Basic Information
Name | DNA-directed RNA polymerase II subunit RPB2 (RNA polymerase II subunit 2) (EC 2.7.7.6) (B150) (DNA-directed RNA polymerase II 140 kDa polypeptide) |
Uniprot ID | P08518 |
Systematic gene name | YOR151C |
Standard gene name | RPB2 |
Gene names | RPB2 RPB150 RPO22 YOR151C |
Description from SGD | YOR151C RPB2 SGDID:S000005677, Chr XV from 616671-612997, Genome Release 64-3-1, reverse complement, Verified ORF, "RNA polymerase II second largest subunit B150; part of central core; similar to bacterial beta subunit" |
Protein length | 1224 |
Download | sequence (fasta, from Uniprot), modifications (csv format) |
Database links | Uniprot, SGD, TheCellVision.org, FungiDB |
Sequence
MSDLANSEKY YDEDPYGFED ESAPITAEDS WAVISAFFRE KGLVSQQLDS
FNQFVDYTLQ DIICEDSTLI LEQLAQHTTE SDNISRKYEI SFGKIYVTKP
MVNESDGVTH ALYPQEARLR NLTYSSGLFV DVKKRTYEAI DVPGRELKYE
LIAEESEDDS ESGKVFIGRL PIMLRSKNCY LSEATESDLY KLKECPFDMG
GYFIINGSEK VLIAQERSAG NIVQVFKKAA PSPISHVAEI RSALEKGSRF
ISTLQVKLYG REGSSARTIK ATLPYIKQDI PIVIIFRALG IIPDGEILEH
ICYDVNDWQM LEMLKPCVED GFVIQDRETA LDFIGRRGTA LGIKKEKRIQ
YAKDILQKEF LPHITQLEGF ESRKAFFLGY MINRLLLCAL DRKDQDDRDH
FGKKRLDLAG PLLAQLFKTL FKKLTKDIFR YMQRTVEEAH DFNMKLAINA
KTITSGLKYA LATGNWGEQK KAMSSRAGVS QVLNRYTYSS TLSHLRRTNT
PIGRDGKLAK PRQLHNTHWG LVCPAETPEG QACGLVKNLS LMSCISVGTD
PMPIITFLSE WGMEPLEDYV PHQSPDATRV FVNGVWHGVH RNPARLMETL
RTLRRKGDIN PEVSMIRDIR EKELKIFTDA GRVYRPLFIV EDDESLGHKE
LKVRKGHIAK LMATEYQDIE GGFEDVEEYT WSSLLNEGLV EYIDAEEEES
ILIAMQPEDL EPAEANEEND LDVDPAKRIR VSHHATTFTH CEIHPSMILG
VAASIIPFPD HNQSPRNTYQ SAMGKQAMGV FLTNYNVRMD TMANILYYPQ
KPLGTTRAME YLKFRELPAG QNAIVAIACY SGYNQEDSMI MNQSSIDRGL
FRSLFFRSYM DQEKKYGMSI TETFEKPQRT NTLRMKHGTY DKLDDDGLIA
PGVRVSGEDV IIGKTTPISP DEEELGQRTA YHSKRDASTP LRSTENGIVD
QVLVTTNQDG LKFVKVRVRT TKIPQIGDKF ASRHGQKGTI GITYRREDMP
FTAEGIVPDL IINPHAIPSR MTVAHLIECL LSKVAALSGN EGDASPFTDI
TVEGISKLLR EHGYQSRGFE VMYNGHTGKK LMAQIFFGPT YYQRLRHMVD
DKIHARARGP MQVLTRQPVE GRSRDGGLRF GEMERDCMIA HGAASFLKER
LMEASDAFRV HICGICGLMT VIAKLNHNQF ECKGCDNKID IYQIHIPYAA
KLLFQELMAM NITPRLYTDR SRDF
FNQFVDYTLQ DIICEDSTLI LEQLAQHTTE SDNISRKYEI SFGKIYVTKP
MVNESDGVTH ALYPQEARLR NLTYSSGLFV DVKKRTYEAI DVPGRELKYE
LIAEESEDDS ESGKVFIGRL PIMLRSKNCY LSEATESDLY KLKECPFDMG
GYFIINGSEK VLIAQERSAG NIVQVFKKAA PSPISHVAEI RSALEKGSRF
ISTLQVKLYG REGSSARTIK ATLPYIKQDI PIVIIFRALG IIPDGEILEH
ICYDVNDWQM LEMLKPCVED GFVIQDRETA LDFIGRRGTA LGIKKEKRIQ
YAKDILQKEF LPHITQLEGF ESRKAFFLGY MINRLLLCAL DRKDQDDRDH
FGKKRLDLAG PLLAQLFKTL FKKLTKDIFR YMQRTVEEAH DFNMKLAINA
KTITSGLKYA LATGNWGEQK KAMSSRAGVS QVLNRYTYSS TLSHLRRTNT
PIGRDGKLAK PRQLHNTHWG LVCPAETPEG QACGLVKNLS LMSCISVGTD
PMPIITFLSE WGMEPLEDYV PHQSPDATRV FVNGVWHGVH RNPARLMETL
RTLRRKGDIN PEVSMIRDIR EKELKIFTDA GRVYRPLFIV EDDESLGHKE
LKVRKGHIAK LMATEYQDIE GGFEDVEEYT WSSLLNEGLV EYIDAEEEES
ILIAMQPEDL EPAEANEEND LDVDPAKRIR VSHHATTFTH CEIHPSMILG
VAASIIPFPD HNQSPRNTYQ SAMGKQAMGV FLTNYNVRMD TMANILYYPQ
KPLGTTRAME YLKFRELPAG QNAIVAIACY SGYNQEDSMI MNQSSIDRGL
FRSLFFRSYM DQEKKYGMSI TETFEKPQRT NTLRMKHGTY DKLDDDGLIA
PGVRVSGEDV IIGKTTPISP DEEELGQRTA YHSKRDASTP LRSTENGIVD
QVLVTTNQDG LKFVKVRVRT TKIPQIGDKF ASRHGQKGTI GITYRREDMP
FTAEGIVPDL IINPHAIPSR MTVAHLIECL LSKVAALSGN EGDASPFTDI
TVEGISKLLR EHGYQSRGFE VMYNGHTGKK LMAQIFFGPT YYQRLRHMVD
DKIHARARGP MQVLTRQPVE GRSRDGGLRF GEMERDCMIA HGAASFLKER
LMEASDAFRV HICGICGLMT VIAKLNHNQF ECKGCDNKID IYQIHIPYAA
KLLFQELMAM NITPRLYTDR SRDF
Legend
- X Phoshorylation
- X K-acetylation
- X Multiple modifications
- X Ubiquitination
Structure
Structure visualized by GLmol written by biochem_fan. The structure was downloaded from the AlphaFold Protein Structure Database.
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References
[2, Phos] | Lanz MC, Yugandhar K, Gupta S, Sanford EJ, Faça VM, Vega S, Joiner AMN, Fromme JC, Yu H, Smolka MB (2021). In-depth and 3-dimensional exploration of the budding yeast phosphoproteome. EMBO Reports, e51121. (Publication) (All modifications) |
[2, Phos] | Bai Y, Chen B, Li M, et al (2017) FPD: A comprehensive phosphorylation database in fungi. Fungal Biology 121:869–875. (Publication) (All modifications) |
[2, Phos] | Šoštarić, N., O'Reilly, F.J., Giansanti, P., Heck, A.J.R., Gavin, A.C., van Noort, V. (2018). Effects of acetylation and phosphorylation on subunit interactions in three large eukaryotic complexes. Mol Cell Proteomics 17: 2387-2401. (Publication) (All modifications) |
[2, Phos] | Frankovsky, J., Vozáriková, V., Nosek, J., Tomáška, Ľ. (2021a). Mitochondrial protein phosphorylation in yeast revisited.Mitochondrion 57:148-162. (Publication) (All modifications) |
[7, Phos] | Lanz MC, Yugandhar K, Gupta S, Sanford EJ, Faça VM, Vega S, Joiner AMN, Fromme JC, Yu H, Smolka MB (2021). In-depth and 3-dimensional exploration of the budding yeast phosphoproteome. EMBO Reports, e51121. (Publication) (All modifications) |
[7, Phos] | Bai Y, Chen B, Li M, et al (2017) FPD: A comprehensive phosphorylation database in fungi. Fungal Biology 121:869–875. (Publication) (All modifications) |
[7, Phos] | Frankovsky, J., Vozáriková, V., Nosek, J., Tomáška, Ľ. (2021a). Mitochondrial protein phosphorylation in yeast revisited.Mitochondrion 57:148-162. (Publication) (All modifications) |
[9, K-acetyl] | Šoštarić, N., O'Reilly, F.J., Giansanti, P., Heck, A.J.R., Gavin, A.C., van Noort, V. (2018). Effects of acetylation and phosphorylation on subunit interactions in three large eukaryotic complexes. Mol Cell Proteomics 17: 2387-2401. (Publication) (All modifications) |
[87, K-acetyl] | Šoštarić, N., O'Reilly, F.J., Giansanti, P., Heck, A.J.R., Gavin, A.C., van Noort, V. (2018). Effects of acetylation and phosphorylation on subunit interactions in three large eukaryotic complexes. Mol Cell Proteomics 17: 2387-2401. (Publication) (All modifications) |
[99, K-acetyl] | Šoštarić, N., O'Reilly, F.J., Giansanti, P., Heck, A.J.R., Gavin, A.C., van Noort, V. (2018). Effects of acetylation and phosphorylation on subunit interactions in three large eukaryotic complexes. Mol Cell Proteomics 17: 2387-2401. (Publication) (All modifications) |
[99, Ubi] | Swaney, D.L., Beltrao, P., Starita, L., Guo, A., Rush, J., Fields, S., Krogan, N.J., Villén, J. (2013). Global analysis of phosphorylation and ubiquitylation cross-talk in protein degradation. Nature Methods 10(7): 676-682. (Publication) (All modifications) |
[148, K-acetyl] | Šoštarić, N., O'Reilly, F.J., Giansanti, P., Heck, A.J.R., Gavin, A.C., van Noort, V. (2018). Effects of acetylation and phosphorylation on subunit interactions in three large eukaryotic complexes. Mol Cell Proteomics 17: 2387-2401. (Publication) (All modifications) |
[156, Phos] | Lanz MC, Yugandhar K, Gupta S, Sanford EJ, Faça VM, Vega S, Joiner AMN, Fromme JC, Yu H, Smolka MB (2021). In-depth and 3-dimensional exploration of the budding yeast phosphoproteome. EMBO Reports, e51121. (Publication) (All modifications) |
[156, Phos] | Bai Y, Chen B, Li M, et al (2017) FPD: A comprehensive phosphorylation database in fungi. Fungal Biology 121:869–875. (Publication) (All modifications) |
[156, Phos] | Zhou, X., Li, W., Liu, Y., Amon, A. (2021. Cross-compartment signal propagation in the mitotic exit network. Elife 10:e63645. (Publication) (All modifications) |
[156, Phos] | Frankovsky, J., Vozáriková, V., Nosek, J., Tomáška, Ľ. (2021a). Mitochondrial protein phosphorylation in yeast revisited.Mitochondrion 57:148-162. (Publication) (All modifications) |
[187, Phos] | Lanz MC, Yugandhar K, Gupta S, Sanford EJ, Faça VM, Vega S, Joiner AMN, Fromme JC, Yu H, Smolka MB (2021). In-depth and 3-dimensional exploration of the budding yeast phosphoproteome. EMBO Reports, e51121. (Publication) (All modifications) |
[218, Phos] | Lanz MC, Yugandhar K, Gupta S, Sanford EJ, Faça VM, Vega S, Joiner AMN, Fromme JC, Yu H, Smolka MB (2021). In-depth and 3-dimensional exploration of the budding yeast phosphoproteome. EMBO Reports, e51121. (Publication) (All modifications) |
[218, Phos] | Bai Y, Chen B, Li M, et al (2017) FPD: A comprehensive phosphorylation database in fungi. Fungal Biology 121:869–875. (Publication) (All modifications) |
[218, Phos] | Frankovsky, J., Vozáriková, V., Nosek, J., Tomáška, Ľ. (2021a). Mitochondrial protein phosphorylation in yeast revisited.Mitochondrion 57:148-162. (Publication) (All modifications) |
[227, K-acetyl] | Henriksen, P., Wagner, S. A., Weinert, B. T., et al. (2012). Proteome-wide analysis of lysine acetylation suggests its broad regulatory scope in Saccharomyces cerevisiae. Molecular & Cellular Proteomics, 11(11), 1510-1522. (Publication) (All modifications) |
[228, K-acetyl] | Šoštarić, N., O'Reilly, F.J., Giansanti, P., Heck, A.J.R., Gavin, A.C., van Noort, V. (2018). Effects of acetylation and phosphorylation on subunit interactions in three large eukaryotic complexes. Mol Cell Proteomics 17: 2387-2401. (Publication) (All modifications) |
[228, Ubi] | Swaney, D.L., Beltrao, P., Starita, L., Guo, A., Rush, J., Fields, S., Krogan, N.J., Villén, J. (2013). Global analysis of phosphorylation and ubiquitylation cross-talk in protein degradation. Nature Methods 10(7): 676-682. (Publication) (All modifications) |
[242, Phos] | Lanz MC, Yugandhar K, Gupta S, Sanford EJ, Faça VM, Vega S, Joiner AMN, Fromme JC, Yu H, Smolka MB (2021). In-depth and 3-dimensional exploration of the budding yeast phosphoproteome. EMBO Reports, e51121. (Publication) (All modifications) |
[257, Ubi] | Swaney, D.L., Beltrao, P., Starita, L., Guo, A., Rush, J., Fields, S., Krogan, N.J., Villén, J. (2013). Global analysis of phosphorylation and ubiquitylation cross-talk in protein degradation. Nature Methods 10(7): 676-682. (Publication) (All modifications) |
[265, Phos] | Renvoisé M, Bonhomme L, Davanture M, et al (2014) Quantitative variations of the mitochondrial proteome and phosphoproteome during fermentative and respiratory growth in Saccharomyces cerevisiae. Journal of Proteomics 106:140–150. (Publication) (All modifications) |
[265, Phos] | Frankovsky, J., Vozáriková, V., Nosek, J., Tomáška, Ľ. (2021a). Mitochondrial protein phosphorylation in yeast revisited.Mitochondrion 57:148-162. (Publication) (All modifications) |
[270, Ubi] | Swaney, D.L., Beltrao, P., Starita, L., Guo, A., Rush, J., Fields, S., Krogan, N.J., Villén, J. (2013). Global analysis of phosphorylation and ubiquitylation cross-talk in protein degradation. Nature Methods 10(7): 676-682. (Publication) (All modifications) |
[329, Phos] | Bai Y, Chen B, Li M, et al (2017) FPD: A comprehensive phosphorylation database in fungi. Fungal Biology 121:869–875. (Publication) (All modifications) |
[329, Phos] | Frankovsky, J., Vozáriková, V., Nosek, J., Tomáška, Ľ. (2021a). Mitochondrial protein phosphorylation in yeast revisited.Mitochondrion 57:148-162. (Publication) (All modifications) |
[353, Ubi] | Swaney, D.L., Beltrao, P., Starita, L., Guo, A., Rush, J., Fields, S., Krogan, N.J., Villén, J. (2013). Global analysis of phosphorylation and ubiquitylation cross-talk in protein degradation. Nature Methods 10(7): 676-682. (Publication) (All modifications) |
[365, Phos] | Bai Y, Chen B, Li M, et al (2017) FPD: A comprehensive phosphorylation database in fungi. Fungal Biology 121:869–875. (Publication) (All modifications) |
[365, Phos] | Frankovsky, J., Vozáriková, V., Nosek, J., Tomáška, Ľ. (2021a). Mitochondrial protein phosphorylation in yeast revisited.Mitochondrion 57:148-162. (Publication) (All modifications) |
[454, Phos] | Lanz MC, Yugandhar K, Gupta S, Sanford EJ, Faça VM, Vega S, Joiner AMN, Fromme JC, Yu H, Smolka MB (2021). In-depth and 3-dimensional exploration of the budding yeast phosphoproteome. EMBO Reports, e51121. (Publication) (All modifications) |
[455, Phos] | Lanz MC, Yugandhar K, Gupta S, Sanford EJ, Faça VM, Vega S, Joiner AMN, Fromme JC, Yu H, Smolka MB (2021). In-depth and 3-dimensional exploration of the budding yeast phosphoproteome. EMBO Reports, e51121. (Publication) (All modifications) |
[455, Phos] | Bai Y, Chen B, Li M, et al (2017) FPD: A comprehensive phosphorylation database in fungi. Fungal Biology 121:869–875. (Publication) (All modifications) |
[455, Phos] | Frankovsky, J., Vozáriková, V., Nosek, J., Tomáška, Ľ. (2021a). Mitochondrial protein phosphorylation in yeast revisited.Mitochondrion 57:148-162. (Publication) (All modifications) |
[493, Phos] | Lanz MC, Yugandhar K, Gupta S, Sanford EJ, Faça VM, Vega S, Joiner AMN, Fromme JC, Yu H, Smolka MB (2021). In-depth and 3-dimensional exploration of the budding yeast phosphoproteome. EMBO Reports, e51121. (Publication) (All modifications) |
[498, Phos] | Bai Y, Chen B, Li M, et al (2017) FPD: A comprehensive phosphorylation database in fungi. Fungal Biology 121:869–875. (Publication) (All modifications) |
[498, Phos] | Frankovsky, J., Vozáriková, V., Nosek, J., Tomáška, Ľ. (2021a). Mitochondrial protein phosphorylation in yeast revisited.Mitochondrion 57:148-162. (Publication) (All modifications) |
[500, Phos] | Bai Y, Chen B, Li M, et al (2017) FPD: A comprehensive phosphorylation database in fungi. Fungal Biology 121:869–875. (Publication) (All modifications) |
[500, Phos] | Frankovsky, J., Vozáriková, V., Nosek, J., Tomáška, Ľ. (2021a). Mitochondrial protein phosphorylation in yeast revisited.Mitochondrion 57:148-162. (Publication) (All modifications) |
[606, K-acetyl] | Šoštarić, N., O'Reilly, F.J., Giansanti, P., Heck, A.J.R., Gavin, A.C., van Noort, V. (2018). Effects of acetylation and phosphorylation on subunit interactions in three large eukaryotic complexes. Mol Cell Proteomics 17: 2387-2401. (Publication) (All modifications) |
[606, Ubi] | Swaney, D.L., Beltrao, P., Starita, L., Guo, A., Rush, J., Fields, S., Krogan, N.J., Villén, J. (2013). Global analysis of phosphorylation and ubiquitylation cross-talk in protein degradation. Nature Methods 10(7): 676-682. (Publication) (All modifications) |
[645, Phos] | Lanz MC, Yugandhar K, Gupta S, Sanford EJ, Faça VM, Vega S, Joiner AMN, Fromme JC, Yu H, Smolka MB (2021). In-depth and 3-dimensional exploration of the budding yeast phosphoproteome. EMBO Reports, e51121. (Publication) (All modifications) |
[764, Phos] | Lanz MC, Yugandhar K, Gupta S, Sanford EJ, Faça VM, Vega S, Joiner AMN, Fromme JC, Yu H, Smolka MB (2021). In-depth and 3-dimensional exploration of the budding yeast phosphoproteome. EMBO Reports, e51121. (Publication) (All modifications) |
[775, K-acetyl] | Šoštarić, N., O'Reilly, F.J., Giansanti, P., Heck, A.J.R., Gavin, A.C., van Noort, V. (2018). Effects of acetylation and phosphorylation on subunit interactions in three large eukaryotic complexes. Mol Cell Proteomics 17: 2387-2401. (Publication) (All modifications) |
[775, Ubi] | Swaney, D.L., Beltrao, P., Starita, L., Guo, A., Rush, J., Fields, S., Krogan, N.J., Villén, J. (2013). Global analysis of phosphorylation and ubiquitylation cross-talk in protein degradation. Nature Methods 10(7): 676-682. (Publication) (All modifications) |
[801, K-acetyl] | Šoštarić, N., O'Reilly, F.J., Giansanti, P., Heck, A.J.R., Gavin, A.C., van Noort, V. (2018). Effects of acetylation and phosphorylation on subunit interactions in three large eukaryotic complexes. Mol Cell Proteomics 17: 2387-2401. (Publication) (All modifications) |
[801, Ubi] | Swaney, D.L., Beltrao, P., Starita, L., Guo, A., Rush, J., Fields, S., Krogan, N.J., Villén, J. (2013). Global analysis of phosphorylation and ubiquitylation cross-talk in protein degradation. Nature Methods 10(7): 676-682. (Publication) (All modifications) |
[864, Ubi] | Swaney, D.L., Beltrao, P., Starita, L., Guo, A., Rush, J., Fields, S., Krogan, N.J., Villén, J. (2013). Global analysis of phosphorylation and ubiquitylation cross-talk in protein degradation. Nature Methods 10(7): 676-682. (Publication) (All modifications) |
[865, K-acetyl] | Šoštarić, N., O'Reilly, F.J., Giansanti, P., Heck, A.J.R., Gavin, A.C., van Noort, V. (2018). Effects of acetylation and phosphorylation on subunit interactions in three large eukaryotic complexes. Mol Cell Proteomics 17: 2387-2401. (Publication) (All modifications) |
[869, Phos] | Lanz MC, Yugandhar K, Gupta S, Sanford EJ, Faça VM, Vega S, Joiner AMN, Fromme JC, Yu H, Smolka MB (2021). In-depth and 3-dimensional exploration of the budding yeast phosphoproteome. EMBO Reports, e51121. (Publication) (All modifications) |
[890, Phos] | Lanz MC, Yugandhar K, Gupta S, Sanford EJ, Faça VM, Vega S, Joiner AMN, Fromme JC, Yu H, Smolka MB (2021). In-depth and 3-dimensional exploration of the budding yeast phosphoproteome. EMBO Reports, e51121. (Publication) (All modifications) |
[890, Phos] | Bai Y, Chen B, Li M, et al (2017) FPD: A comprehensive phosphorylation database in fungi. Fungal Biology 121:869–875. (Publication) (All modifications) |
[890, Phos] | Frankovsky, J., Vozáriková, V., Nosek, J., Tomáška, Ľ. (2021a). Mitochondrial protein phosphorylation in yeast revisited.Mitochondrion 57:148-162. (Publication) (All modifications) |
[892, K-acetyl] | Šoštarić, N., O'Reilly, F.J., Giansanti, P., Heck, A.J.R., Gavin, A.C., van Noort, V. (2018). Effects of acetylation and phosphorylation on subunit interactions in three large eukaryotic complexes. Mol Cell Proteomics 17: 2387-2401. (Publication) (All modifications) |
[914, Ubi] | Swaney, D.L., Beltrao, P., Starita, L., Guo, A., Rush, J., Fields, S., Krogan, N.J., Villén, J. (2013). Global analysis of phosphorylation and ubiquitylation cross-talk in protein degradation. Nature Methods 10(7): 676-682. (Publication) (All modifications) |
[915, Phos] | Lanz MC, Yugandhar K, Gupta S, Sanford EJ, Faça VM, Vega S, Joiner AMN, Fromme JC, Yu H, Smolka MB (2021). In-depth and 3-dimensional exploration of the budding yeast phosphoproteome. EMBO Reports, e51121. (Publication) (All modifications) |
[915, Phos] | Bai Y, Chen B, Li M, et al (2017) FPD: A comprehensive phosphorylation database in fungi. Fungal Biology 121:869–875. (Publication) (All modifications) |
[915, Phos] | Albuquerque, C.P., Smolka, M.B., Payne, S.H., Bafna, V., Eng, J., Zhou, H. (2008). A multidimensional chromatography technology for in-depth phosphoproteome analysis. Molecular and Cellular Proteomics 7(7):1389-1396. (Publication) (All modifications) |
[915, Phos] | Frankovsky, J., Vozáriková, V., Nosek, J., Tomáška, Ľ. (2021a). Mitochondrial protein phosphorylation in yeast revisited.Mitochondrion 57:148-162. (Publication) (All modifications) |
[916, Phos] | Lanz MC, Yugandhar K, Gupta S, Sanford EJ, Faça VM, Vega S, Joiner AMN, Fromme JC, Yu H, Smolka MB (2021). In-depth and 3-dimensional exploration of the budding yeast phosphoproteome. EMBO Reports, e51121. (Publication) (All modifications) |
[916, Phos] | Renvoisé M, Bonhomme L, Davanture M, et al (2014) Quantitative variations of the mitochondrial proteome and phosphoproteome during fermentative and respiratory growth in Saccharomyces cerevisiae. Journal of Proteomics 106:140–150. (Publication) (All modifications) |
[916, Phos] | Bai Y, Chen B, Li M, et al (2017) FPD: A comprehensive phosphorylation database in fungi. Fungal Biology 121:869–875. (Publication) (All modifications) |
[916, Phos] | Zhou, X., Li, W., Liu, Y., Amon, A. (2021. Cross-compartment signal propagation in the mitotic exit network. Elife 10:e63645. (Publication) (All modifications) |
[916, Phos] | Albuquerque, C.P., Smolka, M.B., Payne, S.H., Bafna, V., Eng, J., Zhou, H. (2008). A multidimensional chromatography technology for in-depth phosphoproteome analysis. Molecular and Cellular Proteomics 7(7):1389-1396. (Publication) (All modifications) |
[916, Phos] | Swaney, D.L., Beltrao, P., Starita, L., Guo, A., Rush, J., Fields, S., Krogan, N.J., Villén, J. (2013). Global analysis of phosphorylation and ubiquitylation cross-talk in protein degradation. Nature Methods 10(7): 676-682. (Publication) (All modifications) |
[916, Phos] | Frankovsky, J., Vozáriková, V., Nosek, J., Tomáška, Ľ. (2021a). Mitochondrial protein phosphorylation in yeast revisited.Mitochondrion 57:148-162. (Publication) (All modifications) |
[919, Phos] | Lanz MC, Yugandhar K, Gupta S, Sanford EJ, Faça VM, Vega S, Joiner AMN, Fromme JC, Yu H, Smolka MB (2021). In-depth and 3-dimensional exploration of the budding yeast phosphoproteome. EMBO Reports, e51121. (Publication) (All modifications) |
[919, Phos] | Vlastaridis P, Kyriakidou P, Chaliotis A, et al (2017) Estimating the total number of phosphoproteins and phosphorylation sites in eukaryotic proteomes. GigaScience 6:1–11. (Publication) (All modifications) |
[919, Phos] | Renvoisé M, Bonhomme L, Davanture M, et al (2014) Quantitative variations of the mitochondrial proteome and phosphoproteome during fermentative and respiratory growth in Saccharomyces cerevisiae. Journal of Proteomics 106:140–150. (Publication) (All modifications) |
[919, Phos] | Bai Y, Chen B, Li M, et al (2017) FPD: A comprehensive phosphorylation database in fungi. Fungal Biology 121:869–875. (Publication) (All modifications) |
[919, Phos] | Zhou, X., Li, W., Liu, Y., Amon, A. (2021. Cross-compartment signal propagation in the mitotic exit network. Elife 10:e63645. (Publication) (All modifications) |
[919, Phos] | Albuquerque, C.P., Smolka, M.B., Payne, S.H., Bafna, V., Eng, J., Zhou, H. (2008). A multidimensional chromatography technology for in-depth phosphoproteome analysis. Molecular and Cellular Proteomics 7(7):1389-1396. (Publication) (All modifications) |
[919, Phos] | Swaney, D.L., Beltrao, P., Starita, L., Guo, A., Rush, J., Fields, S., Krogan, N.J., Villén, J. (2013). Global analysis of phosphorylation and ubiquitylation cross-talk in protein degradation. Nature Methods 10(7): 676-682. (Publication) (All modifications) |
[919, Phos] | Frankovsky, J., Vozáriková, V., Nosek, J., Tomáška, Ľ. (2021a). Mitochondrial protein phosphorylation in yeast revisited.Mitochondrion 57:148-162. (Publication) (All modifications) |
[970, Phos] | Šoštarić, N., O'Reilly, F.J., Giansanti, P., Heck, A.J.R., Gavin, A.C., van Noort, V. (2018). Effects of acetylation and phosphorylation on subunit interactions in three large eukaryotic complexes. Mol Cell Proteomics 17: 2387-2401. (Publication) (All modifications) |
[971, Phos] | Šoštarić, N., O'Reilly, F.J., Giansanti, P., Heck, A.J.R., Gavin, A.C., van Noort, V. (2018). Effects of acetylation and phosphorylation on subunit interactions in three large eukaryotic complexes. Mol Cell Proteomics 17: 2387-2401. (Publication) (All modifications) |
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