©The Author(s) 2023.
World J Diabetes. Aug 15, 2023; 14(8): 1234-1248
Published online Aug 15, 2023. doi: 10.4239/wjd.v14.i8.1234
Published online Aug 15, 2023. doi: 10.4239/wjd.v14.i8.1234
Table 4 Identification of mRNAs that may bind to miR-503 by sequencing results combined with the miRDB database
| No. | Gene_id |
| 1 | SLC12A1 |
| 2 | SIRT4 |
| 3 | MLYCD |
| 4 | FBXL22 |
| 5 | CCND1 |
| 6 | MAP2K1 |
| 7 | PCP4 |
| 8 | RPS6KA3 |
| 9 | EMC6 |
| 10 | PPFIA3 |
| 11 | TTC17 |
| 12 | RAB11FIP1 |
| 13 | GALNT2 |
| 14 | NCS1 |
| 15 | APLN |
| 16 | CEP85L |
| 17 | CLSTN1 |
| 18 | KIF1C |
| 19 | PIGQ |
| 20 | BTRC |
| 21 | LOC691995 |
| 22 | EGLN3 |
| 23 | NABP1 |
- Citation: Su BL, Wang LL, Zhang LY, Zhang S, Li Q, Chen GY. Potential role of microRNA-503 in Icariin-mediated prevention of high glucose-induced endoplasmic reticulum stress. World J Diabetes 2023; 14(8): 1234-1248
- URL: https://www.wjgnet.com/1948-9358/full/v14/i8/1234.htm
- DOI: https://dx.doi.org/10.4239/wjd.v14.i8.1234