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Effects of Herb-Partitioned Moxibustion on the miRNA Expression Profiles in Colon from Rats with DSS-Induced Ulcerative Colitis

, Yan Huang, Hong-sheng Dong, Ji-meng Zhao, and Chuan-zi Dou established the animal model and performed the molecular experiments. Yan Huang, Zhe Ma, Yun-hua Cui, and Hui-rong Liu analyzed the data. Yan

Effects of Herb-Partitioned Moxibustion on the miRNA Expression Profiles in Colon from Rats with DSS-Induced Ulcerative Colitis

, Yan Huang, Hong-sheng Dong, Ji-meng Zhao, and Chuan-zi Dou established the animal model and performed the molecular experiments. Yan Huang, Zhe Ma, Yun-hua Cui, and Hui-rong Liu analyzed the data. Yan

Effects of Herb-Partitioned Moxibustion on the miRNA Expression Profiles in Colon from Rats with DSS-Induced Ulcerative Colitis

, Yan Huang, Hong-sheng Dong, Ji-meng Zhao, and Chuan-zi Dou established the animal model and performed the molecular experiments. Yan Huang, Zhe Ma, Yun-hua Cui, and Hui-rong Liu analyzed the data. Yan

NERF encodes a RING E3 ligase important for drought resistance and enhances the expression of its antisense gene NFYA5 in Arabidopsis

NFYA5 is an important drought-stress inducible transcription factor gene that is targeted by miR169 in Arabidopsis. We show here that the cis-natural antisense transcript gene of NFYA5, NFYA5 Enhancing RING FINGER (NERF), can produce siRNAs from their overlapping region (OR) and affect NFYA5 transcripts by functioning together with miR169. The NERF protein functions as an E3...

Comparison of Electroacupuncture and Moxibustion for Relieving Visceral Hypersensitivity in Rats with Constipation-Predominant Irritable Bowel Syndrome

Acupuncture-Moxibustion and Meridian, Shanghai 200030, China Received 1 April 2016; Accepted 11 August 2016 Academic Editor: Hyunsu Bae Copyright © 2016 Ji-Meng Zhao et al. This is an open access article

Base-resolution methylation patterns accurately predict transcription factor bindings in vivo

Detecting in vivo transcription factor (TF) binding is important for understanding gene regulatory circuitries. ChIP-seq is a powerful technique to empirically define TF binding in vivo. However, the multitude of distinct TFs makes genome-wide profiling for them all labor-intensive and costly. Algorithms for in silico prediction of TF binding have been developed, based mostly on...