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Wilson KM, Muralidharan B, Isaacs AM.  2019.  Relax, Don't RAN Translate It.. Neuron. 104(5):827-829. DOI:10.1016/j.neuron.2019.11.014.
Wiley CD, Sharma R, Davis SS, Lopez-Dominguez JAlberto, Mitchell KP, Wiley S, Alimirah F, Kim DEun, Payne T, Rosko A, Aimontche E, Deshpande SM, Neri F, Kuehnemann C, Demaria M, Ramanathan A, Campisi J.  2021.  Oxylipin biosynthesis reinforces cellular senescence and allows detection of senolysis.. Cell Metab. DOI:10.1016/j.cmet.2021.03.008.
Wiley CD, Brumwell AN, Davis SS, Jackson JR, Valdovinos A, Calhoun C, Alimirah F, Castellanos CA, Ruan R, Wei Y, Chapman HA, Ramanathan A, Campisi J, Le Saux CJourdan.  2019.  Secretion of leukotrienes by senescent lung fibroblasts promotes pulmonary fibrosis.. JCI Insight. 4(24) DOI:10.1172/jci.insight.130056.
Wang J, Fu Y, Huang W, Biswas R, Banerjee A, Broussard JA, Zhao Z, Wang D, Bjerke G, Raghavan S, Yan J, Green KJ, Yi R.  2023.  MicroRNA-205 promotes hair regeneration by modulating mechanical properties of hair follicle stem cells.. Proc Natl Acad Sci U S A. 120(22):e2220635120. DOI:10.1073/pnas.2220635120.
Walvekar AS, Srinivasan R, Gupta R, Laxman S.  2018.  Methionine coordinates a hierarchically organized anabolic program enabling proliferation.. Mol Biol Cell. :mbcE18080515. DOI:10.1091/mbc.E18-08-0515.
Walvekar A, Rashida Z, Maddali H, Laxman S.  2018.  A versatile LC-MS/MS approach for comprehensive, quantitative analysis of central metabolic pathways.. Wellcome Open Res. 3:122. DOI:10.12688/wellcomeopenres.14832.1.
Walvekar AS, Laxman S.  2019.  Methionine at the Heart of Anabolism and Signaling: Perspectives From Budding Yeast.. Front Microbiol. 10:2624. DOI:10.3389/fmicb.2019.02624.
Walvekar AS, Kadamur G, Sreedharan S, Gupta R, Srinivasan R, Laxman S.  2020.  Methylated PP2A stabilizes Gcn4 to enable a methionine-induced anabolic program.. J Biol Chem. 295(52):18390-18405. DOI:10.1074/jbc.RA120.014248.
Walvekar AS, Kadamur G, Sreedharan S, Gupta R, Srinivasan R, Laxman S.  2020.  Methylated PP2A stabilizes Gcn4 to enable a methionine-induced anabolic program.. J Biol Chem. DOI:10.1074/jbc.RA120.014248.
Wahlgren WY, Dunevall E, North RA, Paz, iv A, Scalise M, Bisignano P, Bengtsson-Palme J, Goyal P, Claesson E, Caing-Carlsson R, Andersson R, Beis K, Nilsson UJ, Farewell A, Pochini L, Indiveri C, Grabe M, Dobson RCJ, Abramson J, Ramaswamy S et al..  2018.  Substrate-bound outward-open structure of a Na-coupled sialic acid symporter reveals a new Na site.. Nat Commun. 9(1):1753. DOI:10.1038/s41467-018-04045-7.
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Vyas N, Dhawan J.  2017.  Exosomes: mobile platforms for targeted and synergistic signaling across cell boundaries.. Cell Mol Life Sci. 74(9):1567-1576. DOI:10.1007/s00018-016-2413-9.
Vora SM, Ankati S, Patole C, Podile ARao, Archana G.  2022.  Alterations of Primary Metabolites in Root Exudates of Intercropped Cajanus cajan-Zea mays Modulate the Adaptation and Proteome of Ensifer (Sinorhizobium) fredii NGR234.. Microb Ecol. 83(4):1008-1025. DOI:10.1007/s00248-021-01818-4.
Viswanath B, Rao NP, Narayanaswamy JC, Sivakumar PT, Kandasamy A, Kesavan M, Mehta UMeherwan, Venkatasubramanian G, John JP, Mukherjee O, Purushottam M, Kannan R, Mehta B, Kandavel T, Binukumar B, Saini J, Jayarajan D, Shyamsundar A, Moirangthem S, Kumar KGVijay et al..  2018.  Discovery biology of neuropsychiatric syndromes (DBNS): a center for integrating clinical medicine and basic science.. BMC Psychiatry. 18(1):106. DOI:10.1186/s12888-018-1674-2.
Vinothkumar KR, Arya CKumar, Ramanathan G, Subramanian R.  2020.  Comparison of CryoEM and X-ray structures of dimethylformamidase.. Prog Biophys Mol Biol. DOI:10.1016/j.pbiomolbio.2020.06.008.
Vinod E, Padmaja K, Ramasamy B, Sathishkumar S.  2023.  Systematic review of articular cartilage derived chondroprogenitors for cartilage repair in animal models.. J Orthop. 35:43-53. DOI:10.1016/j.jor.2022.10.012.
Vinod E, Parameswaran R, Amirtham SManickam, Rebekah G, Kachroo U.  2021.  Comparative analysis of human bone marrow mesenchymal stem cells, articular cartilage derived chondroprogenitors and chondrocytes to determine cell superiority for cartilage regeneration.. Acta Histochem. 123(4):151713. DOI:10.1016/j.acthis.2021.151713.
Vinod E, Johnson NNaveen, Kumar S, Amirtham SManickam, James JVarghese, Livingston A, Rebekah G, Daniel AJob, Ramasamy B, Sathishkumar S.  2021.  Migratory chondroprogenitors retain superior intrinsic chondrogenic potential for regenerative cartilage repair as compared to human fibronectin derived chondroprogenitors.. Sci Rep. 11(1):23685. DOI:10.1038/s41598-021-03082-5.
Vinod E, Parasuraman G, J JLisha, Amirtham SManickam, Livingston A, Varghese JJames, RANI SANDYA, Francis DVinod, Rebekah G, Daniel AJob, Ramasamy B, Sathishkumar S.  2023.  Human fetal cartilage-derived chondrocytes and chondroprogenitors display a greater commitment to chondrogenesis than adult cartilage resident cells.. PLoS One. 18(4):e0285106. DOI:10.1371/journal.pone.0285106.
Vinod E, Parasuraman G, Livingston A, Amirtham SManickam, Rebekah G, J Lisha J, Daniel AJob, Sathishkumar S.  2023.  Comparison of methods for the isolation and culture of Migratory chondroprogenitors from Human articular cartilage.. Connect Tissue Res. 64(4):389-399. DOI:10.1080/03008207.2023.2202266.
Vinod E, Padmaja K, Livingston A, James JVarghese, Amirtham SManickam, Sathishkumar S, Ramasamy B, Rebekah G, Daniel AJob, Kachroo U.  2021.  Prospective Isolation and Characterization of Chondroprogenitors from Human Chondrocytes Based on CD166/CD34/CD146 Surface Markers.. Cartilage. 13(2_suppl):808S-817S. DOI:10.1177/19476035211042412.
Vinod E, J JLisha, Parasuraman G, Livingston A, Daniel AJob, Sathishkumar S.  2023.  Evaluation of ghrelin as a distinguishing marker for human articular cartilage-derived chondrocytes and chondroprogenitors.. J Clin Orthop Trauma. 41:102175. DOI:10.1016/j.jcot.2023.102175.
Vinod E, Parameswaran R, Ramasamy B, Kachroo U.  2021.  Pondering the Potential of Hyaline Cartilage-Derived Chondroprogenitors for Tissue Regeneration: A Systematic Review.. Cartilage. 13(2_suppl):34S-52S. DOI:10.1177/1947603520951631.

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