AKR1B1 | bioCADDIE Data Discovery Index
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Displaying 20 of 2,326 results for "AKR1B1"
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  1. HUMAN ALDOSE REDUCTASE IN COMPLEX WITH NADP AND CITRATE AT 0.82 ANGSTROM PDB

    ID: PDB:2J8T

    Description: ALDO-KETO REDUCTASE FAMILY 1, MEMBER...

  2. Crystal Structure Of Aldose Reductase (AKR1B1) Complexed With NADP+ And Epalrestat PDB

    ID: PDB:4JIR

    Description: Aldose reductase (E.C.1.1.1.21)

  3. Crystal structure of human AR complexed with NADP+ and AK198 PDB

    ID: PDB:4QXI

    Description: Aldose reductase (E.C.1.1.1.21)

  4. Crystal structure of human AR complexed with NADP+ and {5-chloro-2-[(2-fluoro-4-iodobenzyl)carbamoyl]phenoxy}acetic acid PDB

    ID: PDB:4LB3

    Description: Aldose reductase (E.C.1.1.1.21)

  5. Crystal structure of human AR complexed with NADP+ and {5-chloro-2-[(4-iodobenzyl)carbamoyl]phenoxy}acetic acid PDB

    ID: PDB:4LAZ

    Description: Aldose reductase (E.C.1.1.1.21)

  6. Crystal structure of human AR complexed with NADP+ and {2-[(4-bromo-2,6-difluorobenzyl)carbamoyl]-5-chlorophenoxy}acetic acid PDB

    ID: PDB:4LBS

    Description: Aldose reductase (E.C.1.1.1.21)

  7. Crystal structure of human AR complexed with NADP+ and {2-[(4-bromo-2,3,5,6-tetrafluorobenzyl)carbamoyl]-5-chlorophenoxy}acetic acid PDB

    ID: PDB:4LB4

    Description: Aldose reductase (E.C.1.1.1.21)

  8. Crystal structure of human AR complexed with NADP+ and {5-chloro-2-[(2,6-difluoro-4-iodobenzyl)carbamoyl]phenoxy}acetic acid PDB

    ID: PDB:4LBR

    Description: Aldose reductase (E.C.1.1.1.21)

  9. Crystal structure of human AR complexed with NADP+ and {2-[(4-bromobenzyl)carbamoyl]-5-chlorophenoxy}acetic acid PDB

    ID: PDB:4LAU

    Description: Aldose reductase (E.C.1.1.1.21)

  10. Apo R268A human aldose reductase PDB

    ID: PDB:1XGD

    Description: Aldose reductase (E.C.1.1.1.21)

  11. ALDR_RABIT UniProt:Swiss-Prot

    ID: P15122

    Description: Removed Aldose reductase NADP NADP Proton donor Substrate Lowers pKa of active site Tyr N-acetylalanine N6-acetyllysine ...

  12. ALDR_BOVIN UniProt:Swiss-Prot

    ID: P16116

    Description: Aldose reductase NADP NADP Proton donor Substrate Lowers pKa of active site Tyr N-acetylalanine N6-acetyllysine ...

  13. AR-1-26-04-A NeuroMorpho.Org

    Type: image

    ID: 36202

  14. AR-1-20-04-A NeuroMorpho.Org

    Type: image

    ID: 36199

  15. Studies on α-glucosidase, aldose reductase and glycation inhibitory properties of sesquiterpenes and flavonoids of Zingiber zerumbet Smith Figshare

    ID: doi:10.6084/M9.FIGSHARE.1165458

    Release Date: 03-10-2016

    Description:

  16. AR-3-15-04-A NeuroMorpho.Org

    Type: image

    ID: 36203

  17. Transcriptomic differences in bovine blastocysts following vitrification and slow freezing at morula stage [EmbryocryovitSF] BioProject

    ID: PRJNA376830

    Keywords: Transcriptome or Gene expression

    Access Type: download

    dataset.description: ), lipid peroxidation and ROS generation (HSD3B1, AKR1B1, APOA1) and cell differentiation (KRT19, CLDN23). The slow frozen embryos, however, showed significant changes in the expression of genes related to cell signaling (SPP1), cell structure and differentiation (DCLK2, JAM2 and VIM), and lipid metabolism (PLA2R1 and SMPD3). In silico comparison between vitrified and slow-frozen (reference) embryos revealed similar changes in gene expression as between vitrified and untreated embryos. In conclusion, the vitrified bovine embryos demonstrated better post-warming embryo development than slow-frozen bovine embryos but their gene expression related to lipid metabolism, steroidogenesis, cell differentiation and placentation changed significantly. Slow freezing killed more embryos than vitrification, and the survived embryos did not express significant change in their gene expression. Overall design: Vitrification intensities compared with Slow freezing of bovine embryos...
  18. Analysis of the gene expression pattern of bovine blastocysts at three stages of development ArrayExpress

    ID: E-GEOD-25606

    Description: bridization. Gene candidates (IFNt, PLAC8, SSLP1, AKR1B1, HNRNPA2B1, ARGFX, NANOS, CCNB1) were selected and confirmed using Q-RT-PCR to validate the microarray data. Results: Our analysis show that hatched blastocysts are enriched in genes transcripts implicated in implantation, cell adhesion and extracellular matrix digestion. Early blastocysts expressed genes mainly involved in cell cycle control, transcription and translation. Q-RT-PCR validated most microarray results (87.5%). Some of the differentially expressed genes are interesting as potential markers of competence. Conclusions: Overall, our study provides new insights into the molecular regulation of blastocyst formation. In addition, it could help assess blastocyst staging and select better embryos based on the expression of quality markers. In the present study the Laval/Sirard_bovine_embryo_3K_V3.0 array was used to conduct a series of 18 hybridizations (for three Blastocysts stages (early, expended, hatched) with three biological replicates and dye swaps) in a loop design experiment....

  19. Human Aldose Reductase complexed with Schl7764 at 1.12 A PDB

    ID: PDB:4NKC

    Description: Aldose reductase (E.C.1.1.1.21)

  20. Human Aldose Reductase complexed with Schl12221 ({2-[5-(3-NITROPHENYL)FURAN-2-YL]PHENYL}ACETIC ACID) at 0.96 A PDB

    ID: PDB:4PRT

    Description: Aldose reductase (E.C.1.1.1.21)


Displaying 20 of 2,326 results for "AKR1B1"