Rl. Hammell et Se. Hitchcockdegregori, MAPPING THE FUNCTIONAL DOMAINS WITHIN THE CARBOXYL-TERMINUS OF ALPHA-TROPOMYOSIN ENCODED BY THE ALTERNATIVELY SPLICED 9TH EXON, The Journal of biological chemistry, 271(8), 1996, pp. 4236-4242
Tropomyosins are highly conserved, coiled-coil actin binding proteins
found in most eukaryotic cells, Striated and smooth muscle alpha-tropo
myosins differ by the regions encoded by exons 2 and 9, Unacetylated s
mooth tropomyosin expressed in Escherichia coli binds actin with high
affinity, whereas unacetylated striated tropomyosin requires troponin,
found only in striated muscle, for strong actin binding, The residues
encoded by exon 9 cause these differences (Cho, Y.-J., and Hitchcock-
DeGregori, S, E. (1991) Proc. Natl, Acad, Sci, U, S. A, 88, 10153-1015
7), We mapped the functional domains encoded by the alpha-tropomyosin
exon 9a (striated muscle-specific) and 9d (constitutively expressed),
by measuring actin binding and regulation of the actomyosin MgATPase b
y tropomyosin exon 9 chimeras and truncation mutants expressed in E. c
oli, We have shown that: 1) the carboxyl-terminal nine residues define
the actin affinity of unacetylated tropomyosin; 2) in the presence of
Ca2+, the entire exon 9a is required for troponin to promote fully hi
gh affinity actin binding; 3) the first 18 residues encoded by exon 9a
are critical for the interaction of troponin with tropomyosin on the
thin filament, even in the absence of Ca2+. The results give new insig
ht into the structural requirements of tropomyosin for thin filament a
ssembly and regulatory function.