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HNRNPF belongs to the subfamily of ubiquitously expressed heterogeneous nuclear ribonucleoproteins (hnRNPs). Additionally we are shipping HNRNPF Antibodies (71) and HNRNPF Kits (20) and many more products for this protein.
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Simulation results demonstrate that the RNA binding domain qRRM2 of hnRNP F binds strongly with G-tract RNA, but any mutation of the G-tract leads to a drastic reduction of the binding free energy.
Human T2D kidneys exhibited more RPTC apoptosis and lower expression of hnRNP F, SIRTUIN-1, an (show SIRT1 Proteins)d FOXO3alpha than nondiabetic kidneys.
hnRNP F is a co-factor in a subset of tristetraprolin (show ZFP36 Proteins)/BRF1 (show ZFP36L1 Proteins)/BRF2 (show ZFP36L2 Proteins)-mediated mRNA decay.
These data point to a functional interaction between hnRNP F and SRSF1 (show SRSF1 Proteins) as a mutant that eliminates SRSF1 (show SRSF1 Proteins) binding to exon 11, or a SRSF1 (show SRSF1 Proteins) knockdown, which prevents the stimulatory effect of hnRNP F over expression.
this result suggests that hnRNP F directs formation of the exo (show ENOX2 Proteins)n 4 minus variant of ENOX2.
The study shows solution structures of the three quasi-RNA-recognition motifs of heterogeneous nuclear ribonucleoprotein F in complex with G-tract RNA.
heterogeneous ribonucleoprotein F is involved in the regulation of cell proliferation via the mammalian target of rapamycin (show FRAP1 Proteins)/S6 kinase 2 (show RPS6KB2 Proteins) pathway
Results suggest that hnRNP H (show HNRNPH1 Proteins) and F are nuclear shuttling proteins whose posttranslational modifications may alter interaction with transportin 1 (show TNPO1 Proteins), nuclear localization, and hence function.
high levels of hnRNP F are present in premalignant and malignant stages of colorectal cancer, reflecting a role for this protein early in colorectal tumorigenesis
The solution structure of the three quasi RNA recognition motifs of hnRNP F and identification of the residues that are important for the interaction with the Bcl-x (show BCL2L1 Proteins) RNA.
hnRNP F protects kidneys against oxidative stress and nephropathy via stimulation of Sirtuin-1 (show SIRT1 Proteins) expression and signaling in diabetes.
the beneficial actions of insulin (show INS Proteins) in diabetic nephropathy appear to be mediated, in part, by suppressing renal Nrf2 (show NFE2L2 Proteins) and Agt (show AGXT Proteins) gene transcription and preventing Nrf2 (show NFE2L2 Proteins) stimulation of Agt (show AGXT Proteins) expression via hnRNP F/K.
These data demonstrate that hnRNP F stimulates Ace-2 (show ACE2 Proteins) gene transcription, prevents TGF-beta1 (show TGFB1 Proteins) inhibition of Ace-2 (show ACE2 Proteins) gene transcription and induction of kidney injury in diabetes.
genome wide analysis of splicing events and gene expression regulated by hnRNPH (show HNRNPH1 Proteins)/F in oligodendrocytes
These data suggest that hnRNP F plays a modulatory role and can ameliorate hypertension, renal hypertrophy, and interstitial fibrosis in diabetes.
The hnRNP F can function as repressors of MOR translation dependent on the M4 sequence.
define hnRNP F as a regulatory element of MBP (show MBP Proteins) expression in oligodendrocytes and imply an important function of hnRNP F in the control of myelin synthesis.
hnRNP F directs formation of the exon 4 minus variant of ENOX2 (show ENOX2 Proteins)
This gene belongs to the subfamily of ubiquitously expressed heterogeneous nuclear ribonucleoproteins (hnRNPs). The hnRNPs are RNA binding proteins that complex with heterogeneous nuclear RNA (hnRNA). These proteins are associated with pre-mRNAs in the nucleus and regulate alternative splicing, polyadenylation, and other aspects of mRNA metabolism and transport. While all of the hnRNPs are present in the nucleus, some seem to shuttle between the nucleus and the cytoplasm. The hnRNP proteins have distinct nucleic acid binding properties. The protein encoded by this gene has three repeats of quasi-RRM domains that bind to RNAs which have guanosine-rich sequences. This protein is very similar to the family member hnRPH. Multiple alternatively spliced variants, encoding the same protein, have been identified.
heterogeneous nuclear ribonucleoprotein F
, heterogeneous nuclear ribonucleoprotein F-like
, HnRNP F protein
, nucleolin-like protein mcs94-1
, hnRNP F
, ribonucleoprotein F