LIU Rui-xia, DIAO Zong-li, YIN Cheng-hong, et al. Effect and Role of Danqi Mixture on Signal Transduction of Smurf 2 in Renal Tissues of Diabetic Rats[J]. Chinese journal of experimental traditional medical formulae, 2013, 19(19): 208-212.
LIU Rui-xia, DIAO Zong-li, YIN Cheng-hong, et al. Effect and Role of Danqi Mixture on Signal Transduction of Smurf 2 in Renal Tissues of Diabetic Rats[J]. Chinese journal of experimental traditional medical formulae, 2013, 19(19): 208-212. DOI: 10.11653/syfj2013190208.
Objective: The effective ability of Danqi mixture to inhibit diabetic nephropathy (DN) has been attested in our previous studies.However
the underlying mechanism remains largely unknown.Smad ubiquitination regulatory factor-2 (Smurf 2) is an E3 ubiqutin ligase that plays a pivotal role in regulating transforming growth factor-β1 (TGF-β1) signaling via selectively targeting Ski related novel protein N (SnoN) for degradation. In this study
we investigated the effect of Danqi mixture on expression of Smurf 2
and discuss Danqi mixture's possible mechanism in rats with DN. Method: The rat model of diabetes was induced by tail vein injection of streptozotocin.The rats were divided into three groups:the normal group
the model group and the Danqi mixture group (1.8 g·kg-1·d-1).They were orally administered once a day for 12 weeks. Result: Smurf 2 was predominantly localized to the renal tubular epithelium and interstitium of the kidney
and Western blot analysis revealed that Smurf 2 was up-regulated specifically in renal tissues from the model rats
the Danqi mixture group was significantly reduce the protein levels of Smurf 2 compared to the model group.Interestingly
Danqi mixture was also able to down-regulate the TGF-β1 and phosphorylated Smad 2 (p-Smad 2)
and up-regulate Smad transcriptional corepressor SnoN
but not phosphorylated Smad 3 (p-Smad 3) in kidney. Conclusion: these results indicate that Danqi mixture can targets Smurf 2
maybe via TGF-β1/Smad 2 signaling
thereby providing the ubiquitination degradation of SnoN
so as to mitigate renal functional disorder in DN and delay its development.