Bailey L M, Ivanov R A, Wallace J C, Polyak S W
School of Molecular and Biomedical Science, University of Adelaide, Adelaide, South Australia 5005, Australia.
Anal Biochem. 2008 Feb 1;373(1):71-7. doi: 10.1016/j.ab.2007.09.003. Epub 2007 Sep 8.
Biotinylation is a recent addition to the list of reported posttranslational modifications made to histones. Holocarboxylase synthetase (HCS) and biotinidase have been implicated as biotinylating enzymes. However, the details of the mechanism and the regulation of biotin transfer on and off histones remains unclear. Here we report that in a cell culture system low biotin availability reduces biotinylation of carboxylases, yet apparent biotinylation of histones is unaffected. This is despite biotin depletion having detrimental effects on cell viability and proliferation. Further analysis of the widely used method for detecting biotin on histones, streptavidin blotting, revealed that streptavidin interacts with histones independently of biotin binding. Preincubation of streptavidin with free biotin reduced binding to biotinylated carboxylases but did not block binding to histones. To investigate biotinylation of histones using an alternative detection method independent of streptavidin, incorporation of 14C biotin into biotinylated proteins was analyzed. Radiolabeled biotin was readily detectable on carboxylases but not on histones, implying very low levels of biotin in the nucleus attached to histone proteins (< 0.03% biotinylation). In conclusion, we would caution against the use of streptavidin for investigating histone biotinylation.
生物素化是最近才被列入已报道的组蛋白翻译后修饰列表中的。全羧化酶合成酶(HCS)和生物素酶被认为是生物素化酶。然而,生物素在组蛋白上转移的机制细节以及其调控仍不清楚。在此我们报告,在细胞培养系统中,生物素可用性低会降低羧化酶的生物素化,但组蛋白的表观生物素化不受影响。尽管生物素耗竭对细胞活力和增殖有不利影响,但情况依然如此。对广泛用于检测组蛋白上生物素的方法——链霉亲和素印迹法的进一步分析表明,链霉亲和素与组蛋白的相互作用独立于生物素结合。链霉亲和素与游离生物素预孵育会减少其与生物素化羧化酶的结合,但不会阻止其与组蛋白的结合。为了使用一种独立于链霉亲和素的替代检测方法来研究组蛋白的生物素化,我们分析了将14C生物素掺入生物素化蛋白的情况。在羧化酶上很容易检测到放射性标记的生物素,但在组蛋白上则检测不到,这意味着与组蛋白蛋白结合的细胞核中的生物素水平非常低(生物素化<0.03%)。总之,我们提醒不要使用链霉亲和素来研究组蛋白生物素化。