Hmdb loader
Identification
HMDB Protein ID HMDBP08575
Secondary Accession Numbers
  • 14289
Name Protein transport protein Sec16A
Synonyms
  1. SEC16 homolog A
Gene Name SEC16A
Protein Type Unknown
Biological Properties
General Function Involved in protein transport
Specific Function Defines endoplasmic reticulum exit sites (ERES) and is required for secretory cargo traffic from the endoplasmic reticulum to the Golgi apparatus. SAR1A-GTP-dependent assembly of SEC16A on the ER membrane forms an organized scaffold defining an ERES. Required for normal transitional endoplasmic reticulum (tER) organization
Pathways Not Available
Reactions Not Available
GO Classification Not Available
Cellular Location
  1. Golgi apparatus membrane
  2. Peripheral membrane protein
  3. Endoplasmic reticulum membrane
  4. Peripheral membrane protein (Potential)
Gene Properties
Chromosome Location Chromosome:9
Locus 9q34.3
SNPs SEC16A
Gene Sequence
>7074 bp
ATGCAGCCACCGCCCCAGACGGTCCCGTCTGGCATGGCTGGGCCACCTCCAGCCGGGAAT
CCTCGGAGCGTGTTCTGGGCTAGCAGCCCTTACAGGAGACGGGCTAATAATAATGCAGCA
GTGGCTCCGACAACTTGCCCGTTGCAGCCGGTCACGGATCCATTTGCTTTTAGTAGACAG
GCGCTCCAAAGTACACCACTGGGCAGTTCGTCCAAAAGCAGTCCACCTGTCTTGCAAGGC
CCAGCCCCCGCAGGGTTTTCTCAGCACCCCGGTTTGCTTGTTCCTCACACACATGCCAGA
GATAGCTCTCAGGGACCCTGTGAGCCCCTGCCTGGACCTCTGACACAGCCCAGAGCACAT
GCCAGTCCGTTTTCTGGTGCATTGACACCTTCAGCACCTCCTGGGCCTGAGATGAACAGG
AGTGCAGAGGTCGGTCCCAGTTCAGAGCCTGAAGTTCAGACTCTGCCATATCTTCCTCAC
TACATTCCAGGAGTGGATCCTGAAACGTCTCATGGGGGCCACCCTCATGGGAACATGCCT
GGGCTCGACCGACCCCTGAGCAGGCAAAACCCACATGACGGTGTGGTCACCCCAGCAGCA
TCCCCTTCCCTCCCTCAGCCTGGTCTGCAGATGCCAGGACAGTGGGGGCCAGTGCAGGGA
GGCCCACAGCCCTCGGGGCAACATCGTTCACCCTGCCCTGAAGGACCTGTTCCCAGCGGG
GTGCCCTGTGCCACCAGCGTTCCTCATTTCCCCACCCCGTCCATCCTACATCAGGGCCCT
GGTCATGAGCAACACAGCCCTCTGGTGGCTCCCCCAGCAGCCTTGCCCAGTGACGGAAGA
GACGAGGTGAGCCACTTGCAAAGTGGAAGCCACCTGGCCAATAACTCTGATCCTGAAAGT
ACATTCAGGCAAAATCCCAGAATTGTGAATCACTGGGCAAGCCCAGAGCTCAGGCAGAAT
CCAGGAGTGAAGAATGAGCACCGGCCCGCCTCTGCTCTTGTGAACCCCCTCGCCCGGGGA
GATAGCCCAGAAAACCGTACGCACCACCCACTGGGGGCTGGGGCCGGGTCTGGCTGTGCC
CCGCTAGAAGCAGACTCAGGAGCTTCAGGAGCTCTGGCGATGTTTTTCCAAGGGGGAGAG
ACAGAAAATGAGGAGAATCTCTCATCTGAAAAAGCAGGCTTATCTGGTCAAGCGGACTTT
GACGATTTCTGCTCCAGCCCTGGGCTAGGCCGTCCGCCCGCACCTACACACGTGGGGGCA
GGCAGCCTCTGCCAGGCCCTTCTCCCAGGCCCCAGCAATGAGGCTGCTGGTGATGTGTGG
GGTGACACAGCGAGCACAGGGGTGCCGGATGCCAGCGGCTCGCAGTATGAGAATGTTGAG
AACTTAGAATTTGTTCAGAATCAAGAAGTTCTGCCAAGTGAGCCCCTCAATTTGGACCCT
TCCTCCCCGAGTGACCAGTTCAGATATGGGCCCCTTCCTGGGCCAGCTGTGCCCAGGCAT
GGTGCTGTGTGCCACACCGGAGCCCCTGATGCCACACTGCATACAGTGCACCCTGACAGC
GTGTCATCCAGCTATAGCAGCAGAAGCCACGGAAGGCTCTCAGGCTCAGCCAGGCCCCAG
GAGCTGGTTGGCACATTCATTCAGCAAGAAGTTGGAAAACCCGAGGATGAAGCTTCAGGT
AGTTTTTTTAAGCAAATCGATTCTTCTCCCGTAGGAGGTGAAACAGACGAGACCACTGTG
AGCCAGAATTACCGTGGCAGCGTGTCCCAGCCCTCAACCCCGAGCCCCCCGAAACCTACA
GGAATATTTCAGACAAGTGCAAATAGTTCTTTCGAACCGGTAAAATCTCACTTAGTTGGG
GTAAAACCATTTGAGGCAGATCGCGCCAACGTGGTTGGTGAAGTAAGGGAGACCTGTGTC
CGCCAGAAGCAGTGCAGACCAGCTGCCGCCCTGCCCGATGCTTCCCCTGGCAACCTGGAG
CAGCCACCAGACAACATGGAGACCCTCTGTGCACCCCAGGTCTGTCCCCTGCCTCTTAAC
TCCACCACGGAAGCTGTGCACATGCTTCCGCACGCAGGGGCACCGCCCTTGGATACTGTG
TATCCAGCACCCGAGAAGAGGCCTTCAGCCAGGACCCAGGGGCCCGTGAAGTGTGAGAGC
CCAGCAACGACTCTGTGGGCGCAAAGTGAGCTGCCAGATTTTGGAGGCAACGTCCTTCTG
GCCCCTGCAGCCCCGGCGCTTTATGTGTGTGCAAAACCTCAGCCACCTGTTGTTCAGCCT
CCAGAAGAGGCGATGTCCGGGCAGCAGTCACGGAACCCAAGCTCGGCGGCCCCGGTGCAG
AGCCGAGGTGGCATTGGTGCTTCTGAGAACCTTGAGAATCCTCCCAAAATGGGAGAGGAG
GAGGCCCTTCAGTCCCAGGCGAGTTCTGGTTATGCAAGTTTATTATCCTCACCGCCCACT
GAGTCTCTGCAGAATCCTCCAGTCTTGATTGCTCAGCCTGATCACAGCTATAATCTGGCT
CAGCCCATTAACTTTTCTGTGTCCTTATCGAACTCTCATGAGAAGAATCAGTCCTGGAGA
GAGGCTTTGGTGGGGGATAGACCTGCAGTCAGCAGTTGGGCTCTCGGTGGTGATTCTGGG
GAGAACACTTCTTTGTCTGGGATTCCAACCAGCTCTGTCCTTAGCTTGTCTCTGCCTAGC
AGTGTTGCCCAAAGTAATTTTCCACAAGGTTCTGGTGCTTCCGAAATGGTTTCTAATCAG
CCTGCTAATTTGCTGGTTCAACCACCATCCCAGCCAGTTCCAGAGAACTTGGTTCCAGAA
AGTCAAAAGGATCGTAAGGCAGGAAGTGCTCTTCCCGGATTTGCTAATAGCCCTGCTGGA
AGCACAAGTGTGGTGTTAGTTCCACCTGCACACGGCACCCTGGTGCCTGATGGTAATAAG
GCAAACCATTCCAGTCATCAGGAAGACACTTACGGAGCCCTAGACTTTACCTTAAGCAGG
ACTTTGGAAAATCCTGTAAACGTGTACAACCCGTCCCATTCTGACAGCCTCGCTTCTCAG
CAAAGTGTTGCCAGTCATCCCAGACAATCTGGGCCTGGGGCGCCTAACCTTGACCGTTTT
TATCAGCAGGTCACGAAAGATGCCCAGGGCCAGCCTGGCCTCGAAAGAGCCCAGCAGGAG
CTGGTGCCACCCCAGCAACAGGCTTCTCCCCCACAACTACCCAAAGCCATGTTTTCGGAG
CTGTCAAATCCAGAAAGTCTGCCCGCACAGGGACAGGCCCAGAACTCAGCACAGTCACCA
GCAAGTCTGGTTCTGGTCGACGCGGGTCAGCAGCTGCCCCCTCGGCCTCCTCAGTCCTCT
AGCGTGTCTCTGGTGTCCAGTGGCTCCGGCCAGGCAGCTGTGCCGTCAGAGCAGCCGTGG
CCACAGCCAGTGCCTGCACTTGCCCCCGGCCCACCGCCTCAGGACCTGGCCGCCTACTAC
TACTACCGGCCTTTGTACGATGCCTACCAGCCTCAGTACTCTTTGCCGTACCCACCGGAG
CCTGGCGCAGCCTCCCTCTATTACCAGGATGTCTACAGCCTCTATGAGCCTCGATACAGG
CCCTATGATGGTGCTGCGTCTGCTTACGCCCAGAACTACCGCTATCCCGAGCCCGAGCGG
CCCAGCTCCCGAGCCAGCCACTCCTCGGAACGGCCACCTCCCAGGCAAGGATATCCTGAA
GGATACTATAGTTCCAAAAGTGGATGGAGCAGTCAGAGCGATTACTATGCAAGCTATTAC
TCCAGCCAGTACGATTATGGAGATCCAGGTCACTGGGATCGTTACCACTACAGTGCTAGA
GTCAGGGACCCCCGCACCTATGACCGGAGGTATTGGTGTGATGCAGAGTATGACGCATAC
AGGAGAGAGCACTCTGCCTTCGGGGACAGGCCCGAGAAACGTGACAACAACTGGAGGTAC
GATCCTCGCTTCACGGGGAGTTTTGACGATGACCCCGATCCGCACAGAGACCCTTATGGG
GAAGAGGTGGACCGGCGCAGCGTCCACAGCGAGCACTCGGCACGGAGCCTGCACAGCGCA
CACAGCCTGGCCAGCCGCCGCAGCAGCCTCAGCTCCCACTCGCACCAGAGTCAGATTTAC
AGAAGCCACAATGTGGCTGCCGGTTCCTACGAGGCCCCGCTTCCTCCAGGCTCCTTTCAC
GGCGATTTTGCCTACGGCACCTACCGCAGCAATTTCAGCAGTGGCCCCGGCTTCCCAGAG
TATGGCTACCCTGCCGACACCGTCTGGCCTGCCATGGAGCAAGTTTCATCAAGACCAACT
TCTCCTGAAAAATTTTCAGTGCCTCATGTCTGTGCCAGGTTTGGCCCTGGCGGTCAGCTT
ATCAAAGTGATTCCCAATCTGCCTTCAGAAGGACAGCCGGCCTTGGTGGAGGTCCACAGC
ATGGAGGCCTTGCTGCAGCACACGTCTGAGCAGGAGGAGATGCGGGCGTTCCCGGGACCC
CTGGCCAAAGACGACACCCATAAGGTGGATGTCATTAATTTTGCACAGAACAAAGCTATG
AAATGTTTGCAGAATGAAAACTTAATTGACAAAGAGTCTGCAAGTCTTCTTTGGAATTTT
ATTGTTCTCTTATGCAGACAAAATGGGACCGTGGTAGGGACCGACATTGCGGAGCTTCTG
TTACGAGACCACAGAACAGTGTGGCTTCCTGGGAAGTCGCCCAATGAAGCAAACCTGATT
GATTTCACGAATGAGGCAGTGGAGCAGGTGGAAGAGGAGGAGTCTGGTGAGGCCCAGCTC
TCTTTCCTCACTGGTGGTCCGGCGGCTGCCGCCAGCTCGCTCGAGAGAGAGACCGAGAGG
TTCAGGGAGCTGTTGCTGTATGGCCGTAAGAAGGATGCTTTGGAGTCTGCAATGAAGAAT
GGCCTGTGGGGTCACGCTCTGCTACTTGCAAGTAAGATGGACAGCCGGACACACGCCCGA
GTCATGACCAGGTTTGCTAACAGCCTCCCAATCAACGACCCTCTGCAGACAGTCTACCAG
CTCATGTCCGGACGGATGCCTGCCGCGTCCACGTGCTGTGGAGACGAGAAATGGGGAGAT
TGGAGGCCGCACCTCGCCATGGTCTTGTCCAACTTGAACAACAACATGGACGTCGAGTCC
AGGACGATGGCTACCATGGGCGACACTCTGGCTTCAAGGGGCCTCTTGGATGCGGCCCAC
TTCTGCTACCTCATGGCCCAGGCGGGATTTGGTGTTTACACGAAGAAAACTACAAAGCTT
GTCTTAATCGGATCCAATCACAGTTTGCCATTCTTAAAGTTCGCAACCAACGAAGCAATC
CAGAGGACGGAAGCCTATGAGTACGCCCAGTCCCTGGGTGCCGAGACCTGCCCCCTGCCT
AGTTTCCAGGTGTTTAAGTTCATCTACTCCTGCCGCCTGGCGGAAATGGGGCTGGCCACG
CAAGCCTTCCACTACTGTGAGGCCATCGCGAAGAGCATCCTGACGCAGCCGCACCTGTAT
TCCCCGGTGTTGATCAGCCAGCTTGTGCAGATGGCTTCCCAGTTACGACTCTTCGATCCC
CAGCTGAAAGAGAAGCCAGAAGAGGAGTCCTTGGCCGCACCCACGTGGCTGGTTCACCTG
CAGCAGGTGGAGCGGCAGATTAAGGAGGGGGCTGGAGTATGGCATCAGGATGGAGCCCTC
CCGCAGCAGTGTCCTGGCACTCCGAGTTCCGAGATGGAGCAGTTGGACAGGCCAGGACTC
AGTCAGCCAGGAGCCCTGGGGATCGCCAACCCTCTGCTGGCGGTGCCTGCACCGAGCCCT
GAGCACTCGAGCCCGAGCGTGCGGCTGCTGCCCTCAGCTCCGCAGACGCTCCCTGACGGC
CCATTGGCCAGTCCTGCCAGAGTGCCGATGTTCCCAGTGCCACTGCCCCCGGGGCCCCTG
GAGCCGGGTCCTGGCTGTGTGACCCCAGGGCCTGCACTTGGCTTCCTGGAGCCCTCCGGG
CCTGGCCTCCCACCTGGTGTGCCACCTCTGCAGGAAAGGAGACACTTGCTCCAGGAAGCC
AGGAGCCCAGACCCAGGGATAGTGCCGCAGGAGGCGCCTGTTGGAAACTCACTTTCCGAG
CTAAGCGAAGAAAATTTTGATGGAAAATTTGCTAATCTGACCCCCTCGAGGACGGTGCCA
GACTCGGAGGCCCCCCCAGGGTGGGATCGTGCCGACTCGGGTCCCACGCAGCCACCTCTG
TCTCTCTCACCCGCTCCCGAAACAAAGAGACCCGGACAGGCAGCCAAGAAAGAAACGAAG
GAACCTAAGAAGGGTGAATCCTGGTTCTTTCGTTGGCTACCTGGAAAGAAAAAGACAGAA
GCTTATTTGCCAGATGACAAGAACAAATCGATTGTTTGGGATGAAAAGAAAAACCAGTGG
GTGAATTTAAATGAGCCAGAAGAGGAGAAGAAAGCCCCGCCCCCACCTCCAACCTCGATG
CCCAAGACTGTGCAAGCTGCCCCGCCTGCCCTCCCAGGGCCTCCTGGAGCCCCCGTGAAC
ATGTACTCTAGAAGAGCAGCAGGAACCAGAGCTCGCTACGTTGACGTCCTGAACCCAAGC
GGGACCCAGCGGAGCGAGCCGGCTCTCGCTCCTGCGGACTTTGTCGCTCCACTCGCGCCA
CTCCCAATTCCTTCTAACTTGTTCGTGCCAACCCCAGATGCAGAAGAACCACAGCTTCCA
GACGGGACTGGCAGGGAAGGGCCTGCAGCAGCTAGGGGCCTGGCCAATCCAGAGCCTGCC
CCAGAGCCCAAGGTTTTAAGCTCTGCAGCGTCACTCCCTGGCTCTGAACTCCCCTCCTCC
AGGCCTGAGGGTTCCCAGGGAGGAGAGCTTTCGCGCTGTAGTTCAATGAGTTCATTATCA
CGTGAAGTGAGCCAGCATTTTAATCAGGCTCCTGGCGACCTCCCTGCTGCAGGGGGCCCT
CCCAGCGGGGCCATGCCCTTCTACAACCCTGCTCAGCTGGCACAGGCCTGCGCCACCTCC
GGGAGCTCAAGGCTAGGGAGGATTGGCCAGAGGAAGCACCTGGTGCTGAACTAG
Protein Properties
Number of Residues 2179
Molecular Weight 233515.1
Theoretical pI 5.37
Pfam Domain Function Not Available
Signals
  • None
Transmembrane Regions
  • None
Protein Sequence
>Protein transport protein Sec16A
MPGLDRPLSRQNPHDGVVTPAASPSLPQPGLQMPGQWGPVQGGPQPSGQHRSPCPEGPVP
SGVPCATSVPHFPTPSILHQGPGHEQHSPLVAPPAALPSDGRDEVSHLQSGSHLANNSDP
ESTFRQNPRIVNHWASPELRQNPGVKNEHRPASALVNPLARGDSPENRTHHPLGAGAGSG
CAPLEADSGASGALAMFFQGGETENEENLSSEKAGLSGQADFDDFCSSPGLGRPPAPTHV
GAGSLCQALLPGPSNEAAGDVWGDTASTGVPDASGSQYENVENLEFVQNQEVLPSEPLNL
DPSSPSDQFRYGPLPGPAVPRHGAVCHTGAPDATLHTVHPDSVSSSYSSRSHGRLSGSAR
PQELVGTFIQQEVGKPEDEASGSFFKQIDSSPVGGETDETTVSQNYRGSVSQPSTPSPPK
PTGIFQTSANSSFEPVKSHLVGVKPFEADRANVVGEVRETCVRQKQCRPAAALPDASPGN
LEQPPDNMETLCAPQVCPLPLNSTTEAVHMLPHAGAPPLDTVYPAPEKRPSARTQGPVKC
ESPATTLWAQSELPDFGGNVLLAPAAPALYVCAKPQPPVVQPPEEAMSGQQSRNPSSAAP
VQSRGGIGASENLENPPKMGEEEALQSQASSGYASLLSSPPTESLQNPPVLIAQPDHSYN
LAQPINFSVSLSNSHEKNQSWREALVGDRPAVSSWALGGDSGENTSLSGIPTSSVLSLSL
PSSVAQSNFPQGSGASEMVSNQPANLLVQPPSQPVPENLVPESQKDRKAGSALPGFANSP
AGSTSVVLVPPAHGTLVPDGNKANHSSHQEDTYGALDFTLSRTLENPVNVYNPSHSDSLA
SQQSVASHPRQSGPGAPNLDRFYQQVTKDAQGQPGLERAQQELVPPQQQASPPQLPKAMF
SELSNPESLPAQGQAQNSAQSPASLVLVDAGQQLPPRPPQSSSVSLVSSGSGQAAVPSEQ
PWPQPVPALAPGPPPQDLAAYYYYRPLYDAYQPQYSLPYPPEPGAASLYYQDVYSLYEPR
YRPYDGAASAYAQNYRYPEPERPSSRASHSSERPPPRQGYPEGYYSSKSGWSSQSDYYAS
YYSSQYDYGDPGHWDRYHYSARVRDPRTYDRRYWCDAEYDAYRREHSAFGDRPEKRDNNW
RYDPRFTGSFDDDPDPHRDPYGEEVDRRSVHSEHSARSLHSAHSLASRRSSLSSHSHQSQ
IYRSHNVAAGSYEAPLPPGSFHGDFAYGTYRSNFSSGPGFPEYGYPADTVWPAMEQVSSR
PTSPEKFSVPHVCARFGPGGQLIKVIPNLPSEGQPALVEVHSMEALLQHTSEQEEMRAFP
GPLAKDDTHKVDVINFAQNKAMKCLQNENLIDKESASLLWNFIVLLCRQNGTVVGTDIAE
LLLRDHRTVWLPGKSPNEANLIDFTNEAVEQVEEEESGEAQLSFLTGGPAAAASSLERET
ERFRELLLYGRKKDALESAMKNGLWGHALLLASKMDSRTHARVMTRFANSLPINDPLQTV
YQLMSGRMPAASTCCGDEKWGDWRPHLAMVLSNLNNNMDVESRTMATMGDTLASRGLLDA
AHFCYLMAQAGFGVYTKKTTKLVLIGSNHSLPFLKFATNEAIQRTEAYEYAQSLGAETCP
LPSFQVFKFIYSCRLAEMGLATQAFHYCEAIAKSILTQPHLYSPVLISQLVQMASQLRLF
DPQLKEKPEEESLAAPTWLVHLQQVERQIKEGAGVWHQDGALPQQCPGTPSSEMEQLDRP
GLSQPGALGIANPLLAVPAPSPEHSSPSVRLLPSAPQTLPDGPLASPARVPMFPVPLPPG
PLEPGPGCVTPGPALGFLEPSGPGLPPGVPPLQERRHLLQEARSPDPGIVPQEAPVGNSL
SELSEENFDGKFANLTPSRTVPDSEAPPGWDRADSGPTQPPLSLSPAPETKRPGQAAKKE
TKEPKKGESWFFRWLPGKKKTEAYLPDDKNKSIVWDEKKNQWVNLNEPEEEKKAPPPPPT
SMPKTVQAAPPALPGPPGAPVNMYSRRAAGTRARYVDVLNPSGTQRSEPALAPADFVAPL
APLPIPSNLFVPTPDAEEPQLPDGTGREGPAAARGLANPEPAPEPKVLSSAASLPGSELP
SSRPEGSQGGELSRCSSMSSLSREVSQHFNQAPGDLPAAGGPPSGAMPFYNPAQLAQACA
TSGSSRLGRIGQRKHLVLN
GenBank ID Protein 124378039
UniProtKB/Swiss-Prot ID O15027
UniProtKB/Swiss-Prot Entry Name SC16A_HUMAN
PDB IDs Not Available
GenBank Gene ID Not Available
GeneCard ID SEC16A
GenAtlas ID SEC16A
HGNC ID HGNC:29006
References
General References
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  3. Dephoure N, Zhou C, Villen J, Beausoleil SA, Bakalarski CE, Elledge SJ, Gygi SP: A quantitative atlas of mitotic phosphorylation. Proc Natl Acad Sci U S A. 2008 Aug 5;105(31):10762-7. doi: 10.1073/pnas.0805139105. Epub 2008 Jul 31. [PubMed:18669648 ]
  4. Mayya V, Lundgren DH, Hwang SI, Rezaul K, Wu L, Eng JK, Rodionov V, Han DK: Quantitative phosphoproteomic analysis of T cell receptor signaling reveals system-wide modulation of protein-protein interactions. Sci Signal. 2009 Aug 18;2(84):ra46. doi: 10.1126/scisignal.2000007. [PubMed:19690332 ]
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  8. Olsen JV, Blagoev B, Gnad F, Macek B, Kumar C, Mortensen P, Mann M: Global, in vivo, and site-specific phosphorylation dynamics in signaling networks. Cell. 2006 Nov 3;127(3):635-48. [PubMed:17081983 ]
  9. Yu LR, Zhu Z, Chan KC, Issaq HJ, Dimitrov DS, Veenstra TD: Improved titanium dioxide enrichment of phosphopeptides from HeLa cells and high confident phosphopeptide identification by cross-validation of MS/MS and MS/MS/MS spectra. J Proteome Res. 2007 Nov;6(11):4150-62. Epub 2007 Oct 9. [PubMed:17924679 ]
  10. Imami K, Sugiyama N, Kyono Y, Tomita M, Ishihama Y: Automated phosphoproteome analysis for cultured cancer cells by two-dimensional nanoLC-MS using a calcined titania/C18 biphasic column. Anal Sci. 2008 Jan;24(1):161-6. [PubMed:18187866 ]
  11. Gauci S, Helbig AO, Slijper M, Krijgsveld J, Heck AJ, Mohammed S: Lys-N and trypsin cover complementary parts of the phosphoproteome in a refined SCX-based approach. Anal Chem. 2009 Jun 1;81(11):4493-501. doi: 10.1021/ac9004309. [PubMed:19413330 ]
  12. Matsuoka S, Ballif BA, Smogorzewska A, McDonald ER 3rd, Hurov KE, Luo J, Bakalarski CE, Zhao Z, Solimini N, Lerenthal Y, Shiloh Y, Gygi SP, Elledge SJ: ATM and ATR substrate analysis reveals extensive protein networks responsive to DNA damage. Science. 2007 May 25;316(5828):1160-6. [PubMed:17525332 ]
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  14. Beausoleil SA, Villen J, Gerber SA, Rush J, Gygi SP: A probability-based approach for high-throughput protein phosphorylation analysis and site localization. Nat Biotechnol. 2006 Oct;24(10):1285-92. Epub 2006 Sep 10. [PubMed:16964243 ]
  15. Nakajima D, Okazaki N, Yamakawa H, Kikuno R, Ohara O, Nagase T: Construction of expression-ready cDNA clones for KIAA genes: manual curation of 330 KIAA cDNA clones. DNA Res. 2002 Jun 30;9(3):99-106. [PubMed:12168954 ]
  16. Han G, Ye M, Zhou H, Jiang X, Feng S, Jiang X, Tian R, Wan D, Zou H, Gu J: Large-scale phosphoproteome analysis of human liver tissue by enrichment and fractionation of phosphopeptides with strong anion exchange chromatography. Proteomics. 2008 Apr;8(7):1346-61. doi: 10.1002/pmic.200700884. [PubMed:18318008 ]
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  19. Bhattacharyya D, Glick BS: Two mammalian Sec16 homologues have nonredundant functions in endoplasmic reticulum (ER) export and transitional ER organization. Mol Biol Cell. 2007 Mar;18(3):839-49. Epub 2006 Dec 27. [PubMed:17192411 ]