Product Details
Product Details
Product Specification
| Host | Human |
| Stability & Storage | -80℃ |
Background
The kit is based on homogeneous time-resolved fluorescence technology (TR-FRET) technology,which is used to assess the molecular-mediated interaction between the DDB1/CRBN complex and NEK7. This method provides a high-throughput approach to detect the small molecules capable of mediating the interaction between the DDB1/CRBN complex and NEK7 simply and rapidly .
As shown in the figure below, the interaction between DDB1/CRBN and NEK7 was detected by an Eu-labeled anti-Tag1 antibody (TR-FRET donor) and an Ac-labeled anti-Tag2 antibody (TR-FRET receptor). Since the molecular adhesive NK7-902 diTFA mediates the interaction between DDB1/CRBN and NEK7, the donor antibody is in close proximity to the receptor antibody. Excitation of the donor antibody triggers fluorescence resonance energy transfer (FRET) to the receptor antibody, resulting in specific emission of a signal at a wavelength of 665 nm from the receptor antibody. This specific signal is proportional to the degree of interaction between NK7-902 diTFA, DDB1/CRBN and NEK7. This homogeneous assay is simple to perform and requires no washing steps.

Components
Composition |
concentration |
100T |
500T |
2500T |
10000T |
Storage |
Tag1-CRBN protein |
100× |
5μL |
20μL |
100μL |
400μL |
-80℃ |
Tag2-NEK7 protein |
100× |
5μL |
20μL |
100μL |
400μL |
-80℃ |
NK7-902 diTFA |
500 μM |
5μL |
10μL |
50μL |
200μL |
-80℃ |
Anti-Tag1 Eu antibody |
100× |
5μL |
25μL |
125μL |
500μL |
-80℃ |
Anti-Tag2 Ac antibody |
200× |
5μL |
13μL |
63μL |
250μL |
-80℃ |
Detection buffer |
10× |
400μL |
2mL |
10mL |
40mL |
-80℃ |
Protocol
```html
【Process and Operations】
1、Reagent Preparation
1.1 Compositions equilibration
Before use, dissolve all reagents at room temperature (allow at least 30 minutes for temperature equilibration). For the 384-well plate assay, use 20 μL of reaction mixture (the reagent quantities are listed in the table below). Calculate the required volume prior to preparation accordingly. The following preparation steps are provided for reference only, using a 500-well plate as an example.
Table 1. Reagent Preparation
Composition |
Preparation |
μL/well |
Detection buffer |
Add 2 mL of 10× Detection buffer to 18 mL of deionized water, dilute to 1× Detection , and mix thoroughly for later use. |
- |
Tag1-CRBN protein |
Take 20 μL of the 100× Tag1-CRBN protein stock solution, add 1.98 mL of 1× Detection buffer to dilute it to 1× concentration, and mix thoroughly for later use. |
4 |
Tag2-NEK7 protein |
Take 20 μL of 100× Tag2-NEK7 protein, add it to 1.98 mL of 1× Detection buffer to dilute to 1× concentration, and mix thoroughly for later use. |
4 |
Antibody Mix |
Take 25 μL of the 100× Eu-anti-Tag1 stock solution, add 2475 μL of 1× Detection buffer to dilute to 2.5 mL, and mix thoroughly; take 13 μL of the 200× Ac-anti-Tag2 stock solution, add 2587 μL of 1× Detection buffer to dilute to 2.6 mL, and mix thoroughly; combine the two solutions in a 1:1 ratio to obtain the Antibody Mix. |
10 |
1.2 Gradient dilution of the sample
NK7-902 diTFA as an example, the dilution solution is 1× Detection buffer. To minimize interference from matrix effects, it is recommended to use a solution with the same matrix composition as the sample being tested; additionally, the sample concentration should be adjusted according to its actual situation.
Table 2. NK7-902 diTFA gradient dilution(Adjust according to the actual situation)
|
NK7-902 diTFA final concentration(nM) |
NK7-902 diTFA preparation concentration(nM) |
Dilution |
① |
500.00 |
5000.00 |
1μL 500 μM NK7-902 diTFA +99μL 1× Detection buffer |
② |
250.00 |
2500.00 |
40μL ① +40μL 1× Detection buffer |
③ |
125.00 |
1250.00 |
40μL ② +40μL 1× Detection buffer |
④ |
62.50 |
625.00 |
40μL ③ +40μL 1× Detection buffer |
⑤ |
31.25 |
312.50 |
40μL ④ +40μL 1× Detection buffer |
⑥ |
15.63 |
156.25 |
40μL ⑤ +40μL 1× Detection buffer |
⑦ |
7.81 |
78.13 |
40μL ⑥ +40μL 1× Detection buffer |
⑧ |
3.91 |
39.06 |
40μL ⑦+40μL 1× Detection buffer |
⑨ |
1.95 |
19.53 |
40μL ⑧+40μL 1× Detection buffer |
⑩ |
0.98 |
9.77 |
40μL ⑨+40μL 1× Detection buffer |
⑪ |
0.49 |
4.88 |
40μL ⑩+40μL 1× Detection buffer |
Blank |
0 |
0 |
40μL 1× Detection buffer |
2、Sample and control
2.1 Sample:Add 4 μL of Tag1-CRBN protein working solution, 4 μL of Tag2-NEK7 protein working solution, 2 μL of the gradient-diluted sample , and 10 μL of the mixed Antibody Mix sequentially into the 384-well plate.
2.2 NK7-902 diTFA: 4 μL of Tag1-CRBN protein working solution, 4 μL of Tag2-NEK7 protein working solution, 2 μL of gradient-diluted NK7-902 diTFA, and 10 μL of the mixed Antibody Mix sequentially into the 384-well plate.
2.3 Blank:4 μL of Tag1-CRBN protein working solution, 4 μL of Tag2-NEK7 protein working solution, 2 μL of Detection buffer, and 10 μL of the mixed Antibody Mix sequentially into the 384-well plate.
2.3 Negative control: 10μL Detection buffer, and 10 μL of the mixed Antibody Mix sequentially into the 384-well plate.
After adding all samples, centrifuge, seal with a cover membrane, and incubate at room temperature for 2 hours.
Table 3. Sample and control spotting process
NK7-902 diTFA |
Sample |
Blank |
Negative control(NC) |
|
2μL gradient-diluted NK7-902 diTFA |
2μL gradient-diluted sample |
2μL 1× Detection buffer |
10μL 1× Detection buffer and 10μL Antibody Mix |
4μL Tag1-CRBN protein | |||
4μL Tag2-NEK7 protein | |||
10μL Antibody Mix | |||
Seal the plate wells with a sealing film and incubate at room temperature for 2 hours. | |||
3、Read Data
The detection was performed on a TR-FRET microplate reader. The excitation wavelength was 320/340 nm, and the emission wavelengths at 620 nm and 665 nm were detected.
【DATA REDUCTION 】
1) Ratio:
Ratio = (665/620) ×10000
2) Net signal:
Net signal = (Std-NC)/NC×100
Std:the ratio of sample and control
NC: the ratio of negative control
3) CV(%):
CV(%)= Standard Deviation/Mean Ratio × 100%
【Data Example】
The following data cannot replace experimental results obtained in experiments; they are provided solely for illustrative purposes, and outcomes may vary depending on the plate reader used.

Note: Recommended microplate (384-well plate, white, shallow wells).
```