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DJ-1 interacting proteins analyzed by tandem affinity purification mass spectrometry / 中国医师杂志
Journal of Chinese Physician ; (12): 1472-1476, 2021.
Article in Chinese | WPRIM | ID: wpr-909727
ABSTRACT

Objective:

RNA interference technology (siRNA) was used to inhibit the expression of DJ-1 gene in lung squamous cell carcinoma HTB-182 cells, then, tandem affinity purification mass spectrometry (TAP-MS) was performed to screen the interacting proteins of DJ-1 in lung cancer cell line of HTB-182.

Methods:

The siRNA lentivirus vector targeting DJ-1 gene was constructed to infect HTB-182 cells (DJ-1 siRNA group), and the lentivirus vector control group (control siRNA group) and blank control group were established. The expression level of DJ-1 protein was detected by Western blot, and the endogenous DJ-1 protein silenced si-DJ-1-HTB-182 cells were established. The specific primers of DJ-1 were designed, and the DJ-1 expression plasmid pNTAP-DJ-1 with streptomycin binding peptide label (SBP) and calmodulin binding peptide label (CBP) was constructed. The cell line DJ-1 siRNA HTB-182 was stably transfected with liposome, and the positive clones were screened by G418. The positive clones were verified by Western blot, and the interacting proteins of DJ-1 were found by TAP-MS.

Results:

The protein expression of DJ-1 in DJ-1 siRNA interference group was significantly lower than that in empty plasmid group and blank control group ( P<0.05); HTB182 cell line stably expressing pNTAP-DJ-1 plasmid was successfully constructed; Three proteins interacting with DJ-1 were screened by TAP-MS cytokeratin 1 (keratin 1), cytokeratin 10 (keratin 10) and NADPH oxidase activating protein P47 (P47 Px).

Conclusions:

Keratin 1, Keratin l0 and P47 Px protein may be DJ-1 interactions protein.

Full text: Available Index: WPRIM (Western Pacific) Language: Chinese Journal: Journal of Chinese Physician Year: 2021 Type: Article

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Full text: Available Index: WPRIM (Western Pacific) Language: Chinese Journal: Journal of Chinese Physician Year: 2021 Type: Article