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Lymphocytes binding and T cell mitogenic properties of group A streptococcal lipoteichoic acid. 总被引:14,自引:0,他引:14
E H Beachey J B Dale S Grebe A Ahmed W A Simpson I Ofek 《Journal of immunology (Baltimore, Md. : 1950)》1979,122(1):189-195
We previously reported that lipoteichoic acid (LTA) of group A streptococci binds spontaneously to mammaliam cell membranes via lipid moieties ester-linked to the LTA molecule. We now describe biochemical and immunologic evidence that LTA binds to human and murine lymphocytes as an early event in the induction of mitogenesis in T lymphocytes. The biochemical studies showed that binding of radiolabeled LTA to lymphocytes was lymphocyte-concentration, and temperature dependent, and it reached a maximum in 15 min. Binding was reversible and specific with a dissociation constant of 89 micrometer for adult lymphocytes and 57 micrometer for cord blood lymphocytes. Immunologic studies showed that the LTA was mitogenic only for T lymphocytes. Dose response curves of lymphocyte mitogenesis induced by LTA and the binding of LTA to intact lymphocytes were shown to be related. The results suggest that LTA binds to specific receptor sites on T lymphocytes to trigger the mitogenic response. 相似文献
154.
In a recent paper we examined the morphology of erythrocytes in terms of the mean mean curvature (MMC) of their cell membranes. A computer simulation of these shapes based on the different geometries showed that the MMC increased from the sphero-stomatocyte to the spheroechinocyte via the discocyte. In this work we extend this analysis by using a numerical optimization method based on importance sampling and the principle of adiabatic cooling. The erythrocyte membrane is treated as a single closed fluid lamina exhibiting viscoelastic characteristics. The energy function of the lamina includes the following terms: (i) Curvature-elastic energy terms which depend on both local and global curvature. (ii) A term describing the compression elasticity of the lamina. (iii) A term which depends on the volume of the cell and which is related to the osmotic pressure across the membrane. In the simulation the cell is assumed to have axial symmetry and it can therefore be described by a finite set of conic sections. So far we have been able to obtain an energy minimum corresponding to a discocyte shape using a sphere as the initial configuration. Our results therefore imply that the well-known sequence of erythrocyte shapes could solely be governed by the above mentioned properties of an ideal fluid forming a closed singly connected lamina. 相似文献