TY - JOUR
T1 - Novel mutations of the transglutaminase 1 gene in lamellar ichthyosis
AU - Yang, Jun Mo
AU - Ahn, Kwang Sung
AU - Cho, Mi Ook
AU - Yoneda, Kozo
AU - Lee, Cha Hui
AU - Lee, Joo Heung
AU - Lee, Eil Soo
AU - Candi, Eleonora
AU - Melino, Gerry
AU - Ahvazi, Bijan
AU - Steinert, Peter M.
PY - 2001
Y1 - 2001
N2 - Lamellar ichthyosis, one form of congenital autosomal recessive ichthyosis, is caused by mutations in the gene (TGM1) encoding the transglutaminase 1 enzyme. Mutations, deletions, or insertion of TGM1 have been reported so far. Here we report that three novel mutations of TGM1, D101V, N288T, and R306W, cause lamellar ichthyosis in two different families. The patient in family LI-KD has N288T and R306W mutations, and the patient in family LI-LK has D101V and R306W mutations. The activity of the transglutaminase 1 enzyme of the patient in family LI-LK was only about 15% of normal. Also, three-dimensional structural prediction analyses revealed that the N288T and R306W mutations, and possibly the D101V mutation, cause misfolding in the central catalytic core domain of the transglutaminase 1 enzyme that would probably result in reduced enzyme activity. Our data suggest that the greatly reduced transglutaminase 1 activities are due to disruptions of the native folding of transglutaminase 1, and that these mutations may play a critical role in the pathology of lamellar ichthyosis.
AB - Lamellar ichthyosis, one form of congenital autosomal recessive ichthyosis, is caused by mutations in the gene (TGM1) encoding the transglutaminase 1 enzyme. Mutations, deletions, or insertion of TGM1 have been reported so far. Here we report that three novel mutations of TGM1, D101V, N288T, and R306W, cause lamellar ichthyosis in two different families. The patient in family LI-KD has N288T and R306W mutations, and the patient in family LI-LK has D101V and R306W mutations. The activity of the transglutaminase 1 enzyme of the patient in family LI-LK was only about 15% of normal. Also, three-dimensional structural prediction analyses revealed that the N288T and R306W mutations, and possibly the D101V mutation, cause misfolding in the central catalytic core domain of the transglutaminase 1 enzyme that would probably result in reduced enzyme activity. Our data suggest that the greatly reduced transglutaminase 1 activities are due to disruptions of the native folding of transglutaminase 1, and that these mutations may play a critical role in the pathology of lamellar ichthyosis.
KW - Lamellar ichthyosis
KW - Mutations
KW - Transglutaminase 1 gene
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U2 - 10.1046/j.0022-202X.2001.01429.x
DO - 10.1046/j.0022-202X.2001.01429.x
M3 - Article
C2 - 11511296
AN - SCOPUS:0035721723
SN - 0022-202X
VL - 117
SP - 214
EP - 218
JO - Journal of Investigative Dermatology
JF - Journal of Investigative Dermatology
IS - 2
ER -