Basic Information

Name1,3-beta-glucanosyltransferase GAS5 (EC 2.4.1.-) (Glycolipid-anchored surface protein 5)
Uniprot IDQ08193
Systematic gene nameYOL030W
Standard gene nameGAS5
Gene namesGAS5 YOL030W
Description from SGDYOL030W GAS5 SGDID:S000005390, Chr XV from 268187-269641, Genome Release 64-3-1, Verified ORF, "1,3-beta-glucanosyltransferase; has similarity to Gas1p; localizes to the cell wall"
Protein length484
Downloadsequence (fasta, from Uniprot), modifications (csv format)
Database linksUniprot, SGD, TheCellVision.org, FungiDB

Sequence

MLLRSLTSAF VLSAGLAQAA SSSNSSTPSI EIKGNAFFNS ESGERFYIRG
VDYQPGGSSN LTDPLADASV CDRDVPVLKD LGINTVRVYT VDNSQDHSHC
MKLLQENGIY LILDVNTPTS AISRYDPACS YNADYLQNVF ATIDTFADYD
NVLGFFAGNE VINSVNTTNT ATYVKAVVRD MKKYIKARKY RQIPVGYSAA
DIVANRQLAA EYFNCGDEAD ARIDMFGVND YSWCGESSFV VSGYSTKMKL
YQDYSVPVFL SEFGCNQVKS SRPFTEIEAI YSTQMSSVFS GGLVYEYSNE
TNNYGLVQID GDKVTKLTDF ENLKNEYSKV SNPEGNGGYS TSNNYSTCPD
YEKGVWEANN TLPAMPSAAS AYFTSGAGSP MGTGIATQQS CDAKDDDDEE
DDDTSSSSSS SSSSSSSASS SSESSSSTSK ASSSSPSASE TSLLKSAASA
TSSSQSSSKS KGAAGIIEIP LIFRALAELY NLVL

Legend

  • X Glycosylation
  • X Phoshorylation

Structure

Structure visualized by GLmol written by biochem_fan. The structure was downloaded from the AlphaFold Protein Structure Database.


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References

[24, Glyc]Yeo, K.Y.B., Chrysanthopoulos, P.K., Nouwens, A.S., Marcellin, E., Schulz, B.L. (2016). High-performance targeted mass spectrometry with precision data-independent acquisition reveals site-specific glycosylation macroheterogeneity. Anal Biochem 510: 106-113. (Publication) (All modifications)
[60, Glyc]Zielinska, D.F.,  Gnad, F.,  Schropp, K.,  Wiśniewski, J.R.,  Mann, M. (2012). Mapping N-glycosylation sites across seven evolutionarily distant species reveals a divergent substrate proteome despite a common core machinery. Mol Cell 46: 542-548. (Publication) (All modifications)
[60, Glyc]Yeo, K.Y.B., Chrysanthopoulos, P.K., Nouwens, A.S., Marcellin, E., Schulz, B.L. (2016). High-performance targeted mass spectrometry with precision data-independent acquisition reveals site-specific glycosylation macroheterogeneity. Anal Biochem 510: 106-113. (Publication) (All modifications)
[62, Phos]Rekstina, V.V., Bykova, A.A., Ziganshin, R.H., Kalebina, T.S. (2019). GPI-Modified Proteins Non-covalently Attached to Saccharomyces cerevisiae Yeast Cell Wall. Biochemistry (Mosc) 84: 1513-1520 (Publication) (All modifications)
[90, Phos]Rekstina, V.V., Bykova, A.A., Ziganshin, R.H., Kalebina, T.S. (2019). GPI-Modified Proteins Non-covalently Attached to Saccharomyces cerevisiae Yeast Cell Wall. Biochemistry (Mosc) 84: 1513-1520 (Publication) (All modifications)
[212, Phos]Rekstina, V.V., Bykova, A.A., Ziganshin, R.H., Kalebina, T.S. (2019). GPI-Modified Proteins Non-covalently Attached to Saccharomyces cerevisiae Yeast Cell Wall. Biochemistry (Mosc) 84: 1513-1520 (Publication) (All modifications)
[255, Phos]Rekstina, V.V., Bykova, A.A., Ziganshin, R.H., Kalebina, T.S. (2019). GPI-Modified Proteins Non-covalently Attached to Saccharomyces cerevisiae Yeast Cell Wall. Biochemistry (Mosc) 84: 1513-1520 (Publication) (All modifications)