Search Results

Overview

Uniprot IDA0A287ASJ9
Protein NameCyclin-dependent kinase 14
Gene NameCDK14
OrganismSus scrofa

Kla Sites from experimental identification

Position Flanking peptide
146 NGKLVALKVIRLQEE

Function

Serine/threonine-protein kinase involved in the control of the eukaryotic cell cycle, whose activity is controlled by an associated cyclin. Acts as a cell-cycle regulator of Wnt signaling pathway during G2/M phase by mediating the phosphorylation of LRP6 at 'Ser-1490', leading to the activation of the Wnt signaling pathway. Acts as a regulator of cell cycle progression and cell proliferation via its interaction with CCDN3. Phosphorylates RB1 in vitro, however the relevance of such result remains to be confirmed in vivo. May also play a role in meiosis, neuron differentiation and may indirectly act as a negative regulator of insulin-responsive glucose transport

Protein Sequence

10 MHGYFGCNAA 20 AEPGYSAFLG 30 TPQICVTKMS 40 TRNCPGMDSM 50 IKPLDTIPED 60 KKVRVQRTQS 70 TFDPFEKPAN 80 QVKRVHSENN 90 ACINFKTSSA 100 GKESPKVRRH 110 SSPSSPTSPK 120 FGKADSYEKL 130 EKLGEGSYAT 140 VYKGKSKVNG 150 KLVALKVIRL 160 QEEEGTPFTA 170 IREASLLKGL 180 KHANIVLLHD 190 IIHTKETLTL 200 VFEYVHTDLC 210 QYMDKHPGGL 220 HPENVKLFLF 230 QLLRGLSYIH 240 QRYILHRDLK 250 PQNLLISDTG 260 ELKLADFGLA 270 RAKSVPSHTY 280 SNEVVTLWYR 290 PPDVLLGSTE 300 YSTCLDMWGV 310 GCIFVEMIQG 320 VAAFPGMKDI 330 QDQLERIFLV 340 LGTPNEDTWP 350 GVHSLPHFKP 360 ERFTLYSSKN 370 LRQAWNKLSY 380 VNHAEDLASK 390 LLQCSPKNRL 400 SAQAALSHEY 410 FSDLPPRLWE 420 LTDMSSIFTV 430 PNVRLQPEAG 440 ESTRAFGKNN 450 SYGKSLSNSK H

Gene Ontology

Classification GO ID Description
Cellular Component GO:0005886 plasma membrane
Molecular Function GO:0005524 ATP binding
Molecular Function GO:0004693 cyclin-dependent protein serine/threonine kinase activity
Biological Process GO:0051301 cell division
Biological Process GO:0016055 Wnt signaling pathway

Reference

[1] Fan S, Zhou R, Wen H, Ye H, Ma S et al.. Global profiling of protein lactylome in porcine granulosa cells.. J Ovarian Res 18(1):177. 2025 Aug 8. PMID: 40781717.