Diospyros kaki (Kaki persimmon) (Diospyros chinensis) Serine carboxypeptitase-like protein 1 dkSCPL1
Comment
dkSCPL1 has a T instead of the serine in the catalytic triad: probably no catalytic activity but partner of another Serine carboxypeptitase-like protein
(Below N is a link to NCBI taxonomic web page and E link to ESTHER at designed phylum.) > cellular organisms: NE > Eukaryota: NE > Viridiplantae: NE > Streptophyta: NE > Streptophytina: NE > Embryophyta: NE > Tracheophyta: NE > Euphyllophyta: NE > Spermatophyta: NE > Magnoliophyta: NE > Mesangiospermae: NE > eudicotyledons: NE > Gunneridae: NE > Pentapetalae: NE > asterids: NE > Ericales: NE > Ebenaceae: NE > Diospyros: NE > Diospyros kaki: NE
LegendThis sequence has been compared to family alignement (MSA) red => minority aminoacid blue => majority aminoacid color intensity => conservation rate title => sequence position(MSA position)aminoacid rate Catalytic site Catalytic site in the MSA MAMAASPSIVKFLPGFDGELPFKLETGYIGVGEIDEVQLFYYFVESQGDP SNDPLILWLTGGPGCSGFSALVYEIGPLLFKVQSWKPGTLPSLRASKNSW TKVANIIFIDQPVGTGFSYGTTAAAYNSSDTVAAAQVYKFLRKWLMYNPK FGANPLYVGGDLYSGITVPLLVQTILDGIGSGSLPRMQLKGYLLGNPLTD DFIDANSKIPYAFRVNLLSDELYEDAEVSCNGDFVNVDFNNTNCVAVLQG IKENLQLLNEAQNFGPLCALAKPKGEGIQWGAEEAEFTDSLILQDIIPQL TCRSSSWMLSYIYMNDEGVQRALGVKEGTMNSTWRRCAKSLPFYEEDVSS TVAYHKNFTRTALRALIYSGDQALSIPYLGTLEWINSLGVPIFDTWRPWF VDGQVAGYTQKYEKNSYSLTFATVKGAGETAPEYKRKEALAMVNRWFAGY PV
Serine carboxypeptidase-like acyltransferases (SCPL-ATs) play a vital role in the diversification of plant metabolites. Galloylated flavan-3-ols highly accumulate in tea (Camellia sinensis), grape (Vitis vinifera), and persimmon (Diospyros kaki). To date, the biosynthetic mechanism of these compounds remains unknown. Herein, we report that two SCPL-AT paralogs are involved in galloylation of flavan-3-ols: CsSCPL4, which contains the conserved catalytic triad S-D-H, and CsSCPL5, which has the alternative triad T-D-Y. Integrated data from transgenic plants, recombinant enzymes, and gene mutations showed that CsSCPL4 is a catalytic acyltransferase, while CsSCPL5 is a non-catalytic companion paralog (NCCP). Co-expression of CsSCPL4 and CsSCPL5 is likely responsible for the galloylation. Furthermore, pull-down and co-immunoprecipitation assays showed that CsSCPL4 and CsSCPL5 interact, increasing protein stability and promoting post-translational processing. Moreover, phylogenetic analyses revealed that their homologs co-exist in galloylated flavan-3-ol- or hydrolyzable tannin-rich plant species. Enzymatic assays further revealed the necessity of co-expression of those homologs for acyltransferase activity. Evolution analysis revealed that the mutations of the CsSCPL5 catalytic residues may have taken place about 10 million years ago. These findings show that the co-expression of SCPL-ATs and their NCCPs contributes to the acylation of flavan-3-ols in the plant kingdom.