Active Sites Display

WP_094235346.1:JDJFOMJM_00644
Sequence length: 107 aa
2 domain hit(s)
This protein was scanned against CAZyme family profile alignments to identify conserved domains. Each hit below shows a region of the query that aligns to a known CAZyme family. Within each family profile, certain residues are known or predicted to be catalytic — directly involved in the enzyme's chemical reaction. The sequence display compares these critical positions between the query protein and the family consensus:
Match: the query has the expected catalytic residue, suggesting this active site is conserved and likely functional.
Mismatch: the query has a different residue at this position, which may indicate altered activity, a non-functional site, or subfamily variation.
Gap: the catalytic position in the profile has no corresponding residue in the query alignment, suggesting a deletion or truncation in this region.
Match
Mismatch
Gap
Active Site Conservation Analysis
EntryClassNameDomain RangeCoverageConservationCat. SitesMatches
IPR000974GHGlycoside hydrolase, family 22, lysozyme89–107100%50%20
PF03633GHGlycosyl hydrolase family 65, C-terminal domain1–9787.7%42.9%00
Domain coverage (1–107 aa)
IPR000974 — Glycoside hydrolase, family 22, lysozyme (domain 89–107)
Cross-ref: InterPro: IPR000974
GO: GO:0003796 lysozyme activity
1 11 21 31 41 51 61 71 81 91 101 Query: MTINIEALKQ GLDDVRERHL QFESEVKDEL SKIKDTLVAQ AVANSRNETI LSSLVEEIKS FRSEFMNLLT ESVKASNSQN SGWHELAVKV VMSVLALAAA AYGVSKL Profile: ·········· ·········· ·········· ·········· ·········· ·········· ·········· ·········· ·········· ·RC······· ·······
query > profileM92>R4S93>C5
PF03633 — Glycosyl hydrolase family 65, C-terminal domain (domain 1–97)
1 11 21 31 41 51 61 71 81 91 101 Query: MTINIEALKQ GLDDVRERHL QFESEVKDEL SKIKDTLVAQ AVANSRNETI LSSLVEEIKS FRSEFMNLLT ESVKASNSQN SGWHELAVKV VMSVLALAAA AYGVSKL Profile: ·········· ·········· ·········· ·········· ·········· ·········· ·········· ·········· ·········· ·········· ·······
query > profile
↑ Top





v1.01 @copyright 2026 UCLA