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DNA的剪切断裂

Shear breakage of DNA.

作者信息

Dancis B M

出版信息

Biophys J. 1978 Nov;24(2):489-503. doi: 10.1016/S0006-3495(78)85396-X.

Abstract

Determinations were made of the mean length of fragments produced after shearing long (greater than 100 kb) native Hela DNA in a VirTis homogenizer. (VirTis Co., Inc., Gardiner, N.Y.). The mean length (L) is a function of the speed of rotation of the homogenizer blades (omega), time of shearing (t), water concentration ([H2O]), solvent viscosity (eta), temperature (T), and energy of activation (E*), but not a function of the initial length so long as the starting molecules sustain an average of three or more breaks. The relationship of the parameters is expressed by the equation L = (b/omegat1/2eta1/2[H2O])eE*/2kBT, where kB is the Boltzmann constant and b is a constant of proportionality. The breakage rate constant k was determined to have the relationship k = (omega2L2eta[H2O]2/2b2)e-E*/kBT. These equations are valid throughout large ranges of the parameters, and a simple method is described which chooses a final mean length between at least 0.15 and 36 kb by choosing the appropriate shearing conditions and initial fragment length. The heterogeneity of shearing conditions within the shearing vessel permits use of the equations at all breakage rates tested. Based on the work of others using more homogeneous shearing conditions and initial fragment lengths, more complicated forms of the equations are necessary at low breakage rates but not at high ones. A proposed model of the breakage mechanism suggests that molecules with stress-induced localized denaturations break at a rate different from that for native DNA.

摘要

对在VirTis匀浆器(纽约州加德纳市的VirTis公司)中剪切长(大于100 kb)的天然海拉细胞DNA后产生的片段平均长度进行了测定。平均长度(L)是匀浆器叶片旋转速度(ω)、剪切时间(t)、水浓度([H₂O])、溶剂粘度(η)、温度(T)和活化能(E*)的函数,但只要起始分子平均承受三个或更多的断裂,就不是初始长度的函数。参数之间的关系由方程L = (b/ωt¹/²η¹/²[H₂O])eE*/2kBT表示,其中kB是玻尔兹曼常数,b是比例常数。断裂速率常数k被确定具有关系k = (ω²L²η[H₂O]²/2b²)e-E*/kBT。这些方程在参数的大范围中都是有效的,并且描述了一种简单的方法,通过选择合适的剪切条件和初始片段长度来选择至少0.15至36 kb之间的最终平均长度。剪切容器内剪切条件的不均匀性允许在所有测试的断裂速率下使用这些方程。基于其他人使用更均匀的剪切条件和初始片段长度的工作,在低断裂速率下需要更复杂形式的方程,但在高断裂速率下则不需要。提出的断裂机制模型表明,具有应力诱导局部变性的分子的断裂速率与天然DNA的不同。

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本文引用的文献

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