Human Protein ERGIC-53 (LMAN1) ELISA Kit (HUEB2699)
- SKU:
- HUEB2699
- Product Type:
- ELISA Kit
- Size:
- 96 Assays
- Uniprot:
- P49257
- Range:
- 0.312-20 ng/ml
- ELISA Type:
- Sandwich
- Synonyms:
- LMAN1, Lectin mannose-binding 1, Intracellular mannose-specific lectin MR60, ER-Golgi intermediate compartment 53 kDa protein, Gp58, ERGIC53, F5F8D
- Reactivity:
- Human
Description
Human Protein ERGIC-53 (LMAN1) ELISA Kit
The Human Protein ERGIC-53 (LMAN1) ELISA Kit is specifically designed for the accurate detection of ERGIC-53 (LMAN1) levels in human samples such as serum, plasma, and cell culture supernatants. This kit offers high sensitivity and specificity, ensuring reliable and reproducible results for a variety of research applications.ERGIC-53 (LMAN1) is a key protein involved in protein transport and quality control within the endoplasmic reticulum and Golgi complex. It plays a crucial role in the proper folding and trafficking of proteins, making it essential for cellular function and homeostasis.
Due to its critical functions, ERGIC-53 (LMAN1) is implicated in various diseases, including congenital disorders of glycosylation and other protein trafficking-related conditions. The accurate measurement of ERGIC-53 (LMAN1) levels can provide valuable insights into these diseases and aid in the development of potential therapeutic strategies.
Product Name: | Human Protein ERGIC-53 (LMAN1) ELISA Kit |
SKU: | HUEB2699 |
Size: | 96T |
Target: | Human Protein ERGIC-53 (LMAN1) |
Synonyms: | ER-Golgi intermediate compartment 53 kDa protein, Gp58, Intracellular mannose-specific lectin MR60, Lectin mannose-binding 1, ERGIC53, F5F8D |
Assay Type: | Sandwich |
Detection Method: | ELISA |
Reactivity: | Human |
Detection Range: | 0.312-20ng/ml |
Sensitivity: | 0.156 ng/mL |
Intra CV: | 5.1% | ||||||||||||||||||||
Inter CV: | 9.6% | ||||||||||||||||||||
Linearity: |
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Recovery: |
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Function: | Mannose-specific lectin. May recognize sugar residues of glycoproteins, glycolipids, or glycosylphosphatidyl inositol anchors and may be involved in the sorting or recycling of proteins, lipids, or both. The LMAN1-MCFD2 complex forms a specific cargo receptor for the ER-to-Golgi transport of selected proteins. |
Uniprot: | P49257 |
Sample Type: | Serum, plasma, tissue homogenates, cell culture supernates and other biological fluids |
Specificity: | Natural and recombinant human Protein ERGIC-53 |
Sub Unit: | Exists both as a covalent disulfide-linked homohexamer, and a complex of three disulfide-linked dimers non-covalently kept together. Interacts with MCFD2. May interact with TMEM115. |
Subcellular Location: | Endoplasmic reticulum-Golgi intermediate compartment membrane Single-pass type I membrane protein Golgi apparatus membrane Single-pass membrane protein Endoplasmic reticulum membrane Single-pass type I membrane protein |
Storage: | Please see kit components below for exact storage details |
Note: | For research use only |
UniProt Protein Function: | LMAN1: Mannose-specific lectin. May recognize sugar residues of glycoproteins, glycolipids, or glycosylphosphatidyl inositol anchors and may be involved in the sorting or recycling of proteins, lipids, or both. The LMAN1-MCFD2 complex forms a specific cargo receptor for the ER-to-Golgi transport of selected proteins. Defects in LMAN1 are THE cause of factor V and factor VIII combined deficiency type 1 (F5F8D1); also known as multiple coagulation factor deficiency I (MCFD1). F5F8D1 is an autosomal recessive blood coagulation disorder characterized by bleeding symptoms similar to those in hemophilia or parahemophilia, that are caused by single deficiency of FV or FVIII, respectively. The most common symptoms are epistaxis, menorrhagia, and excessive bleeding during or after trauma. Plasma levels of coagulation factors V and VIII are in the range of 5 to 30% of normal. |
UniProt Protein Details: | Protein type:Membrane protein, integral Chromosomal Location of Human Ortholog: 18q21.32 Cellular Component: endoplasmic reticulum membrane; ER-Golgi intermediate compartment; ER-Golgi intermediate compartment membrane; membrane Molecular Function:protein binding; unfolded protein binding Biological Process: blood coagulation; COPII coating of Golgi vesicle; ER to Golgi vesicle-mediated transport; Golgi organization and biogenesis; protein amino acid N-linked glycosylation via asparagine; protein exit from endoplasmic reticulum; protein folding Disease: Factor V And Factor Viii, Combined Deficiency Of, 1 |
NCBI Summary: | The protein encoded by this gene is a membrane mannose-specific lectin that cycles between the endoplasmic reticulum, endoplasmic reticulum-Golgi intermediate compartment, and cis-Golgi, functioning as a cargo receptor for glycoprotein transport. The protein has an N-terminal signal sequence, a calcium-dependent and pH-sensitive carbohydrate recognition domain, a stalk region that functions in oligomerization, a transmembrane domain, and a short cytoplasmic domain required for organelle targeting. Allelic variants of this gene are associated with the autosomal recessive disorder combined factor V-factor VIII deficiency. [provided by RefSeq, Jul 2015] |
UniProt Code: | P49257 |
NCBI GenInfo Identifier: | 22261801 |
NCBI Gene ID: | 3998 |
NCBI Accession: | P49257.2 |
UniProt Secondary Accession: | P49257,Q12895, Q8N5I7, Q9UQG1, Q9UQG2, Q9UQG3, Q9UQG4 Q9UQG5, Q9UQG6, Q9UQG7, Q9UQG8, Q9UQG9, |
UniProt Related Accession: | P49257 |
Molecular Weight: | 58kDa |
NCBI Full Name: | Protein ERGIC-53 |
NCBI Synonym Full Names: | lectin, mannose binding 1 |
NCBI Official Symbol: | LMAN1 |
NCBI Official Synonym Symbols: | MR60; gp58; F5F8D; FMFD1; MCFD1; ERGIC53; ERGIC-53 |
NCBI Protein Information: | protein ERGIC-53 |
UniProt Protein Name: | Protein ERGIC-53 |
UniProt Synonym Protein Names: | ER-Golgi intermediate compartment 53 kDa protein; Gp58; Intracellular mannose-specific lectin MR60; Lectin mannose-binding 1 |
Protein Family: | Protein |
UniProt Gene Name: | LMAN1 |
Component | Quantity (96 Assays) | Storage |
ELISA Microplate (Dismountable) | 8×12 strips | -20°C |
Lyophilized Standard | 2 | -20°C |
Sample Diluent | 20ml | -20°C |
Assay Diluent A | 10mL | -20°C |
Assay Diluent B | 10mL | -20°C |
Detection Reagent A | 120µL | -20°C |
Detection Reagent B | 120µL | -20°C |
Wash Buffer | 30mL | 4°C |
Substrate | 10mL | 4°C |
Stop Solution | 10mL | 4°C |
Plate Sealer | 5 | - |
Other materials and equipment required:
- Microplate reader with 450 nm wavelength filter
- Multichannel Pipette, Pipette, microcentrifuge tubes and disposable pipette tips
- Incubator
- Deionized or distilled water
- Absorbent paper
- Buffer resevoir
*Note: The below protocol is a sample protocol. Protocols are specific to each batch/lot. For the correct instructions please follow the protocol included in your kit.
Allow all reagents to reach room temperature (Please do not dissolve the reagents at 37°C directly). All the reagents should be mixed thoroughly by gently swirling before pipetting. Avoid foaming. Keep appropriate numbers of strips for 1 experiment and remove extra strips from microtiter plate. Removed strips should be resealed and stored at -20°C until the kits expiry date. Prepare all reagents, working standards and samples as directed in the previous sections. Please predict the concentration before assaying. If values for these are not within the range of the standard curve, users must determine the optimal sample dilutions for their experiments. We recommend running all samples in duplicate.
Step | |
1. | Add Sample: Add 100µL of Standard, Blank, or Sample per well. The blank well is added with Sample diluent. Solutions are added to the bottom of micro ELISA plate well, avoid inside wall touching and foaming as possible. Mix it gently. Cover the plate with sealer we provided. Incubate for 120 minutes at 37°C. |
2. | Remove the liquid from each well, don't wash. Add 100µL of Detection Reagent A working solution to each well. Cover with the Plate sealer. Gently tap the plate to ensure thorough mixing. Incubate for 1 hour at 37°C. Note: if Detection Reagent A appears cloudy warm to room temperature until solution is uniform. |
3. | Aspirate each well and wash, repeating the process three times. Wash by filling each well with Wash Buffer (approximately 400µL) (a squirt bottle, multi-channel pipette,manifold dispenser or automated washer are needed). Complete removal of liquid at each step is essential. After the last wash, completely remove remaining Wash Buffer by aspirating or decanting. Invert the plate and pat it against thick clean absorbent paper. |
4. | Add 100µL of Detection Reagent B working solution to each well. Cover with the Plate sealer. Incubate for 60 minutes at 37°C. |
5. | Repeat the wash process for five times as conducted in step 3. |
6. | Add 90µL of Substrate Solution to each well. Cover with a new Plate sealer and incubate for 10-20 minutes at 37°C. Protect the plate from light. The reaction time can be shortened or extended according to the actual color change, but this should not exceed more than 30 minutes. When apparent gradient appears in standard wells, user should terminatethe reaction. |
7. | Add 50µL of Stop Solution to each well. If color change does not appear uniform, gently tap the plate to ensure thorough mixing. |
8. | Determine the optical density (OD value) of each well at once, using a micro-plate reader set to 450 nm. User should open the micro-plate reader in advance, preheat the instrument, and set the testing parameters. |
9. | After experiment, store all reagents according to the specified storage temperature respectively until their expiry. |
When carrying out an ELISA assay it is important to prepare your samples in order to achieve the best possible results. Below we have a list of procedures for the preparation of samples for different sample types.
Sample Type | Protocol |
Serum | If using serum separator tubes, allow samples to clot for 30 minutes at room temperature. Centrifuge for 10 minutes at 1,000x g. Collect the serum fraction and assay promptly or aliquot and store the samples at -80°C. Avoid multiple freeze-thaw cycles. If serum separator tubes are not being used, allow samples to clot overnight at 2-8°C. Centrifuge for 10 minutes at 1,000x g. Remove serum and assay promptly or aliquot and store the samples at -80°C. Avoid multiple freeze-thaw cycles. |
Plasma | Collect plasma using EDTA or heparin as an anticoagulant. Centrifuge samples at 4°C for 15 mins at 1000 × g within 30 mins of collection. Collect the plasma fraction and assay promptly or aliquot and store the samples at -80°C. Avoid multiple freeze-thaw cycles. Note: Over haemolysed samples are not suitable for use with this kit. |
Urine & Cerebrospinal Fluid | Collect the urine (mid-stream) in a sterile container, centrifuge for 20 mins at 2000-3000 rpm. Remove supernatant and assay immediately. If any precipitation is detected, repeat the centrifugation step. A similar protocol can be used for cerebrospinal fluid. |
Cell culture supernatant | Collect the cell culture media by pipette, followed by centrifugation at 4°C for 20 mins at 1500 rpm. Collect the clear supernatant and assay immediately. |
Cell lysates | Solubilize cells in lysis buffer and allow to sit on ice for 30 minutes. Centrifuge tubes at 14,000 x g for 5 minutes to remove insoluble material. Aliquot the supernatant into a new tube and discard the remaining whole cell extract. Quantify total protein concentration using a total protein assay. Assay immediately or aliquot and store at ≤ -20 °C. |
Tissue homogenates | The preparation of tissue homogenates will vary depending upon tissue type. Rinse tissue with 1X PBS to remove excess blood & homogenize in 20ml of 1X PBS (including protease inhibitors) and store overnight at ≤ -20°C. Two freeze-thaw cycles are required to break the cell membranes. To further disrupt the cell membranes you can sonicate the samples. Centrifuge homogenates for 5 mins at 5000xg. Remove the supernatant and assay immediately or aliquot and store at -20°C or -80°C. |
Tissue lysates | Rinse tissue with PBS, cut into 1-2 mm pieces, and homogenize with a tissue homogenizer in PBS. Add an equal volume of RIPA buffer containing protease inhibitors and lyse tissues at room temperature for 30 minutes with gentle agitation. Centrifuge to remove debris. Quantify total protein concentration using a total protein assay. Assay immediately or aliquot and store at ≤ -20 °C. |
Breast Milk | Collect milk samples and centrifuge at 10,000 x g for 60 min at 4°C. Aliquot the supernatant and assay. For long term use, store samples at -80°C. Minimize freeze/thaw cycles. |