ACCELERATED EVOLUTION IN THE PROTEIN-CODING REGIONS IS UNIVERSAL IN CROTALINAE SNAKE-VENOM GLAND PHOSPHOLIPASE A(2) ISOZYME GENES
Citation
Ki. Nakashima et al., ACCELERATED EVOLUTION IN THE PROTEIN-CODING REGIONS IS UNIVERSAL IN CROTALINAE SNAKE-VENOM GLAND PHOSPHOLIPASE A(2) ISOZYME GENES, Proceedings of the National Academy of Sciences of the United Statesof America, 92(12), 1995, pp. 5605-5609
Categorie Soggetti
Multidisciplinary Sciences
SICI code
0027-8424(1995)92:12<5605:AEITPR>2.0.ZU;2-W
Abstract
The nucleotide sequences of four genes encoding Trimeresurus gramineus
(green habu snake, crotalinae) venom gland phospholipase A(2) (PLA2;
phosphatidylcholine 2-acylhydrolase, EC 3.1.1.4) isozymes were compare
d internally and externally with those of sis genes encoding Trimeresu
rus flavoviridis (habu snake, crotalinae) venom gland PLA2 isozymes, T
he numbers of nucleotide substitutions per site (K-N) for the noncodin
g regions including introns were one-third to one-eighth of the number
s of nucleotide substitutions per synonymous site (K-S) for the protei
n-coding regions of exons, indicating that the noncoding regions are m
uch more conserved than the protein-coding regions, The K-N values for
the introns were found to be nearly equivalent to those of introns of
T. gramineus and T. flavoviridis TATA box-binding protein genes, whic
h are assumed to be a general (nonvenomous) gene, Thus, it is evident
that the introns of venom gland PLA2 isozyme genes have evolved at a s
imilar rate to those of nonvenomous genes, The numbers of nucleotide s
ubstitutions per nonsynonymous site (K-A) were close to or larger than
the K-S values for the protein-coding regions in venom gland PLA2 iso
zyme genes, All of the data combined reveal that Darwinian-type accele
rated evolution has universally occurred only in the protein-coding re
gions of crotalinae snake venom PLA2 isozyme genes.