1. Haywood AFM, et al. European Heart Journal.2013;34(13):1002-1011.[PMID: 23161701]
2. Ferdaoussi M, et al. Trends In Cell Biology.2017;27(3):163-171.[PMID: 27932063]
3. Kim JG, et al. Cell Host & Microbe.2013;13(2):143-154.[PMID: 23414755]
4. Raman N, et al. Molecular Cell.2016;64(3):607-615.[PMID: 27814492]
5. Wei Y, et al. Molecular Cell.2017;66(5):581-596.[PMID: 28552615]
6. Zhu XL, et al. Circulation Research.2017;121(6):636-649.[PMID: 28760777]
7. Patel KP, et al. Blood.2015;126(6):790-797.[PMID: 26124496]
8. Sarkar K, et al. Blood.2015;126(14):1670-1682.
9. Shenoy SK, et al. Trends In Pharmacological Sciences.2011;32(9):521-533.[PMID: 21680031]
10. Chen C, et al. Nature Communications.2015;6.[PMID: 26582366]
11. Khan M, et al. Nature Communications.2014;5.[PMID: 25134617]
12. Ng CH, et al. Nature Communications.2015;6.[PMID: 25766875]
13. van Cuijk L, et al. Nature Communications.2015;6.[PMID: 26151477]
14. Xia PY, et al. Nature Communications.2015;6.[PMID: 26348439]
15. Chymkowitch P, et al. Genome Research.2015;25(6):897-906.[PMID: 25800674]
16. DiGiacomo V, et al. Biological Reviews.2016;91(2):288-310.[PMID: 25630983]
17. Hannan A, et al. Nucleic Acids Research.2015;43(21):10213-10226.[PMID: 26319015]
18. Zhao Q, et al. Nucleic Acids Research.2014;42(W1):W325-W330.[PMID: 24880689]
19. Aguilar-Martinez E, et al. Proceedings Of the National Academy Of Sciences Of the United States Of America.2015;112(35):E4854-E4863.[PMID: 26283374]
20. Ceballos-Chavez M, et al. Proceedings Of the National Academy Of Sciences Of the United States Of America.2012;109(21):8085-8090.[PMID: 22570500]
21. Chymkowitch P, et al. Proceedings Of the National Academy Of Sciences Of the United States Of America.2017;114(5):1039-1044.[PMID: 28096404]
22. Miller MJ, et al. Proceedings Of the National Academy Of Sciences Of the United States Of America.2010;107(38):16512-16517.[PMID: 20813957]
23. Sadanandom A, et al. Proceedings Of the National Academy Of Sciences Of the United States Of America.2015;112(35):11108-11113.[PMID: 26283376]
24. Sapir A, et al. Proceedings Of the National Academy Of Sciences Of the United States Of America.2014;111(37):E3880-E3889.[PMID: 25187565]
25. Sohn SY, et al. Proceedings Of the National Academy Of Sciences Of the United States Of America.2016;113(24):6725-6730.[PMID: 27247387]
26. Cahill MA, et al. Biochimica Et Biophysica Acta-Reviews on Cancer.2016;1866(2):339-349.[PMID: 27452206]
27. Wu CS, et al. Genes & Development.2014;28(13):1472-1484.[PMID: 24990965]
28. Shim HS, et al. Cancer Research.2015;75(6):1056-1067.[PMID: 25614517]
29. Liu YY, et al. Plant Cell.2016;28(9):2225-2237.[PMID: 27492969]
30. Dai XQ, et al. Diabetes.2011;60(3):838-847.[PMID: 21266332]
31. Garg M, et al. Embo Reports.2014;15(8):871-877.[PMID: 2492553]
32. Sahoo MR, et al. Embo Reports.2017;18(2):241-263.[PMID: 28039207]
33. Ritho J, et al. Cell Reports.2015;12(5):734-742.[PMID: 26212320]
34. Plant LD, et al. Elife.2016;5.
35. Negrao S, et al. Plant Biotechnology Journal.2013;11(1):87-100.[PMID: 23116435]
36. Petrovska B, et al. New Phytologist.2012;193(3):590-604.[PMID: 22150830]
37. Beauclair G, et al. Bioinformatics.2015;31(21):3483-3491.[PMID: 26142185]
38. Jia JH, et al. Bioinformatics.2016;32(20):3133-3141.[PMID: 27354696]
39. Nagata K, et al. Bioinformatics.2014;30(12):1681-1689.[PMID: 24574112]
40. Wang LN, et al. Bioinformatics.2017;33(10):1457-1463.[PMID: 28025199]
41. Blicher T, et al. Current Opinion In Structural Biology.2010;20(3):335-341.[PMID: 20403684]
42. Holscher C, et al. Plos Pathogens.2015;11(12).[PMID: 26625259]
43. Bayona JC, et al. Molecular & Cellular Proteomics.2011;10(12).[PMID: 21832256]
44. Cox E, et al. Molecular & Cellular Proteomics.2017;16(5):812-823.[PMID: 28254775]
45. Miller MJ, et al. Molecular & Cellular Proteomics.2013;12(2):449-463.[PMID: 23197790]
46. Namuduri AV, et al. Molecular & Cellular Proteomics.2017;16(6):1081-1097.[PMID: 28373296]
47. Augustine RC, et al. Plant Physiology.2016;171(3):2191-2210.[PMID: 27208252]
48. Ward JD, et al. Plos Genetics.2013;9(12).[PMID: 24348269]
49. Williams MJ, et al. Plos Genetics.2016;12(6).[PMID: 27280443]
50. Lovisa S, et al. Journal Of Molecular Cell Biology.2016;8(1):17-30.[PMID: 26450989]
51. Chhunchha B, et al. Cell Death & Disease.2017;8.[PMID: 28055018]
52. Nukarinen E, et al. Plant Journal.2017;91(3):505-517.[PMID: 28419593]
53. Petrovska B, et al. Journal Of Experimental Botany.2013;64(14):4575-4587.[PMID: 24006426]
54. Strzalka W, et al. Journal Of Experimental Botany.2012;63(8):2971-2983.[PMID: 22330895]
55. Luan ZD, et al. Cellular And Molecular Life Sciences.2013;70(10):1793-1806.[PMID: 23247248]
56. Wetzel F, et al. Cellular And Molecular Life Sciences.2017;74(2):373-392.[PMID: 27604867]
57. Williams MJ, et al. Cellular And Molecular Life Sciences.2012;69(22):3819-3834.[PMID: 22618246]
58. Brault ME, et al. Human Molecular Genetics.2013;22(17):3498-3507.[PMID: 23660516]
59. Jox T, et al. Epigenetics & Chromatin.2017;10.[PMID: 28680483]
60. Yang LS, et al. Oncotarget.2016;7(50):83488-83501.[PMID: 27829226]
61. Hsieh FS, et al. Biochimica Et Biophysica Acta-Gene Regulatory Mechanisms.2014;1839(7):579-591.
62. Reaves DK, et al. Molecular Cancer Research.2017;15(2):165-178.[PMID: 27856957]
63. Peng PH, et al. Plant And Cell Physiology.2014;55(9):1623-1635.[PMID: 24974386]
64. Ni HJ, et al. Biochimica Et Biophysica Acta-General Subjects.2012;1820(12):1893-1900.[PMID: 22906975]
65. Chen AJ, et al. Journal Of Virology.2013;87(1):636-647.[PMID: 23097446]
66. Gagnon D, et al. Journal Of Virology.2015;89(12):6227-6239.[PMID: 25833051]
67. Liu Y, et al. Journal Of Virology.2016;90(23):10472-10485.[PMID: 27630238]
68. Santos A, et al. Journal Of Virology.2013;87(10):5602-5620.[PMID: 23468495]
69. Su CI, et al. Journal Of Virology.2016;90(9):4308-4319.[PMID: 26889037]
70. Sun DY, et al. Journal Of Virology.2011;85(19):10261-10268.[PMID: 21795356]
71. Knight JRP, et al. Rna.2016;22(4):623-635.[PMID: 26857222]
72. Seliga J, et al. Journal Of Steroid Biochemistry And Molecular Biology.2013;138:162-173.[PMID: 23727127]
73. Kim HM, et al. Genetics.2015;200(2):495-504.[PMID: 25819793]
74. Beyer AR, et al. Cellular Microbiology.2015;17(4):504-519.[PMID: 25308709]
75. Vranych CV, et al. Biochimica Et Biophysica Acta-Molecular Cell Research.2014;1843(9):1805-1817.[PMID: 24751693]
76. Smits VAJ, et al. Bioessays.2016;38(9):863-868.[PMID: 27374980]
77. McIntyre JC, et al. Journal Of Cell Science.2015;128(10):1934-1945.[PMID: 25908845]
78. Andrade D, et al. Molecular And Cellular Biology.2016;36(10):1438-1450.[PMID: 26951200]
79. Choi SG, et al. Molecular And Cellular Biology.2017;37(2).[PMID: 27799292]
80. Bueno MTD, et al. Epigenetics.2013;8(11):1162-1175.[PMID: 23970103]
81. Gou MY, et al. Molecular Plant-Microbe Interactions.2017;30(4):334-342.[PMID: 28409535]
82. Nissan G, et al. Molecular Plant-Microbe Interactions.2012;25(2):231-240.[PMID: 21995766]
83. Oki AT, et al. Frontiers In Cellular And Infection Microbiology.2016;6.[PMID: 27713867]
84. Carranco R, et al. Frontiers In Plant Science.2017;8.[PMID: 28659940]
85. Li YJ, et al. Frontiers In Plant Science.2017;8.[PMID: 28878795]
86. Mazur MJ, et al. Frontiers In Plant Science.2017;8.[PMID: 29250092]
87. Vazquez-Hernandez M, et al. Frontiers In Plant Science.2017;8.[PMID: 28970842]
88. Jiang JJ, et al. Endocrinology.2010;151(8):3697-3705.[PMID: 20555024]
89. Jimenez-Canino R, et al. Endocrinology.2017;158(11):4047-4063.[PMID: 28938454]
90. Peluso JJ, et al. Endocrinology.2012;153(8):3929-3939.[PMID: 22719051]
91. McClure ML, et al. American Journal Of Physiology-Lung Cellular And Molecular Physiology.2016;311(4):L719-L733.[PMID: 27474090]
92. Chen X, et al. Scientific Reports.2016;6.[PMID: 27174170]
93. Deng WK, et al. Scientific Reports.2016;6.[PMID: 28004786]
94. Estruch SB, et al. Scientific Reports.2016;6.[PMID: 26867680]
95. Xie YB, et al. Scientific Reports.2016;6.[PMID: 27306108]
96. Xu HD, et al. Scientific Reports.2015;5.[PMID: 26154679]
97. Xu Y, et al. Scientific Reports.2015;5.[PMID: 26084794]
98. Brohi RD, et al. Frontiers In Physiology.2017;8.[PMID: 28659810]
99. Giancaspero TA, et al. Journal Of Biological Chemistry.2013;288(40):29069-29080.[PMID: 23946482]
100. Kaur K, et al. Journal Of Biological Chemistry.2017;292(24):10230-10238.[PMID: 28455449]
101. Lutz D, et al. Journal Of Biological Chemistry.2012;287(21):17161-17175.[PMID: 22431726]
102. Pelisch F, et al. Journal Of Biological Chemistry.2012;287(36):30789-30799.[PMID: 22825850]
103. Peterson AW, et al. Journal Of Biological Chemistry.2011;286(16):13914-13924.[PMID: 21372131]
104. Tokmakov AA, et al. Journal Of Biological Chemistry.2012;287(32):27106-27116.[PMID: 22674579]
105. Wakabayashi S, et al. Journal Of Biological Chemistry.2016;291(48):25120-25132.[PMID: 27702999]
106. Wu J, et al. Journal Of Biological Chemistry.2014;289(29):20000-20011.[PMID: 24872413]
107. Yamashita D, et al. Journal Of Biological Chemistry.2016;291(22):11619-11634.[PMID: 27068747]
108. Yao Q, et al. Journal Of Biological Chemistry.2011;286(31):27342-27349.[PMID: 21685386]
109. Zhang DY, et al. Journal Of Biological Chemistry.2015;290(8):4784-4800.
110. Lee HS, et al. Journal Of Viral Hepatitis.2014;21(10):E108-E117.[PMID: 24602294]
111. Saribas AS, et al. Journal Of Cellular Physiology.2016;231(10):2115-2127.[PMID: 26831433]
112. Tokmakov AA. Frontiers In Microbiology.2014;5.[PMID: 24999341]
113. Gan J, et al. Proteomics.2015;15(12):2023-2037.[PMID: 25894481]
114. Stastna M, et al. Proteomics.2015;15(5-6):1164-1180.[PMID: 25430483]
115. Siitonen A, et al. European Journal Of Neurology.2013;20(4):e59-e59.[PMID: 23490116]
116. Tomastikova E, et al. Bmc Plant Biology.2012;12.[PMID: 22676313]
117. Lee HJ, et al. Cell Communication And Signaling.2010;8.[PMID: 20509869]
118. Ali SA, et al. Journal Of Proteomics.2017;168:37-52.[PMID: 28755912]
119. Bertrand C, et al. Journal Of Proteomics.2017;150:268-280.[PMID: 27671789]
120. Gianazza E, et al. Journal Of Proteomics.2016;134:65-75.[PMID: 26436211]
121. Schwammle V, et al. Journal Of Proteomics.2015;129:3-15.[PMID: 26216596]
122. Eifler K, et al. Febs Journal.2015;282(19):3669-3680.[PMID: 26185901]
123. Zhang C, et al. Apoptosis.2017;22(5):608-625.[PMID: 28205128]
124. Shen QT, et al. Biochemical Journal.2017;474:3455-3469.[PMID: 28899943]
125. Cribb P, et al. International Journal for Parasitology.2011;41(11):1149-1156.[PMID: 21854779]
126. Barth AS, et al. Bmc Genomics.2010;11.[PMID: 20334672]
127. Yavuz AS, et al. Bmc Genomics.2014;15.[PMID: 25521314]
128. Singh A, et al. Cell Calcium.2015;58(2):139-146.[PMID: 25933832]
129. Leach MD, et al. Molecular Biology Of the Cell.2011;22(5):687-702.[PMID: 21209325]
130. Rubio T, et al. Molecular Biology Of the Cell.2013;24(11):1801-1811.[PMID: 23552691]
131. Gowran A, et al. Febs Letters.2009;583(21):3412-3418.[PMID: 19819240]
132. McIntyre J, et al. DNA Repair.2015;29:166-179.[PMID: 25743599]
133. Swartzlander DB, et al. DNA Repair.2016;48:51-62.[PMID: 27839712]
134. Dunphy PS, et al. Infection And Immunity.2014;82(10):4154-4168.[PMID: 25047847]
135. Moriuchi T, et al. Experimental Cell Research.2016;342(1):83-94.[PMID: 26921507]
136. Meng FX, et al. Cell Cycle.2016;15(13):1724-1732.[PMID: 27163259]
137. Ryu H, et al. Cell Cycle.2015;14(17):2777-2784.[PMID: 26131587]
138. Sridharan V, et al. Cell Cycle.2016;15(16):2135-2144.[PMID: 27230136]
139. Chand V, et al. Open Biology.2016;6(9).[PMID: 27605378]
140. Mustfa SA, et al. Open Biology.2017;7(6).[PMID: 28659381]
141. Sharma P, et al. Open Biology.2014;4(2).[PMID: 24522884]
142. Yang YF, et al. Open Biology.2017;7(10).[PMID: 29021212]
143. Guo J, et al. Viruses-Basel.2017;9(10).[PMID: 28973998]
144. Peluso JJ, et al. Biology Of Reproduction.2013;88(1).[PMID: 23242527]
145. Reed JM, et al. Planta.2010;232(1):51-59.[PMID: 20361336]
146. Gerits N, et al. Virology.2012;432(2):316-326.[PMID: 22726243]
147. Reed AM, et al. Virology.2017;500:82-90.[PMID: 27771562]
148. Nguyen HC, et al. Physiologia Plantarum.2017;159(4):445-467.[PMID: 27861954]
149. Li J, et al. Database-the Journal Of Biological Databases And Curation.2014.[PMID: 24705204]
150. Filosa G, et al. Neuromolecular Medicine.2013;15(4):661-676.[PMID: 23979992]
151. Horna-Terron E, et al. International Journal Of Molecular Sciences.2014;15(12):23501-23518.[PMID: 25526565]
152. Tang XD, et al. International Journal Of Molecular Sciences.2014;15(12):22011-22027.[PMID: 25470021]
153. Watanabe T, et al. Bmc Evolutionary Biology.2010;10.[PMID: 20152013]
154. Teng SL, et al. Amino Acids.2012;43(1):447-455.[PMID: 21986959]
155. Pokotylo I, et al. Biochimie.2014;96:144-157.[PMID: 23856562]
156. Xiao YX, et al. Reproduction.2016;151(2):149-166.[PMID: 26701181]
157. Grant MM. Bmb Reports.2010;43(11):720-725.[PMID: 21110914]
158. Rajagopalan K, et al. Journal Of Cellular Biochemistry.2011;112(11):3256-3267.[PMID: 21748782]
159. Leach MD, et al. Eukaryotic Cell.2012;11(2):98-108.[PMID: 22158711]
160. Ntini E, et al. Developmental Biology.2011;360(2):403-414.[PMID: 22005665]
161. Martin-Gomez L, et al. Infection Genetics And Evolution.2014;23:138-149.[PMID: 24560728]
162. Miles S, et al. Infection Genetics And Evolution.2017;54:338-346.[PMID: 28728879]
163. Handu M, et al. G3-Genes Genomes Genetics.2015;5(10):2137-2154.[PMID: 26290570]
164. Boudreau E, et al. Plos One.2012;7(9).[PMID: 23029315]
165. Chaki M, et al. Plos One.2014;9(10).[PMID: 25333472]
166. Chen YZ, et al. Plos One.2012;7(6).[PMID: 22720073]
167. Costa MW, et al. Plos One.2011;6(9).[PMID: 21931855]
168. Doss CGP, et al. Plos One.2012;7(4).[PMID: 22529920]
169. Kelly JN, et al. Plos One.2014;9(7).[PMID: 24983760]
170. Kim ET, et al. Plos One.2014;9(7).[PMID: 25050850]
171. Monribot-Villanueva J, et al. Plos One.2013;8(4).[PMID: 23620817]
172. Schou J, et al. Plos One.2014;9(6).[PMID: 24971888]
173. Spektor TM, et al. Plos One.2011;6(7).[PMID: 21829513]
174. Wu YY, et al. Plos One.2012;7(6).[PMID: 22745796]
175. Xu Y, et al. Plos One.2016;11(4).[PMID: 27104833]
176. Xue Y, et al. Plos One.2010;5(6).[PMID: 20585580]
177. Hansen M, et al. Neurochemical Research.2013;38(6):1236-1251.[PMID: 23417431]
178. Mohabatkar H, et al. Current Topics In Medicinal Chemistry.2017;17(21):2381-2392.[PMID: 28356000]
179. Pai PP, et al. Current Topics In Medicinal Chemistry.2017;17(21):2401-2421.[PMID: 28359251]
180. Xu Y, et al. Current Topics In Medicinal Chemistry.2016;16(6):591-603.[PMID: 26286211]
181. Terova G, et al. Bmc Immunology.2011;12.[PMID: 22204309]
182. Garee JP, et al. Biochemical And Biophysical Research Communications.2011;408(4):516-522.[PMID: 21527249]
183. Saethang T, et al. Bmc Bioinformatics.2016;17.[PMID: 27534850]
184. Olsen MT, et al. Ecology And Evolution.2014;4(10):1787-1803.[PMID: 24963377]
185. Casati B, et al. Gene.2012;511(2):326-337.[PMID: 23041082]
186. Martin-Gomez L, et al. Gene.2014;533(1):208-217.[PMID: 24095775]
187. Xu Y, et al. Gene.2016;576(1):99-104.[PMID: 26432000]
188. Souquere S, et al. Nucleus.2015;6(4):326-338.[PMID: 26275159]
189. Vihma H, et al. Neuroscience Letters.2017;653:302-307.[PMID: 28595951]
190. Horn H, et al. Peerj.2014;2.[PMID: 24711967]
191. Aftabi Y, et al. Journal Of Theoretical Biology.2016;393:1-15.[PMID: 26776670]
192. Chase PB, et al. Journal Of Muscle Research And Cell Motility.2013;34(3-4):275-284.[PMID: 23907338]
193. Dustrude ET, et al. Channels.2017;11(4):316-328.[PMID: 28277940]
194. Ambady S, et al. International Journal Of Developmental Biology.2010;54(11-12):1743-1754.[PMID: 21136380]
195. Yang J, et al. Bmc Molecular Biology.2017;18.[PMID: 28882106]
196. Carmona-Mora P, et al. Current Genomics.2010;11(8):607-617.[PMID: 21629438]
197. Hajiebrahimi A, et al. Genome.2017;60(10):797-814.[PMID: 28732175]
198. Dangoumau A, et al. International Journal Of Neuroscience.2013;123(6):366-374.[PMID: 23289752]
199. de Oliveira GS, et al. International Journal Of Mass Spectrometry.2017;418:51-66.
200. Kwasek K, et al. Fish Physiology And Biochemistry.2017;43(3):849-862.
201. Cahill MA. Bioscience Trends.2017;11(2):179-192.[PMID: 28250339]
202. Mojsin M, et al. Biochemical Genetics.2010;48(7-8):612-623.[PMID: 20495863]
203. Prokop JW, et al. Journal Of Molecular Modeling.2017;23(3).[PMID: 28204942]
204. Urrutia R, et al. Journal Of Molecular Modeling.2014;20(8).[PMID: 25056123]
205. Velez G, et al. Journal Of Molecular Modeling.2016;22(1).
206. Basharat Z, et al. Molecular And Cellular Probes.2017;31:76-84.[PMID: 27618775]
207. Hand JM, et al. Mechanisms Of Development.2017;144:103-112.[PMID: 28263788]
208. Herath V. Computational Biology And Chemistry.2016;65:128-139.[PMID: 27816829]
209. Digiacomo V, et al. Cellular & Molecular Biology Letters.2015;20(4):571-585.[PMID: 26146125]
210. Terova G, et al. Springerplus.2013;2.[PMID: 23449729]
211. Huang GH, et al. Mini-Reviews In Organic Chemistry.2015;12(6):468-480.
212. Ai HX, et al. Journal Of Computational Biology.2017;24(10):1050-1059.[PMID: 28682641]
213. Lei GC, et al. Letters In Organic Chemistry.2017;14(9):665-672.
214. Maurer MH. Current Proteomics.2012;9(1):18-25.
215. Hwang SP, et al. Animal Cells And Systems.2017;21(3):169-176.
216. Bish R, et al. Biomolecules.2015;5(3):1441-1466.[PMID: 26184334]
217. Joshi BB, et al. Meta Gene.2017;11:98-103.
218. Schwartz D,. Lysine-Based Post-Translational Modification Of Proteins.2012;52:165-177.[PMID: 22708570]
219. Swartzlander DB, et al. Mechanisms Of DNA Repair.2012;110:93-121.[PMID: 22749144]
220. Vigodner M. International Review Of Cell And Molecular Biology.2011; 288:227-259.[PMID: 21482414]
221. Weitzel JM. European Thyroid Journal.2016;5(3):152-163.[PMID: 27843805]