Harmouchi M, Albiser G, Premilat S
Laboratoire de Biophysique Moléculaire, UA CNRS N. 494, Université de Nancy I, Faculté des Sciences, Vandoeuvre les Nancy, France.
Biochem Biophys Res Commun. 1992 Oct 15;188(1):78-85. doi: 10.1016/0006-291x(92)92352-x.
Fiber X-ray diffraction and measurement of fibre dimensions yield information about the effects of a mechanical tension on hydration of DNA in fibres. At a given relative humidity, the mechanical tension changes the DNA conformation but does not modify the number of water molecules associated to a nucleotide. The number of water molecules per nucleotide necessary to maintain B form decreases for increasing tensions applied to the DNA fibre. Form transitions can be opposed by mechanical tensions; an energy of 1 Kcal per mole of nucleotide pairs is sufficient to prevent the B to A transition.
纤维X射线衍射和纤维尺寸测量可得出有关机械张力对纤维中DNA水化作用影响的信息。在给定的相对湿度下,机械张力会改变DNA构象,但不会改变与一个核苷酸相关联的水分子数量。施加于DNA纤维上的张力增加时,维持B型所需的每个核苷酸的水分子数量会减少。机械张力可以阻止构象转变;每摩尔核苷酸对1千卡的能量足以防止B型向A型转变。