MACS Matchmaker

Off-chip thiol DDI conjugation — protocol

The ThioLink DDI strategy couples the accessible cysteine of a VHH antibody to a maleimide-functionalized oligonucleotide off-chip with the Oligonucleotide Conjugation Kit, ThioLink, then hybridizes the resulting VHH–oligo conjugate to any Oligo|PEG chip via DNA-Directed Immobilization (DDI). Because only the accessible thiol reacts, orientation is more reproducible than random amine coupling. The kit is designed for His-tagged VHH antibodies: the free oligo is removed on a Ni-NTA column that retains the conjugate by its tag.

Before you start

  • Read Safety & Compliance and the safety data sheet for every reagent below. The SDS, not this page, governs how a reagent is handled, stored and disposed of.
  • Use the personal protective equipment and the waste route your laboratory prescribes for these reagent classes.
  • Check this protocol against the materials actually in hand: confirm the intended Seq ID, the product revision, the lot-specific certificate and the instructions supplied with it. Where those differ from this page, the documentation supplied with the material governs.

From the catalogue

Order the kit and the matching adapter from the lino Biotech webshop:

ItemContentsWebshop
Oligonucleotide Conjugation Kit, ThioLinkProtein Preparation Buffer, 10× reducing reagent, Ni-NTA column with elution buffer, two protein concentrators and collection tubes; one conjugation of 100 µg of VHH antibody in under 5 hView in shop
Oligo Adapter for Thiol KitLyophilised, 10 nmol; 5′-maleimide-modified ssDNA, one Seq ID (01–64) per vial; reconstitute at 100 µM; store at −20 °CView in shop
Spin Column, Amicon 10KSpare protein concentrator for the two buffer-exchange steps; two are included in the kitView in shop

Strategy: reduction then maleimide click

Conjugation proceeds in two reactions in solution, each followed by a clean-up, with the His-tag doing the work of separating conjugate from free oligo:

ridgegroovesubstrateSAnalyteLigandoligo-conjugated viathiolChip strandSeq ID 01–64
One layer fewer than the adapter protocols: the ligand carries the oligo itself, conjugated through a thiol, and hybridises straight onto the chip strand. Nothing sits between the ligand and the surface.
  1. Reduction. The kit's reducing reagent opens the accessible disulfide and frees the cysteine thiol.
  2. Removal of the reducing reagent. A buffer exchange on the protein concentrator takes the reductant out before the maleimide is added, so nothing competes with the cysteine.
  3. Maleimide-oligo click. The free thiol reacts with the maleimide-functionalized oligo to form a stable thioether bond.
  4. Removal of free oligo. The His-tagged conjugate binds the Ni-NTA column while free oligo washes through; imidazole elutes the conjugate.
  5. Removal of imidazole. A second buffer exchange on the protein concentrator leaves the conjugate in Protein Preparation Buffer at about 100 µM.

Protocol

Step 1 — Protein requirements

Start from 100 µg of VHH antibody at 1 mg/mL, free of carrier proteins with accessible thiols or disulfide bridges and free of thiol reductants. Mix by pipetting throughout: VHH antibodies may precipitate when vortexed or centrifuged at high speed.

Step 2 — Reduce the VHH antibody

Spin down the vial of 10× reducing reagent and add 450 µL Protein Preparation Buffer to it. Add 50 µL of the diluted reagent to the solution containing 100 µg of VHH antibody, mix by pipetting and incubate in a thermomixer at 25 °C and 500 rpm for 1 h.

Step 3 — Remove the reducing reagent

Wash a protein concentrator with 500 µL Protein Preparation Buffer at 14,000 × g for 10 min, with the cap strap and one membrane panel facing the centre of the rotor. Bring the reduced antibody to 450 µL with Protein Preparation Buffer, load it and spin at 14,000 × g for 10 min. Discard the flow-through, refill with 450 µL buffer and spin again; repeat the refill once more. Invert the concentrator into a fresh collection tube and spin at 1,000 × g for 2 min; about 50 µL at about 2 mg/mL is recovered.

Step 4 — Conjugate to the maleimide-oligo

Reconstitute the adapter at 100 µM in nuclease-free water, PBS or Protein Preparation Buffer. Add 300 µL of it to the reduced antibody and incubate in a thermomixer at 25 °C and 500 rpm for 1 h.

Step 5 — Remove free oligo on the Ni-NTA column

Remove the bottom closure of the Ni-NTA column and keep it; loosen the cap. In a 2 mL collection tube, spin at 700 × g for 2 min to remove the storage solution, then equilibrate with 400 µL Protein Preparation Buffer at 700 × g for 2 min, three times. Close the bottom, apply the conjugation mixture to the centre of the resin and incubate in a thermomixer at 25 °C and 500 rpm for 30 min. Remove the closure and spin at 700 × g for 2 min, then wash with 200 µL Protein Preparation Buffer at 700 × g for 2 min, five times in all. Move the column to a fresh collection tube and elute with 200 µL Ni-NTA Elution Buffer at 700 × g for 2 min, three times, combining the eluates (600 µL).

Step 6 — Remove imidazole

Wash the second protein concentrator with 500 µL Protein Preparation Buffer at 14,000 × g for 10 min. Load 300 µL of the eluate, spin at 14,000 × g for 10 min and discard the flow-through; load the remaining 300 µL and spin again. Refill with 450 µL Protein Preparation Buffer and spin at 14,000 × g for 10 min, twice. Invert into a fresh collection tube and spin at 1,000 × g for 2 min. About 50 µL of conjugate at about 1.5 mg/mL (100 µM) is recovered; roughly a quarter of the antibody is lost across the purification steps.

Aliquot and store at +4 °C for up to 3 months.

Step 7 — Hybridisation to chip and measurement

ParameterValue
Ligand concentration200 nM in PBST
Flow rate10 µL/min
Contact time5 min
TemperatureAmbient (the reader holds no fixed set point)
Chip typeOligo|PEG (any plex count)
SCK association flow rate30 µL/min (6-ch) / 60 µL/min (3–4-ch) / 100 µL/min (1-ch)
SCK dissociation flow rate200 µL/min
Regeneration (duplex strip)3 M GuHCl + 125 mM NaOH, 400 µL/min, 0.5 min

Reference protocol parameters

ParameterReference value
Protein input100 µg VHH antibody at 1 mg/mL, no thiol reductants
Reduction50 µL of 1× reducing reagent, 25 °C, 500 rpm, 1 h
Reductant removalProtein concentrator, 14,000 × g, 10 min, two buffer refills
Conjugation300 µL maleimide-oligo at 100 µM, 25 °C, 500 rpm, 1 h
Free-oligo removalNi-NTA column, 30 min binding, five 200 µL washes, three 200 µL imidazole elutions
Imidazole removalProtein concentrator, 14,000 × g, 10 min, two buffer refills
YieldAbout 50 µL at about 100 µM; about 25 % of the antibody lost
Storage of the conjugate+4 °C, up to 3 months
Hybridisation concentration200 nM
Hybridisation flow rate10 µL/min, 5 min
SCK association flow rate30 µL/min (6-ch) / 60 µL/min (3–4-ch) / 100 µL/min (1-ch)
SCK dissociation flow rate200 µL/min
Regeneration3 M GuHCl + 125 mM NaOH, 400 µL/min, 0.5 min

QC and acceptance

Two failures bracket this chemistry: too little reduction leaves no free thiol for the maleimide, and too much takes the ligand apart. Both are checked before coupling, not after.

  • Free thiol available. Quantify free thiols after reduction — Ellman's reagent (DTNB) against a cysteine standard is the usual assay — and compare the thiols per molecule with the number the construct should expose. A result near zero means the reduction did not work, or the thiols reoxidized before the assay.
  • Not over-reduced. A VHH has no interchain disulfides to shed, so over-reduction shows as lost activity rather than fragments: its single intradomain disulfide opens and the domain unfolds. The kit fixes the reduction step, so if activity is lost, look for extra reductant in the protein formulation rather than shortening the step.
  • Still active. A ligand can survive both checks and have lost its binding site to a reduced structural disulfide. Confirm activity against a known partner before committing chip time.

How many thiols a construct exposes under the kit's fixed reduction is construct-specific and is not validated here. Determine it once for your VHH.

Practical notes

See also: immobilization method comparison table.