TY - JOUR
T1 - The Evolutionarily Conserved Family of Cyanovirin-N Homologs
T2 - Structures and Carbohydrate Specificity
AU - Koharudin, Leonardus M.I.
AU - Viscomi, Arturo R.
AU - Jee, Jun Goo
AU - Ottonello, Simone
AU - Gronenborn, Angela M.
PY - 2008/4/8
Y1 - 2008/4/8
N2 - Solution structures for three members of the recently discovered cyanovirin-N (CV-N) homolog family of lectins have been determined. Cyanovirin-N homologs (CVNHs) from Tuber borchii, Ceratopteris richardii, and Neurospora crassa, representing each of the three phylogenetic groups, were selected. All proteins exhibit the same fold, and the overall structures resemble that of the founding member of the family, CV-N, albeit with noteworthy differences in loop conformation and detailed local structure. Since no data are available regarding the proteins' function or their natural ligands, extensive carbohydrate-binding studies were conducted. We delineated ligand-binding sites on all three proteins by nuclear magnetic resonance and identified which sugars interact by array screening. The number and location of binding sites vary for the three proteins, and different ligand specificities exist. Potential physiological roles for two family members, TbCVNH and NcCVNH, were probed in nutrition deprivation experiments that suggest a possible involvement of these proteins in lifestyle-related responses.
AB - Solution structures for three members of the recently discovered cyanovirin-N (CV-N) homolog family of lectins have been determined. Cyanovirin-N homologs (CVNHs) from Tuber borchii, Ceratopteris richardii, and Neurospora crassa, representing each of the three phylogenetic groups, were selected. All proteins exhibit the same fold, and the overall structures resemble that of the founding member of the family, CV-N, albeit with noteworthy differences in loop conformation and detailed local structure. Since no data are available regarding the proteins' function or their natural ligands, extensive carbohydrate-binding studies were conducted. We delineated ligand-binding sites on all three proteins by nuclear magnetic resonance and identified which sugars interact by array screening. The number and location of binding sites vary for the three proteins, and different ligand specificities exist. Potential physiological roles for two family members, TbCVNH and NcCVNH, were probed in nutrition deprivation experiments that suggest a possible involvement of these proteins in lifestyle-related responses.
KW - PROTEINS
UR - http://www.scopus.com/inward/record.url?scp=41449109826&partnerID=8YFLogxK
U2 - 10.1016/j.str.2008.01.015
DO - 10.1016/j.str.2008.01.015
M3 - Article
C2 - 18400178
AN - SCOPUS:41449109826
SN - 0969-2126
VL - 16
SP - 570
EP - 584
JO - Structure
JF - Structure
IS - 4
ER -