Quigley G J, Teeter M M, Rich A
Proc Natl Acad Sci U S A. 1978 Jan;75(1):64-8. doi: 10.1073/pnas.75.1.64.
Refinement of the diffraction data at 2.5-A resolution from orthorhombic crystals of yeast tRNAPhe has proceeded to the point where spermine and magnesium ions can be located in the difference electron density map. Two spermine molecules are found: one is located in the major groove at one end of the anticodon stem; the other is near the variable loop and curls around phosphate 10 in a region where the polynucleotide chain takes a sharp turn. Four distinct magnesium ions have been identified: one in the anticodon loop, two in the D loop, and one coordinated with phosphates 8, 9, 11, and 12, where the polynucleotide chain is coiled. The conformation of the anticodon stem and loop is stabilized by the cations at the end of the molecule. The positions of these ions may be related to aspects of the biological activity of tRNA. The spermine and magnesium ions appear to be important in maintaining the overall folding of the tRNA molecule.
来自酵母苯丙氨酸tRNA正交晶体的2.5埃分辨率衍射数据的精修已进行到可以在差分电子密度图中定位精胺和镁离子的程度。发现了两个精胺分子:一个位于反密码子茎一端的大沟中;另一个靠近可变环,并在多核苷酸链急转弯的区域围绕磷酸10卷曲。已鉴定出四个不同的镁离子:一个在反密码子环中,两个在D环中,一个与磷酸8、9、11和12配位,多核苷酸链在此处盘绕。反密码子茎和环的构象通过分子末端的阳离子得以稳定。这些离子的位置可能与tRNA生物活性的各个方面有关。精胺和镁离子似乎对维持tRNA分子的整体折叠很重要。