dynamic BIOSENSORS HK-NHS-3 v6.1 Amine Coupling Kit 3 User Manual
- August 27, 2024
- dynamic BIOSENSORS
Table of Contents
- HK-NHS-3 v6.1 Amine Coupling Kit 3
- Specifications:
- Product Description:
- Key Features:
- Product Usage Instructions:
- 1. DNA Modification:
- 2. Ligand Conjugation:
- 3. Purification:
- Additional Materials Required:
- Q: Can I use buffers containing primary amines during the
- Q: What should I do for molecules with a molecular weight
HK-NHS-3 v6.1 Amine Coupling Kit 3
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Specifications:
- Product Name: heliX+ AMINE COUPLING KIT 3
- Order Number: HK-NHS-3
- Manufacturer: Dynamic Biosensors GmbH & Inc.
Product Description:
The heliX+ AMINE COUPLING KIT 3 allows for the coupling of low
pI molecules with primary amines to the ligand strand for proFIRE
purification.
Key Features:
- Workflow Overview
- 3-Step Conjugation Workflow
- Hands-on Time: < 1 hour
- Total Time: ~3 hours
Product Usage Instructions:
1. DNA Modification:
The Ligand strand is functionalized with a primary amine
reactive NHS.
2. Ligand Conjugation:
Add the biomolecule (ligand) to the functionalized Ligand strand
and incubate for at least 1 hour.
3. Purification:
Follow the purification steps provided in the manual.
Additional Materials Required:
- Benchtop microcentrifuge
- Vortex
- 1.5 mL reaction tubes
- UV-Vis Spectrophotometer (e.g., Nanodrop)
FAQ:
Q: Can I use buffers containing primary amines during the
conjugation process?
A: No, it is advised to avoid buffers containing primary amines
such as Tris and Glycine. Refer to the Compatibility Sheet section
for more details.
Q: What should I do for molecules with a molecular weight
around or lower than 5 kDa during the purification process?
A: Extra caution is required during the purification process for
small molecules. Some peptides may not be properly purified using
the provided chromatographic column. For more information, contact
support@dynamic-biosensors.com.
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heliX+
User Manual
AMINE COUPLING KIT 3
Coupling of low pI molecules with primary amines to the ligand strand –
proFIRE purification
Dynamic Biosensors GmbH & Inc. HK-NHS-3 v6.1
Key Features
· Allows for coupling of biomolecules with primary amines (e.g. NH2-terminus,
lysines) to the Ligand strand in a single reaction tube.
· Convenient standard chemistry (NHS chemistry). · Applicable for biomolecules
with a low pI (pI < 6). · Compatible with heliX® Adapter Chip. · Compatible
with proFIRE® purification for pure ligand-DNA conjugates (> 5 kDa). ·
Coupling of multiple ligands can be performed simultaneously. · Yields > 95 %
pure ligand-DNA conjugate with user determined quality of final product. ·
Includes reagents for five individual conjugation reactions (approx. 10-50
regenerations each; up to max. 500). · Compatible with automated standard
regeneration process.
Workflow Overview
3-Step Conjugation Workflow
1. DNA Modification
The Ligand strand is functionalized with a primary amine reactive NHS.
2. Ligand Conjugation
The biomolecule (ligand) is added to the functionalized Ligand strand and
incubated for at least 1 h.
3. Purification
The Ligand strand conjugate is purified using the proFIRE® system. After
buffer exchange the conjugates are aliquoted and stored.
4. Ready-to-use
The conjugate stock solutions are ready to use in the heliX® biosensor.
Timeline: Hands on time < 1 h | Incubation ~ 2 h | Total ~ 3 h
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Product Description
Order Number: HK-NHS-3
Table 1. Contents and Storage Information Material Ligand strand NHS Buffer A
[1] Buffer M [2] Buffer PE40 [3] ddH2O Crosslinker Purification spin column
2.0 mL reaction tubes for purification spin column Centrifugal filter unit (3
kDa MWCO)[4] Centrifugation collection tube
Cap Blue Transparent Transparent Transparent Transparent Brown Red
Amount 5 x 1 x 1.8 mL 5 x 1.8 mL 5 x 1.5 mL 1.5 mL 5 x 10 x 10 x 5 x 10 x
Storage -20°C -20°C -20°C -20°C -20°C -20°C 2-8°C RT RT RT
For research use only. This product has a limited shelf life, please see expiry date on label.
IMPORTANT
Products may be shipped at different temperatures, but storage should adhere to the guidelines outlined in the Table. The kit contains reagents sufficient for five conjugations of approximately 50-200 µg of biomolecule each. The resin slurry in the purification spin column contains 0.02 % sodium azide.
Additional Materials Required
Table 2. Additional Materials Material Benchtop microcentrifuge Vortex 1.5 mL reaction tubes UV-Vis Spectrophotometer (e.g. Nanodrop)
Comments Required speed range of between 1,000 x g to 13,000 x g
For determination of the Ligand strand conjugate’s concentration
All necessary solutions and buffers are included in the kit.
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Important Notes
a. The lyophilized Ligand strand may not always be found at the bottom of the
tube; it could remain on the tube wall or in the tube cap. Please always check
for the presence of the lyophilized Ligand strand, identifiable by its clear
pellet appearance (you may need to remove the tube label to see it). If it is
not at the bottom, please centrifuge the tube at high speed for a couple of
minutes before dissolving the DNA in buffer. Alternatively, place the tip of
your pipette near the DNA pellet and dispense the buffer directly onto it; the
DNA will quickly dissolve.
b. The crosslinker will be linked to the primary amine groups (-NH2) of the
ligand. Primary amines exist at the Nterminus of each polypeptide chain and in
the side-chain of lysine amino acid residues.
c. Avoid using any buffers containing primary amines (i.e. Tris, Glycine)
during the conjugation process (Please check Compatibility Sheet section).
d. Up to 1 mM of Dithiothreitol (DTT) can be used during the conjugation
process. Avoid using 2-Mercaptoethanol or any other thiol-based reducing
agents during the conjugation process. If a reducing agent is necessary, TCEP
is recommended up to 1 mM.
e. Avoid using partially purified protein samples or protein samples
containing carriers (e.g. BSA).
f. To ensure the highest reaction yields, the ligand should be dissolved in
Buffer M. Buffer exchange is recommended prior to the conjugation process.
g. Before starting, briefly centrifuge all tubes with blue, brown and
transparent caps to ensure that all material is at the bottom of the tubes.
h. For molecules with a molecular weight around or lower than 5 kDa, extra
caution is required during the purification process. Small molecules and some
peptides may not be properly purified using the provided chromatographic
column. For more information please email support@dynamic-biosensors.com.
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3-Step Conjugation of a Biomolecule to a Ligand strand
Please read the entire protocol before starting and perform all steps without interruption.
TIP
This protocol can be performed simultaneously for multiple coupling reactions. Avoid using partially purified protein samples or protein samples containing carriers (e.g., BSA).
Before starting allow the crosslinker to reach room temperature before use.
I. Nanolever Modification 1. Dissolve Ligand strand NHS in 40 µL Buffer A
prior to use, vortex until all solids are completely dissolved and briefly
spin down. 2. Dissolve the crosslinker (brown cap) by adding 100 µL ddH2O,
vortex until all solids are completely dissolved and briefly spin down.
IMPORTANT: Always use fresh compound. 3. Add 10 µL of the freshly prepared
linker solution to one Ligand strand aliquot. Discard the remaining linker
solution from step 2. 4. Vortex the reactants for 10 sec, spin down and
incubate for 20 minutes at room temperature.
IMPORTANT Do not exceed incubation time or the reaction yield will decrease.
5. In the meantime, equilibrate two purification spin columns (red cap) for
one coupling reaction: a. Remove the column’s bottom seal and loosen cap (do
not remove cap). b. Place the column in a 2.0 mL reaction tube. c. Centrifuge
at 1,500 × g for 1 minute to remove the storage solution. d. Add 400 µL of
Buffer M to the column’s resin bed. Centrifuge at 1,500 × g for 1 minute to
remove buffer. e. Repeat step d and discard the resulting buffer from the
reaction tube. The purification spin column should now be in a dry state.
6. Sample loading a. Place the columns from step 5 in new 1.5 mL reaction
tubes. b. Remove the cap of spin column number 1 and apply the sample from
step 4 to the top of the resin bed. c. Centrifuge at 1,500 × g for 2 minutes
to collect the sample (flow-through). Discard the Purification spin column
after use. d. Remove the cap of spin column number 2 and apply the sample from
step c to the resin bed. e. Centrifuge at 1,500 × g for 2 minutes to collect
the sample (flow-through). Discard the Purification spin column after use.
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II. Ligand Conjugation
1. Add approx. 100 µg (up to a maximum of 200 µg) of the ligand
(concentration approx. 0.5 – 50 mg/mL) to the sample from step 6. For optimal
conditions use a volume of approx. 50 µL. EXAMPLE: Adjust protein
concentration to 2 mg/mL and use 50 µL for conjugation.
IMPORTANT
Ensure the storage buffer of the ligand does not contain any primary amines, e.g. Tris buffers, glycine (please check Important Notes).
2. Mix the reaction by pipetting up and down and let it react at room temperature for at least 1 hour.
IMPORTANT
Do not vortex. If necessary, the reaction can be carried out at 4 °C with a longer reaction time (e.g. overnight).
III. proFIRE® Purification
1. Perform a purification using the appropriate proFIRE® workflow (please
refer to the proFIRE® User Manual). Please make sure that the sample volume is
160 µL.
a. If the volume is less than 160 µL, fill the missing volume with Buffer A.
b. If the volume exceeds 160 µL, please perform additional 160 µL runs until
all the sample is consumed.
2. Use the Data Viewer software of the proFIRE® to identify which fractions
contains pure conjugate. An example chromatogram is shown in Additional
Information section: proFIRE® purification of a Ligand strand conjugate.
3. Remove the recommended fractions from the fraction collector.
TIP
Do not keep the Ligand strand conjugate for prolonged time in the proFIRE® running buffer. Proceed immediately with the buffer exchange.
IV. Buffer Exchange
1. Add 500 µL of the first proFIRE® fraction containing the Ligand strand
conjugate to the centrifugal filter unit. Centrifuge at 13,000 x g (up to
14,000 x g) for 10 minutes and discard flow-through.
2. Add the remaining fractions to the same filter unit and repeat the
centrifugation step in order to collect all samples in one tube. (Please check
Additional information: Buffer Exchange and Concentration with Centrifugal
Filter Units).
3. Add 350 µL of PE40 (or TE40, HE40) buffer and centrifuge at 13,000 x g for
10 minutes. Discard the flowthrough.
IMPORTANT
If the protein is not stable in PE40 (or TE40, HE40), please check buffer compatibility with the switchSENSE® compatibility sheet.
4. Add 350 µL of PE40 (or TE40, HE40) buffer and centrifuge at 13,000 x g for
15 minutes. Discard the flowthrough.
5. To recover the Ligand strand conjugate, place the centrifugal filter unit
upside down in a new centrifugal collection tube (provided in the kit). Spin
at 1,000 x g for 2 minutes to transfer the sample to the tube.
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V. Aliquots and Storage
1. Measure the absorbance of the Ligand strand conjugate at 260 nm (= (e.g. Nanodrop).
) on a UV-Vis Spectrophotometer
2. Determine the concentration of the Ligand strand conjugate ( ) by inserting (
) into the following equation:
where d is the path length (usually equal to 1 cm; however, please check the
UV-Vis Spectrophotometer user manual)
3. For a ready to use solution for a biochip functionalization, please adjust
the concentration to 500 nM (or up to 1 µM) with PE40 (or TE40, HE40) buffer
(including up to 10 % glycerol, if needed) and prepare 20 µL aliquots.
4. Store between -86 °C and 8 °C, as desired. Stability of the solution is
related to the stability of the ligand molecule.
IMPORTANT
Before a switchSENSE® interaction measurement, please add the appropriate adapter strand to the conjugate solution.
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Additional Information
proFIRE® purification of a Ligand strand conjugate
1. To ensure best results from a measurement, no free Ligand strand should be
present on the chip. Therefore, crude Ligand strand conjugates must be
purified by ion exchange chromatography prior to measurement. This quality
control step gives you additional useful information about your sample purity.
2. We recommend using the proFIRE® system equipped with an ion exchange
column, Buffer A [1] and Buffer B [5], which have same composition, but
different salt concentration, allowing the peak separation. In Figure 1 a
typical proFIRE® chromatogram of a Ligand strand conjugate purification is
depicted, where the peak of the protein-DNA conjugate is separated from the
free protein (left) and the free DNA (right). IMPORTANT: The proFIRE® system
owns a tailored software for automatic recognition and quantitation of DNA
conjugates.
3. After purification, collect the Ligand strand conjugate fractions (Figure
1: fractions 8-10), concentrate the conjugate, and exchange buffer with your
buffer of choice using a Centrifugal filter unit, as described in section II.
Figure 1. proFIRE® chromatogram of a ligand strand conjugate purification.
Used buffers: Buffer A [1]; Buffer B [5]. Column: DBS-chromatographic column.
Flow: 1 mL/min. Used program: DNA length 48, Type 1.
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Buffer Exchange and Concentration with Centrifugal Filter Units
1. Take one centrifugal filter unit, add the appropriate volume of buffer in
the filter device, and cap it. 2. Place capped filter device into the
centrifuge rotor, aligning the cap strap toward the center of the rotor;
counterbalance with a similar device. 3. Spin the device at 13,000 x g (or
14,000 x g) for the given time. 4. Remove the flow through and repeat steps
1-3. 5. Remove the assembled device from the centrifuge and separate the
filter device from the microcentrifuge tube. 6. To recover the conjugate,
place the filter device upside down in a clean centrifugal tube, aligning open
cap towards
the center of the rotor; counterbalance with a similar device. Spin for 2
minutes at 1,000 x g to transfer the sample from the device to the tube.
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Compatibility Sheet
Buffer additives
The conjugation of ligands with all available coupling kits can be performed with many different additives. The following list shows all tested ones, but please note that others not listed here may also be successfully used.
Additive EDTA
Up to 1 mM
Suitability Amine
Coupling
Suitability Thiol
Coupling
Useful Order Numbers
Table 3. Order Numbers Product Name heliX® Amine coupling kit 3 (low pI
biomolecules) heliX® Thiol coupling kit 1 Centrifugal filter unit (3 kDa MWCO)
Centrifugal filter unit (10 kDa MWCO) 10x Buffer A [1] 5x Buffer B [5] 1x
Buffer M [2]
Amount 5 conjugations 5 conjugations 5 pcs. 5 pcs. 50 mL (yielding 500 mL) 50 mL (yielding 250 mL) 50 mL
Order No HK-NHS-3 HK-MAL-1 CF-003-5 CF-010-5 BU-P-150-10 BU-P-1000-5 BU-M-150-1
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My Notes
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Contact
Dynamic Biosensors GmbH Perchtinger Str. 8/10 81379 Munich Germany
Dynamic Biosensors, Inc. 300 Trade Center, Suite 1400 Woburn, MA 01801 USA
Order Information order@dynamic-biosensors.com Technical Support support @dynamic-biosensors.com
www.dynamic-biosensors.com
Instruments and chips are engineered and manufactured in Germany. ©2024
Dynamic Biosensors GmbH | Dynamic Biosensors, Inc. All rights reserved.
[1] Buffer A: 50 mM Na2HPO4/NaH2PO4, 150 mM NaCl, pH 7.2 [2] Buffer M: 50 mM MES, 150 mM NaCl, pH 6.5 [3] Buffer PE40: 10 mM Na2HPO4/NaH2PO4, 40 mM NaCl, pH 7.4, 0.05 % Tween, 50 µM EDTA, 50 µM EGTA [4] For conjugation of proteins with a molecular weight higher than 20 kDa: Centrifugal filter units with a MWCO of 10 kDa can be ordered for a faster concentration process (Order No: CF-010-5). [5] Buffer B: 50 mM Na2HPO4/NaH2PO4, 1 M NaCl, pH 7.2
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References
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