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PXD ID: PXD000071. Experiment: 120206ry_aHDF1419-P10_3, data file: 120206ry_aHDF1419-P10_3_1-120206ry011.mgf. Data published as part of J Proteome Res. 2013 Jan 4;12(1):214-21 [[PubMed]]. From the Abstract: {{i}}Proteome analyses of human induced pluripotent stem cells (iPSC) were carried out on a l...
ORGANISM(S): Human, Human_adenovirus_54, Human_adenovirus_a, Human_adenovirus_b, Human_adenovirus_c, Human_adenovirus_d, Human_adenovirus_e, Human_adenovirus_f, Human_adenovirus_g, Human_astrovirus, Human_bocavirus, Human_bocavirus_2, Human_bocavirus_3, Human_bocavirus_4, Human_coronavirus_229e, Human_coronavirus_hku1, Human_coronavirus_nl63, Human_coronavirus_oc43, Human_cosavirus_a, Human_cosavirus_b, Human_cosavirus_d, Human_cosavirus_e, Human_enteric_coronavirus_4408, Human_enterovirus_100, Human_enterovirus_a, Human_enterovirus_b, Human_enterovirus_c, Human_enterovirus_d, Human_erythrovirus_v9, Human_herpesvirus_1, Human_herpesvirus_2, Human_herpesvirus_3, Human_herpesvirus_4_type_1, Human_herpesvirus_4_type_2, Human_herpesvirus_5, Human_herpesvirus_6a, Human_herpesvirus_6b, Human_herpesvirus_7, Human_herpesvirus_8_type_p, Human_immunodeficiency_virus_1, Human_immunodeficiency_virus_2, Human_metapneumovirus, Human_papillomavirus_fa75_ki88_03, Human_papillomavirus_rtrx7, Human_papillomavirus_type_10, Human_papillomavirus_type_100, Human_papillomavirus_type_101, Human_papillomavirus_type_103, Human_papillomavirus_type_104, Human_papillomavirus_type_105, Human_papillomavirus_type_108, Human_papillomavirus_type_109, Human_papillomavirus_type_112, Human_papillomavirus_type_113, Human_papillomavirus_type_16, Human_papillomavirus_type_24, Human_papillomavirus_type_26, Human_papillomavirus_type_32, Human_papillomavirus_type_34, Human_papillomavirus_type_4, Human_papillomavirus_type_41, Human_papillomavirus_type_48, Human_papillomavirus_type_49, Human_papillomavirus_type_5, Human_papillomavirus_type_50, Human_papillomavirus_type_53, Human_papillomavirus_type_60, Human_papillomavirus_type_63, Human_papillomavirus_type_6b, Human_papillomavirus_type_7, Human_papillomavirus_type_71, Human_papillomavirus_type_88, Human_papillomavirus_type_9, Human_papillomavirus_type_92, Human_papillomavirus_type_96, Human_papillomavirus_type_98, Human_papillomavirus_type_99, Human_papillomavirus___1, Human_papillomavirus___18, Human_papillomavirus___2, Human_papillomavirus___54, Human_papillomavirus___61, Human_papillomavirus___cand90, Human_parainfluenza_virus_1, Human_parainfluenza_virus_2, Human_parainfluenza_virus_3, Human_parechovirus, Human_parvovirus_4, Human_parvovirus_b19, Human_picobirnavirus, Human_respiratory_syncytial_virus, Human_rhinovirus_a, Human_rhinovirus_b, Human_rhinovirus_c, Human_tmev_like_cardiovirus, Human_t_lymphotropic_virus_1, Human_t_lymphotropic_virus_2, Human_t_lymphotropic_virus_4 
Myc regulates many gene expression during cell growth, development, or other many cellular events. C-Myc is a well known molecule which expression increase in many cancers. Overexpression of c-Myc causes cell transformation, apoptosis, etc. There are several Myc family genes in human, mouse, or othe...
ORGANISM(S): Homo sapiens 
Rapid and deep profiling of human induced pluripotent stem cell proteome analysis by one-shot nano LC-MS/MS with meter-scale monolithic silica capillary columns.
ORGANISM(S): Homo Sapiens (human) 
To measure quantification accuracy, we generated two proteome samples of E.coli and human cell lysate. E.coli tryptic peptides were tagged with four different labels of reporter ions (m/z: 114, 115, 116 and 117). These labeled peptides were mixed at the following ratios: 114:115 = 10:1, 114:117 = 5:...
ORGANISM(S): Homo Sapiens (human) Escherichia Coli 
We analyzed iPSC (201B7) and HDF (HDF1388) by global whole phosphoproteome analysis. iTRAQ was used for relative quantification between the two cell types. We did biological triplicate analyses.
ORGANISM(S): Homo Sapiens (human) 
We analyzed iPSC (201B7) and HDF (HDF1388) by global whole proteome analysis. iTRAQ was used for relative quantification between the two cell types. We did biological triplicate analyses with technical triplicate analyses.
ORGANISM(S): Homo Sapiens (human) 
MYC proteins (c-MYC, n-MYC, and L-MYC) are essential for improving reprogramming efficiency. L-MYC can generate iPSC colonies more efficiently than c-MYC. Still, it remains unknown what is the functional differences between c-MYC and L-MYC during cellular reprogramming. In this study, we performed p...
ORGANISM(S): Homo Sapiens (human) 
MYC proteins (c-MYC, n-MYC, and L-MYC) are essential for improving reprogramming efficiency. L-MYC can generate iPSC colonies more efficiently than c-MYC. Still, it remains unknown what is the functional differences between c-MYC and L-MYC during cellular reprogramming. In this study, we performed p...
ORGANISM(S): Homo Sapiens (human) 
MYC proteins (c-MYC, n-MYC, and L-MYC) are essential for improving reprogramming efficiency. L-MYC can generate iPSC colonies more efficiently than c-MYC. Still, it remains unknown what is the functional differences between c-MYC and L-MYC during cellular reprogramming. In this study, we performed p...
ORGANISM(S): Homo Sapiens (human) 
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