4.D.3.1.7 Cellulose synthase complex for secondary cell wall synthesis including CESA1, 3 and 6, all catalytic subunits (see 4.D.3.1.4) (Watanabe et al. 2015). A homolog (83% identical to Q8LPK5) from Populus tomentosa (Chinese white poplar) (CesA8) alone secretes the nascent polymer through a channel formed by its own transmembrane domain dependent on a lipid bilayer and Mn2+ to form microfibrils in vitro (Purushotham et al. 2016). CesA8, of 1055 aas and 6 - 8 TMSs, makes cellulose from
UDP-activated glucose molecules. CesA8 is a
membrane-integrated processive glycosyltransferase (Verma et al. 2023). It couples the elongation of the cellulose polymer with its translocation across the plasma membrane. Verma et al. 2023 presented substrate and product-bound cryogenic EM
structures of the homotrimeric CesA8 from
hybrid aspen (poplar). UDP-glucose binds to a conserved catalytic
pocket adjacent to the entrance to a transmembrane channel. The
substrate's glucosyl unit is coordinated by conserved residues of the
glycosyltransferase domain and amphipathic interface helices.
Site-directed mutagenesis of a conserved gating loop capping the active
site reveals its critical function for catalytic activity. Molecular
dynamics simulations revealed prolonged interactions of the gating loop
with the substrate molecule, particularly across its central conserved
region. These transient interactions likely facilitate the proper
positioning of the substrate molecule for glycosyl transfer and
cellulose translocation. Molecular dynamics simulations support
persistent gating loop - substrate interactions. The gating loop helps
to position the substrate molecule to facilitate cellulose elongation (Verma et al. 2023).
|
Accession Number: | Q8LPK5 |
Protein Name: | Cellulose synthase A catalytic subunit 8 [UDP-forming] |
Length: | 985 |
Molecular Weight: | 111521.00 |
Species: | Arabidopsis thaliana (Mouse-ear cress) [3702] |
Number of TMSs: | 8 |
Location1 / Topology2 / Orientation3: |
Cell membrane1 / Multi-pass membrane protein2 |
Substrate |
(1->4)-beta-D-glucan |
---|
1: MMESRSPICN TCGEEIGVKS NGEFFVACHE CSFPICKACL EYEFKEGRRI CLRCGNPYDE
61: NVFDDVETKT SKTQSIVPTQ TNNTSQDSGI HARHISTVST IDSELNDEYG NPIWKNRVES
121: WKDKKDKKSK KKKKDPKATK AEQHEAQIPT QQHMEDTPPN TESGATDVLS VVIPIPRTKI
181: TSYRIVIIMR LIILALFFNY RITHPVDSAY GLWLTSVICE IWFAVSWVLD QFPKWSPINR
241: ETYIDRLSAR FEREGEQSQL AAVDFFVSTV DPLKEPPLIT ANTVLSILAL DYPVDKVSCY
301: VSDDGAAMLS FESLVETADF ARKWVPFCKK YSIEPRAPEF YFSLKIDYLR DKVQPSFVKE
361: RRAMKRDYEE FKIRMNALVA KAQKTPEEGW TMQDGTSWPG NNTRDHPGMI QVFLGYSGAR
421: DIEGNELPRL VYVSREKRPG YQHHKKAGAE NALVRVSAVL TNAPFILNLD CDHYVNNSKA
481: VREAMCFLMD PVVGQDVCFV QFPQRFDGID KSDRYANRNI VFFDVNMRGL DGIQGPVYVG
541: TGTVFRRQAL YGYSPPSKPR ILPQSSSSSC CCLTKKKQPQ DPSEIYKDAK REELDAAIFN
601: LGDLDNYDEY DRSMLISQTS FEKTFGLSTV FIESTLMENG GVPDSVNPST LIKEAIHVIS
661: CGYEEKTEWG KEIGWIYGSI TEDILTGFKM HCRGWRSIYC MPLRPAFKGS APINLSDRLH
721: QVLRWALGSV EIFLSRHCPL WYGCSGGRLK LLQRLAYINT IVYPFTSLPL VAYCTLPAIC
781: LLTGKFIIPT LSNLASMLFL GLFISIILTS VLELRWSGVS IEDLWRNEQF WVIGGVSAHL
841: FAVFQGFLKM LAGLDTNFTV TSKTADDLEF GELYIVKWTT LLIPPTSLLI INLVGVVAGF
901: SDALNKGYEA WGPLFGKVFF AFWVILHLYP FLKGLMGRQN RTPTIVILWS ILLASVFSLV
961: WVRINPFVSK TDTTSLSLNC LLIDC