Large-scale nuclear shell-model calculations are performed in the neutron- and proton-deficient Pt, Au, Hg, and Tl isotopes (Z < 82 and N <= 126) near Pb-208. All the single-particle levels in the one-major shells, six neutron (2p(1/2), 1f(5/2), 2p(3/2), 0i(1)(3/12), 1f(7/2), and 0h(9/2)) orbitals and five proton (2s(1/2), 1d(3/2), 0h(11/2), 1d(5)(/2), and 0g(7/2)) orbitals are considered. For an effective two-body interaction, one set of the multipole pairing, quadrupole-quadrupole interactions is employed for all the nuclei considered. These phenomenological interactions are determined to reproduce the experimental energy spectra. Some of the isomeric states are analyzed in terms of the shellmodel configurations.Octupole correlated states are discussed in terms of a collective octupole excitation on top of each shell model state.