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1.Zhao Y* & Yang Y*, Real-time and high-throughput analysis of mitochondrial metabolic states in living cells using genetically encoded NAD+/NADH sensors, Free Radic Biol Med, 2016,100: 43-52
2.Chen X, Li T, Wang X, Du Z, Liu R, and Yang Y*. Synthetic dual-input mammalian genetic circuits enable tunable and stringent transcription control by chemical and light. Nucleic Acids Res (2016) 44(6), 2677–2690
3.Zhao Y, Wang A, Zou Y, Su N, Loscalzo J, Yang Y*. In vivo monitoring of cellular energy metabolism using a highly responsive sensor for NAD+/NADH redox state. Nature Protocols (2016) 11(8), 1345-1359
4.Chen X, Li T, Liu R, Ma Z, Xu X, Zhang H, Xu J, Ouyang Q, Yang Y*. An extraordinary stringent and sensitive light switchable gene expression system for bacterial cells. Cell Research (2016) 26:854–857
5.Zhao, Y., Hu, Q., Cheng, F., Su, N., Wang, A., Zou, Y., Hu, H., Chen, X., Zhou, H.M., Huang, X., Yang, K., Zhu, Q., Wang, X., Yi, J., Zhu, L., Qian, X., Chen, L., Tang, Y., Loscalzo, J., and Yang, Y*. (2015). SoNar, a Highly Responsive NAD(+)/NADH Sensor, Allows High-Throughput Metabolic Screening of Anti-tumor Agents. Cell Metab 21: 777-789.
6.Oldham, W.M., Clish, C.B., Yang, Y., and Loscalzo, J. (2015). Hypoxia-Mediated Increases in l-2-hydroxyglutarate Coordinate the Metabolic Response to Reductive Stress. Cell Metab 22: 291-303.
7.Yang, H., Zhou, L., Shi, Q., Zhao, Y., Lin, H., Zhang, M., Zhao, S., Yang, Y., Ling, Z.Q., Guan, K.L., Xiong, Y., and Ye, D. (2015). SIRT3-dependent GOT2 acetylation status affects the malate-aspartate NADH shuttle activity and pancreatic tumor growth. EMBO J 34: 1110-1125.
8.Zhao, Y., and Yang, Y. * (2015). Profiling metabolic states with genetically encoded fluorescent biosensors for NADH. Curr Opin Biotechnol 31: 86-92.
9.Huang, C., Jia, T., Tang, M., Yin, Q., Zhu, W., Zhang, C., Yang, Y., Jia, N., Xu, Y., and Qian, X. (2014). Selective and Ratiometric Fluorescent Trapping and Quantification of Protein Vicinal Dithiols and in Situ Dynamic Tracing in Living Cells. J Am Chem Soc 136: 14237-14244
10.Wang, Y.P., Zhou, L.S., Zhao, Y.Z., Wang, S.W., Chen, L.L., Liu, L.X., Ling, Z.Q., Hu, F.J., Sun, Y.P., Zhang, J.Y., Yang, C., Yang, Y., Xiong, Y., Guan, K.L., and Ye, D. (2014). Regulation of G6PD acetylation by SIRT2 and KAT9 modulates NADPH homeostasis and cell survival during oxidative stress. EMBO J 33: 1304-1320.
11.Wang, X., Chen, X., and Yang, Y. * (2012). Spatiotemporal control of gene expression by a light-switchable transgene system. Nat Methods 9: 266-269.
12.Huang, C., Yin, Q., Zhu, W. *, Yang, Y. *, Wang, X., Qian, X., and Xu, Y. * (2011). Highly Selective Fluorescent Probe for Vicinal-Dithiol-Containing Proteins and In Situ Imaging in Living Cells. Angew Chem Int Ed Engl 123: 7693-7698.
13.Zhao, Y., Jin, J., Hu, Q., Zhou, H.M., Yi, J., Yu, Z., Xu, L., Wang, X., Yang, Y. *, and Loscalzo, J. (2011). Genetically Encoded Fluorescent Sensors for Intracellular NADH Detection. Cell Metab 14: 555-566.
14.Yang, Y., Song, Y., and Loscalzo, J. (2007). Regulation of the protein disulfide proteome by mitochondria in mammalian cells. Proc Natl Acad Sci U S A 104: 10813-10817.
15.Yang, Y., and Loscalzo, J. (2005). S-nitrosoprotein formation and localization in endothelial cells. Proc Natl Acad Sci U S A 102: 117-122.
16.Yang, Y., Maret, W., and Vallee, B.L. (2001). Differential fluorescence labeling of cysteinyl clusters uncovers high tissue levels of thionein. Proc Natl Acad Sci U S A 98: 5556-5559.