PPepDB-ID	"Peptide Name"	PMID	"Plant source"	"Plant Family"	"Peptide Family"	"Peptide function"	"Peptide function description"	"Activity against"	Sequence	"Sequence Length"	Validation	"Avg. Molecular wt(Da)"	"Monoisotopic molecular wt(Da)"	pI	Method	"Additional information"
PPepDB_5097	SRF5_ARATH	--NA--	"Arabidopsis thaliana"	Brassicaceae	--NA--	Signaling-peptide	"ATP-binding; Complete proteome; Glycoprotein; Leucine-rich repeat; Membrane; Nucleotide-binding; Receptor; Repeat; Signal; Transmembrane | Protein STRUBBELIG-RECEPTOR FAMILY 5 precursor (Leucine-rich repeat,receptor kinase-like protein SRF5).Membrane; Single-pass membrane protein (Potential)."	--NA--	DINVLRNLAIDDLNVEDNQFEGWIPNELKDIDSLLTGGNDWSTETAPPPPHRIGSKGLKHYVSSRVMSFTDTEFANKLNAKRTTSTRSAVEFELSDLQSAIALCVQVEPEFRPPMSEVVEALVRMVQRSSMKLKDDLSSSYRAHDDYDYKNNLKGNIPYQLPPNIANLDFSENELDGNVPYSLSQMKNLQSINLGQNKLLSPHFIDEDNSHHTPKFKSLTSHGSAQELRVDFGNDYKDGKSGDSGDENILTWNTRVRIALGTARAVEYLHEACSPSVMHKNIKSSNILLDADLNPRLSDMTQKLVRLVIVSLAITVTLLQAKTDNQEVSALNVMFTSLNSPSKLKGWKANGELPDMFQKLSKLETLDFSLNKLSGKLPQSFANLTSLKKLHLQDNRFTGNGGDPCEDSWEGVKCKGSSVTELQLSGFELGGSRGYLLSNLKSLTTFDLSPFDGEKPRPERSLVRWATPQLHDIDALSNIADPALHGLYPPKSLSRFADIPGVKYGRKSSGSKDGGGITAGTGMVIAGACLGVLVLIIVLIALVSKKKSSTANFSPGNLLGEGSIGRVYRAKYSDGRTLAVKKIDSTLFDSGKSEGITPIVMSLSKIRHQNIAELVGYCSEQGHNMLVYEYFRNGSLHEFLHLSDCFSKPYGLSKFYLRTSQNLGEGYNAPEARDPSAYTPKSDVYSFGVVMLELLTGRV	699	"Experimental evidence at protein level"	76945.09	76897.16	6.51	--NA--	"TISSUE SPECIFICITY:Expressed in leaves and flowers.DOMAIN:The protein kinase domain is predicted to be catalytically inactive.MISCELLANEOUS:Cannot functionally replace STRUBBELIG.MISCELLANEOUS:Over-expression of SRF5 led to male-sterility in cv. Columbia but not in cv. Landsberg.MISCELLANEOUS:Loss-of-function mutants (T-DNA insertion) do not show any phenotype alteration.SIMILARITY:Belongs to the protein kinase superfamily. Ser/Thr protein kinase family.SIMILARITY:Contains 5 LRR (leucine-rich) repeats.SIMILARITY:Contains 1 protein kinase domain.SEQUENCE CAUTION:Sequence=AAC17069.1; Type=Erroneous gene model prediction; "
