Saikusa Kazumi, Shimoyama Singo, Asano Yuuki, Nagadoi Aritaka, Sato Mamoru, Kurumizaka Hitoshi, Nishimura Yoshifumi, Akashi Satoko
Department of Medical Life Science, Graduate School of Medical Life Science, Yokohama City University, Tsurumi-ku, Yokohama, Kanagawa, 230-0045, Japan.
Department of Electrical Engineering and Bioscience, Graduate School of Advanced Science and Engineering, Waseda University, Shinjuku-ku, Tokyo, 162-8480, Japan.
Protein Sci. 2015 Aug;24(8):1224-31. doi: 10.1002/pro.2673. Epub 2015 Apr 3.
It is well known that various modifications of histone tails play important roles in the regulation of transcription initiation. In this study, some lysine (Lys) and arginine (Arg) residues were acetylated and deiminated, respectively, in the histone H2A/H2B dimer, and charge-neutralization effects on the dimer structure were studied by native mass spectrometry. Given that both acetylation and deimination neutralize the positive charges of basic amino acid residues, it had been expected that these modifications would correspondingly affect the gas-phase behavior of the histone H2A/H2B dimer. Contrary to this expectation, it was found that Arg deimination led to greater difficulty of dissociation of the dimer by gas-phase collision, whereas acetylation of Lys residues did not cause such a drastic change in the dimer stability. In contrast, ion mobility-mass spectrometry (IM-MS) experiments showed that arrival times in the mobility cell both of acetylated and of deiminated dimer ions changed little from those of the unmodified dimer ions, indicating that the sizes of the dimer ions did not change by modification. Charge neutralization of Arg, basicity of which is higher than Lys, might have triggered some alteration of the dimer structure that cannot be found in IM-MS but can be detected by collision in the gas phase.
众所周知,组蛋白尾巴的各种修饰在转录起始调控中发挥着重要作用。在本研究中,组蛋白H2A/H2B二聚体中的一些赖氨酸(Lys)和精氨酸(Arg)残基分别被乙酰化和脱亚氨基化,并通过天然质谱研究了对二聚体结构的电荷中和效应。鉴于乙酰化和脱亚氨基化都会中和碱性氨基酸残基的正电荷,人们曾预期这些修饰会相应地影响组蛋白H2A/H2B二聚体的气相行为。与这一预期相反,研究发现精氨酸脱亚氨基化导致二聚体通过气相碰撞解离的难度增加,而赖氨酸残基的乙酰化并未使二聚体稳定性发生如此剧烈的变化。相比之下,离子淌度-质谱(IM-MS)实验表明,乙酰化和脱亚氨基化二聚体离子在淌度池中到达时间与未修饰二聚体离子相比变化不大,这表明二聚体离子的大小不会因修饰而改变。精氨酸的碱性高于赖氨酸,其电荷中和可能引发了二聚体结构的某些变化,这些变化在IM-MS中无法发现,但可通过气相碰撞检测到。