Cell binding and growth inhibition by hexachlorophene of decanoate and their reversibility.

B C Levin, E Freese
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Abstract

More than 80% of the hexachlorophene added to a Bacillus subtilis culture binds to the cells. Complete growth inhibition requires 6 x 10(5) molecules bound per cell. In contrast, more than 99% decanoate remains in solution and 3.8 x 10(7) molecules bound per cell are needed to inhibit growth. Centrifugation and resuspension of cells in growth medium removes only decanoate, whereas the addition of 1% bovine serum albumin to the growth medium removes both inhibitors from their binding sites on the cells. The addition of untreated cells to a hexachlorophene-treated culture enables the hexachlorophene molecules to redistribute among all the cells with the result that the inhibited cells can resume growth.

癸酸六氯苯的细胞结合和生长抑制及其可逆性。
添加到枯草芽孢杆菌培养物中的六氯苯超过80%与细胞结合。完全抑制生长需要每个细胞结合6 × 10(5)个分子。相比之下,超过99%的癸酸盐留在溶液中,每个细胞需要3.8 x 10(7)个分子来抑制生长。细胞在生长培养基中离心和重悬只能去除癸酸酯,而在生长培养基中加入1%的牛血清白蛋白可以去除细胞上结合位点上的两种抑制剂。将未经处理的细胞添加到六氯酚处理过的培养物中,使六氯酚分子在所有细胞中重新分布,结果是受抑制的细胞可以恢复生长。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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