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锌离子在植物血凝素对淋巴细胞转化过程中的作用。

The role of zinc ions in the transformation of lymphocytes by phytohaemagglutinin.

作者信息

Chesters J K

出版信息

Biochem J. 1972 Nov;130(1):133-9. doi: 10.1042/bj1300133.

Abstract
  1. Incorporation of [(3)H]thymidine into DNA was inhibited by EDTA and diethylenetriamine-NNN'N''N''-penta-acetate but not by nitrilotriacetate even when Ca(2+) was present at more than twice the concentration of the chelators. 2. The inhibition caused by EDTA was most effectively reversed by Zn(2+) but also to a lesser extent by Cd(2+). Very little if any activation of the EDTA-inhibited system was obtained with Co(2+), Cu(2+), Fe(3+), Mn(2+) or Ni(2+) added alone. 3. Fe(3+) added to the Zn(2+)-activated lymphocytes in the presence of EDTA markedly increased thymidine incorporation. Addition of Cd(2+) prevented the inhibition of incorporation which occurred at high Zn(2+) concentrations. 4. If EDTA was added more than 15h after phytohaemagglutinin, the inhibition of incorporation was less than that obtained by its addition at zero time. If Zn(2+) was added later than 12h after EDTA and phytohaemagglutinin, the inhibition of incorporation by EDTA was not fully reversed. A study of the time-course of the effects of delayed additions of EDTA and Zn(2+) suggested that, on average, the cells required Zn(2+) between 20 and 30h after phytohaemagglutinin addition to allow the full rate of thymidine incorporation at 37h. 5. The increase in the rate of protein synthesis caused by phytohaemagglutinin was not inhibited by EDTA until about 8h. The further increase after this was totally inhibited by EDTA but this inhibition was fully reversible with Zn(2+). The rate of protein synthesis in EDTA-inhibited cultures at 40h was the same as that at 10h. 6. There was a close similarity between the effects of EDTA on lymphocyte stimulation and those reported by Kay et al. (1969) with low doses of actinomycin D.
摘要
  1. 即使Ca(2+)的浓度超过螯合剂浓度的两倍多,[(3)H]胸苷掺入DNA的过程仍受到乙二胺四乙酸(EDTA)和二乙烯三胺-NNN'N''N''-五乙酸的抑制,但未受到次氮基三乙酸的抑制。2. 由EDTA引起的抑制作用最有效地被Zn(2+)逆转,但Cd(2+)在较小程度上也能逆转。单独添加Co(2+)、Cu(2+)、Fe(3+)、Mn(2+)或Ni(2+)时,对EDTA抑制的系统几乎没有激活作用。3. 在EDTA存在的情况下,向Zn(2+)激活的淋巴细胞中添加Fe(3+)可显著增加胸苷掺入。添加Cd(2+)可防止在高Zn(2+)浓度下发生的掺入抑制。4. 如果在植物血凝素加入后超过15小时添加EDTA,掺入的抑制作用小于在零时添加时的抑制作用。如果在EDTA和植物血凝素加入后12小时后添加Zn(2+),EDTA对掺入的抑制作用不能完全逆转。对延迟添加EDTA和Zn(2+)的效果的时间进程研究表明,平均而言,细胞在植物血凝素添加后20至30小时需要Zn(2+),以使在37小时时胸苷掺入的速率达到最大值。5. 植物血凝素引起的蛋白质合成速率增加直到约8小时才被EDTA抑制。在此之后的进一步增加完全被EDTA抑制,但这种抑制可被Zn(2+)完全逆转。在40小时时,EDTA抑制的培养物中的蛋白质合成速率与10小时时相同。6. EDTA对淋巴细胞刺激的作用与Kay等人(1969年)用低剂量放线菌素D报道的作用之间存在密切相似性。

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