| Literature DB >> 27879754 |
Hijiri Hasegawa1, Ken-Ichi Taira1, Koji Sode2, Kazunori Ikebukuro3.
Abstract
To increase the affinities of aptamers for their targets, we designed an aptamerdimer for thrombin and VEGF. This design is based on the avidity of the antibody, whichenables the aptamer to connect easily since it is a single-strand nucleic acid. In this study,we connected a 15-mer thrombin-binding aptamer with a 29-mer thrombin-binding aptamer.Each aptamer recognizes a different part of the thrombin molecule, and the aptamer dimerhas a Kd value which is 1/10 of that of the monomers from which it is composed. Also, thedesigned aptamer dimer has higher inhibitory activity than the reported (15-mer) thrombin-inhibiting aptamer. Additionally, we connected together two identical aptamers againstvascular endothelial growth factor (VEGF165), which is a homodimeric protein. As in thecase of the anti-thrombin aptamer, the dimeric anti-VEGF aptamer had a much lower Kd value than that of the monomer. This study demonstrated that the dimerization of aptamerseffectively improves the affinities of those aptamers for their targets.Entities:
Keywords: Aptamer; avidity; dimerization
Year: 2008 PMID: 27879754 PMCID: PMC3927496 DOI: 10.3390/s8021090
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.576
The sequences of aptamers and aptamer dimmers.
| aptamers | Sequences (5'-3') |
|---|---|
| 15-mer |
|
| 29-mei |
|
| Linker 0 |
|
| Linker 5 |
|
| Linker 10 |
|
| Linker 20 |
|
| VEa5 |
|
| VEa5-VEa5 | [VEa5]--------------------[VEa5] |
| VEa5-T10-VEa5 | [VEa5]-----
|
| VEa5-T20-VEa5 | [VEa5]
|
| del5-1 |
|
| del5-1-del5-1 | [del5-1]--------------------[del5-1] |
| del5-1-T10-del5-1 | [del5-1]-----
|
| del5-1-T20-del5-1 | [del5-1]
|
Figure 1.The linked thrombin-binding aptamer.
Figure 2.A sensorgram of the linked aptamer (10-linker), as determined by SPR. Thrombin (30, 50, 100, 150 nM) was injected onto the linked aptamer-immobilized SA chip under running buffer at a flow rate of 20 μl/min.
The binding parameters of thrombin-binding aptamers investigated by BIA evaluation 3.1.
| 15-mer | 1.89 × 105 | 3.83× 10-3 | 20.2 | |||
| 29-mer | 4.40 × 10s | 1.54 × 10-3 | 3.5 | |||
| Linker 0 | 5.96 × 104 | 5.80 × 104 | 8.57 × 10-6 | 8.62 × 10-6 | 0.14 | 0.15 |
| Linker 5 | 4.89 × 105 | 6.11 × 104 | 2.91 × 10-6 | 1.54 × 10-5 | 0.06 | 0.25 |
| Linker 10 | 5.51 × 104 | 3.69 × 105 | 4.09 × 10-5 | 1.91 × 10-4 | 0.74 | 0.52 |
| Linker 20 | 4.91 × 104 | 5.02 × 104 | 1.74 × 10-5 | 1.76 × 10-5 | 0.35 | 0.35 |
Figure 3.The inhibitory activity of the linked aptamer for thrombin. We compared it with the inhibitory activity of the 15-mer thrombin-inhibiting aptamer. After the aptamer (1 μM) and thrombin (54 nM) were incubated for 5 min at 37 °C, we added fibrinogen (2 mg/ml) and measured the clotting time.
Figure 4.The equilibrium responses are plotted as a function of the aptamer concentration. VEGF165 was immobilized on a sensor chip and aptamers were injected for the SPR measurement. (A) VEa5, (B) del5-1, (C) VEa5-VEa5, (D) del5-1-del5-1 were assayed.
The dissociation constants of VEGF-binding aptamers calculated by scachard plots.
| Aptamers | kd (nM) |
|---|---|
| VEa5 | 116.28 |
| VEa5-VEa5 | 6.24 |
| del5-1 | 476.19 |
| del5-1-del5-1 | 17.15 |