Yan C, Tamm I
Rockefeller University, New York, NY 10021.
J Interferon Res. 1991 Feb;11(1):25-31. doi: 10.1089/jir.1991.11.25.
We have previously demonstrated that using mouse 2',5'-oligoadenylate synthetase (2-5A synthetase) gene (ME-12) regulatory region AB as a probe, at least six complexes (C1-C6) can be detected by the mobility shift electrophoresis assay with extracts of murine BALB/c-3T3 cells. The formation of these complexes is greatly influenced by different buffer conditions and the presence of metals. C1 and C4 signals are stronger in Tris-HCl buffer than in phosphate buffer in the absence of added metals. Both Na+ and Mg2+ facilitate C1, C3, and C4 formation. Na+ also facilitates C3 and C4 formation with the interferon (IFN) response element B. Na+ has little effect on C2 formation with the regulatory region AB, whereas presence of Mg2+ at low concentrations gives a strong C2 signal. A new band, C7, was detected in the presence of 50 or 100 mM Na+. A relatively high Mg2+ concentration is required for C5 formation and Mg2+ interferes with C6 and C7 formation. Cu2+ and Zn2+ markedly inhibit formation of most complexes. However, a new band forms in 0.15 mM Cu2+ when 10 mM Mg2+ was also present. Co2+ enhances C2b and C3 formation and inhibits C4 formation. Mn2+ enhances C3, C1, and C2 formation to different degrees and inhibits C4 formation. At 0.15 and 0.25 mM, Mn2+ generates a new band. In competition experiments between Cu2+ and Mg2+, Cu2+ strongly inhibited Mg2+ effects on complex formation, except that 0.15 or 0.25 mM Cu2+ enhanced the C2a and C2b signals.
我们先前已经证明,以小鼠2',5'-寡腺苷酸合成酶(2-5A合成酶)基因(ME-12)调控区AB为探针,用小鼠BALB/c-3T3细胞提取物进行迁移率变动电泳分析时,可检测到至少六种复合物(C1-C6)。这些复合物的形成受到不同缓冲液条件和金属存在的极大影响。在不添加金属的情况下,Tris-HCl缓冲液中的C1和C4信号比磷酸盐缓冲液中的更强。Na+和Mg2+都促进C1、C3和C4的形成。Na+还与干扰素(IFN)反应元件B一起促进C3和C4的形成。Na+对与调控区AB形成C2的影响很小,而低浓度Mg2+的存在会产生强烈的C2信号。在存在50或100 mM Na+的情况下检测到一条新带C7。C5的形成需要相对较高的Mg2+浓度,并且Mg2+会干扰C6和C7的形成。Cu2+和Zn2+明显抑制大多数复合物的形成。然而,当也存在10 mM Mg2+时,在0.15 mM Cu2+中会形成一条新带。Co2+增强C2b和C3的形成并抑制C4的形成。Mn2+不同程度地增强C3、C1和C2的形成并抑制C4的形成。在0.15和0.25 mM时,Mn2+会产生一条新带。在Cu2+和Mg2+之间的竞争实验中,Cu2+强烈抑制Mg2+对复合物形成的影响,除了0.15或0.25 mM Cu2+增强了C2a和C2b信号。