Lilei Zhang Lab

Zhang Lab Publications

Master
Content

Zhang L. Jain MK. Circadian regulation of cardiac metabolism. JCI. 2021 Aug 2.

Xu W, Jain MK, Zhang L. Molecular link between circadian clocks and cardiac function: a network of core clock, slave clock, and effectors. Curr Opin Pharmacol. 2020 Nov 12;57:28-40.

Xu W, Li L, Zhang L. NAD+ Metabolism as an Emerging Therapeutic Target for Cardiovascular Diseases Associated with Sudden Cardiac Death. Front. Physiol.13 August 2020.

Li L, Li H, Tien CL, Jain MK, Zhang L. Kruppel-Like Factor 15 Regulates the Circadian Susceptibility to Ischemia Reperfusion Injury in the Heart. Circulation. 20202020 Apr 28;141(17):1427-1429. doi: 10.1161/CIRCULATIONAHA.119.041664. Epub 2020 Apr 27.

Zhang R, Shen Y, Zhou L, Sangwung P, Fujioka H, Zhang L, Liao X. Short-term administration of Nicotinamide Mononucleotide preserves cardiac mitochondrial homeostasis and prevents heart failure. J Mol Cell Cardiol. 2017 Nov;112:64-73. doi: 10.1016/j.yjmcc.2017.09.001. Epub 2017 Sep 5.

Zhang L, Zhang R, Tien CL, Chan RE, Sugi K, Fu C, Griffin AC, Shen Y, Burris TP, Liao X, Jain MK. REV-ERBα ameliorates heart failure through transcription repression. JCI Insight. 2017 Sep 7;2(17). pii: 95177. doi: 10.1172/jci.insight.95177.

Hsieh PN, Zhang L, Jain MK. Coordination of cardiac rhythmic output and circadian metabolic regulation in the heart. Cell Mol Life Sci. 2017 Aug 21. doi: 10.1007/s00018-017-2606-x.

Shen Y, Hong H, Sangwung P, Lapping S, Nayak L, Zhang L, Jain MK and Liao X. Kruppel-like factor 4 regulates neutrophil activation. Blood Advances. 2017 1:662-668. Doi: https://doi.org/10.1182/bloodadvances.2017004341.

Zhang L, Jain MK. Beating against the clock. PNAS. 2016 Mar 8;113(10):2558-9. doi: 10.1073/pnas.1601161113. Epub 2016 Feb 23.

Zhang L, Prosdocimo DA, Bai X, Campbell F, Liao X, Coller J, Jain MK. KLF15 Establishes the Landscape of Circadian Expression in the Heart. Cell Reports. 2015;13(11):2368-75

Zhang L, Wang T, Valle D. Reduced PLP2 expression increases ER stress-induced neuronal apoptosis and risk for adverse neurological outcomes after hypoxia ischemia injury. Hum Mol.Genet. 2015 Oct 28. pii: ddv422.

Han S, Zhang R, Jain R, Shi H, Zhang L, Zhou G, Sangwung S, Tugal D, Nayak N, Atkins B, Prosdocimo DA, Lu Y, Liao X, Epstein JA, Jain MK. Circadian Control of Bile Acid Synthesis by a KLF15-FGF15 axis. Nat Communications. 2015 Jun 4;6:7231.

Liao X, Zhang R, Lu Y, Prosdocimo DA, Sangwung P, Zhang L, Zhou G, Anand P, Lai L, LeoneTC, Fujioka H, Ye F, Rosca MG, Hoppel CL, Schulze PC, Abel ED, Stamler JS, Kelly DP, Jain MK. Kruppel-like factor 4 is critical for transcriptional control of cardiac mitochondrial homeostasis. JCI. 2015; 125(9):3461-76.

Prosdocimo, DA, John JE, Zhang L, Zhang R, Liao X, Jain MK. KLF15 and PPAR Cooperate to Regulate Cardiac Lipid Gene Expression. PPAR Res. 2015;2015:201625.

Liu Y, Pham X, Zhang L, Chen PL, Burzynski G, McGaughey DM, He S, McGrath JA, Wolyniec P, Fallin MD, Pierce MS, McCallion AS, Pulver AE, Avramopoulos D, Valle D. Functional Variants in DPYSL2 Sequence Increase Schizophrenia Risk and Suggest a Link to mTOR Signaling.G3 (Bethesda). 2014 Nov 20;5(1):61-72.

Zhang L, Sabeh MK, Jain MK. Circadian rhythm and cardiovascular disorders. Chronophysiology and Therapy. July 2014 2014(4):27-40.

Prosdocimo DA, Anand P, Liao X, Zhu H, Shelkay S, Artero-Calderon P, Zhang L, Kirsh J, Moore D, Rosca MG, Vazquez E, Kerner J, Akat KM, Williams Z, Zhao J, Fujioka H, Tuschl T, Bai X, Schulze CP, Hoppel CL, Jain MK, Haldar SM. KLF15 Regulates Cardiac Metabolism and the Adaptive Response to Starvation. J Biol Chem. 2014 Feb 28;289(9):5914-24.

Talkowski ME, Mullegama SV, Rosenfeld JA, van Bon BW, Shen Y, Repnikova EA, Gastier-Foster J, Thrush DL, Kathiresan S, Ruderfer DM, Chiang C, Hanscom C, Ernst C, Lindgren AM, Morton CC, An Y, Astbury C, Brueton LA, Lichtenbelt KD, Ades LC, Fichera M, Romano C, Innis JW, Williams CA, Bartholomew D, Van Allen MI, Parikh A, Zhang L, Wu BL, Pyatt RE, Schwartz S, Shaffer LG, de Vries BB, Gusella JF, Elsea SH. Assessment of 2q23.1 microdeletion syndrome implicates MBD5 as a single causal locus of intellectual disability, epilepsy, and autism spectrum disorder. Am J Hum Genet. 2011 Oct 7;89(4):551-63.

Wu Y, Arai AC, Rumbaugh G, Srivastava AK, Turner G, Hayashi T, Suzuki E, Jiang Y, Zhang L, Rodriguez J, Boyle J, Tarpey P, Raymond FL, Nevelsteen J, Froyen G, Stratton M, Futreal A, Gecz J, Schwartz CE, Valle D, Wang T. Mutations in Ionotropic AMPA Receptor 3 (iGluR3) Alter Channel Properties. PNAS. 2007 Nov 13;104(46):18163-8. Epub 2007 Nov 7.

Zhang L, Jie C, Obie C, Schwartz C, Valle D, Wang T. X-chromosome cDNA microarray screening identifies a functional PLP2 promoter polymorphism enriched in patients with XLMR. Genome Res. 2007, May; 17(5):641-648.

Zhang L, Wang T, Wright AF, Suri M, Schwartz CE, Stevenson RE, Valle D. A microdeletion in Xp11.3 accounts for co-segregation of retinitis pigmentosa and mental retardation in a large kindred. Am J Med Genet A. 2006, Feb; 140(4):349-357.

Xu S, Wang Y, Zhao H, Zhang L, Xiong W, Yau KW, Hiel H, Glowatzki E, Ryugo, DK, Valle D. PHR1, a PH domain-containing protein expressed in primary sensory neurons. Mol Cell Biol. 2004, Oct; 24(20):9137-9151.