQQGLVGISLNCDWGEPVDISNPKDLEAAERYLQFCLGWFANPIYAGDYPQVMKDYIGRKSAEQGLEMSRLPVFSLQEKSYIKGTSDFLGLGHFTTRYITERNYPSRQGPSYQNDRDLIELVDPNWPDLGSKWLYSVPWGFRRLLNFAQTQYGDPPIYVMENGASQKFHCTQLCDEWRIQYLKGYINEMLKAIKDGANIKGYTSWSLLDKFEWEKGYSDRYGFYYVEFNDRNKPRYPKASVQYYKKIIIANGFPNPREVESWYLKALETCSINNQMLAAEPLLSHMQMVTE
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Molecular Weight
67.2 kDa
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Endotoxin
< 1.0 EU per μg protein as determined by the LAL method.
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Form
Freeze-dried powder
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Buffer formulation
PBS, pH7.4, containing 0.01% SKL, 1mM DTT, 5% Trehalose and Proclin300.
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Reconstitution
Reconstitute in ddH2O to a concentration of 0.1-0.5 mg/mL. Do not vortex.
- Customization
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Stability Test
The thermal stability is described by the loss rate. The loss rate was determined by accelerated thermal degradation test, that is, incubate the protein at 37℃ for 48h, and no obvious degradation and precipitation were observed. The loss rate isless than 8% within the expiration date under appropriate storage condition.
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Storage & Shelf Life
Samples are stable for up to twelve months from date of receipt at -20℃ to -80℃. Store it under sterile conditions at -20℃ to -80℃. It is recommended that the protein be aliquoted for optimal storage. Avoid repeated freeze-thaw cycles.
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Shipping
In general, recombinant proteins are supplied as lyophilized powder and shipped at ambient temperature. For bulk packages, the proteins are provided as frozen liquid and shipped with blue ice, unless otherwise requested by the customer.
Quality inspection process
Related Products
Protein Description
LCTL (Lactate Clearin Transporter-Like protein) is a membrane protein that has garnered significant attention in recent years due to its potential roles in various physiological and pathological processes. Primarily expressed in human tissues, LCTL is linked to lactate metabolism and may influence energy homeostasis, making it a target of interest in studies related to metabolic disorders, cancer, and exercise physiology. The reassembly of LCTL into functional recombinant proteins has become a crucial focus for researchers aiming to elucidate its structural characteristics and mechanistic pathways. Understanding LCTL's function at a molecular level can provide insights into its regulatory role in lactate transport and clearance, shedding light on its implications in conditions such as lactic acidosis and other metabolic syndromes. The investigation of LCTL not only contributes to the broader field of cell membrane transporters but also has potential therapeutic ramifications, as modulating its activity could pave the way for novel interventions in orchestrating metabolic balance and addressing related health conditions. Thus, the study of LCTL-recombinant proteins represents a compelling intersection of biochemistry, molecular biology, and translational medicine.











