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Dependence of bacteriophage 029 DNA packaging on ionic conditions studied by optical tweezers manipulation of single DNA molecules

机译:噬菌体029的依赖性029 DNA包装对通过光学镊子操纵单个DNA分子的离子条件的离子条件

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The bacteriophage Φ29 portal motor is capable of packaging the Φ29, 19.3 Kbp, genome to high density into its preformed capsid. The packaging process must overcome the forces due to confining the highly negative charge of the DNA to a small volume, as well as the forces due to bending the DNA on length scales smaller than one persistence length. Both of these energetic considerations can be modulated by the ionic nature of the buffer DNA packaging occurs in. To measure the effects of DNA charge shielding on the packaging process, we studied the dynamics of DNA packaging by optical tweezers in a variety of different ionic conditions. We looked at the effects monovalent, divalent, and trivalent cations have on the motor function and its dependence on external force and, we observed the rate of DNA packaging at nominal force as a function of capsid filling. Specifically, we varied the concentrations of Na~+, Mg~(+2), and cobalt hexamine in the solution bathing the bacteriophage during packaging to see what effects, if any, these cations have. From these measurements, we present an inferred internal force as a function of percent filling of the bacteriophage capsid in a variety of ionic environments. Preliminary analysis suggests the ionic environment can modulate internal pressure, with the presence of higher valence cations better shielding the packaged DNA resulting in lower internal pressures.
机译:噬菌体φ29门耳电机能够将φ29,19.3kbp基因组包装成高密度进入其预成型的衣壳。包装工艺必须克服由于将DNA的高负电荷限制为小体积的强度,以及由于弯曲DNA的长度尺度小于一个持久性长度而导致的力。这些能量考虑因素中的两个都可以通过发生缓冲DNA包装的离子性来调节。为了测量DNA电荷屏蔽对包装过程的影响,我们研究了在各种不同离子条件下光学镊子的DNA包装的动态。我们看着一价,二价和三价阳离子对电机功能的影响及其对外力的依赖性,并且我们观察到标称力的DNA包装率作为衣壳填充的函数。具体而言,我们在溶液中改变了Na〜+,Mg〜(+2)和钴六胺在包装过程中沐浴噬菌体,以了解这些阳离子的效果,如果有的话。从这些测量中,我们提出了一种推断的内部力,作为各种离子环境中的噬菌体衣壳填充百分比的函数。初步分析表明离子环境可以调节内部压力,具有更高的价阳离子的存在,更好地屏蔽封装的DNA导致较低的内部压力。

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