首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >ATP-independent DNA strand transfer catalyzed by protein(s) from meiotic cells of the yeast Saccharomyces cerevisiae.
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ATP-independent DNA strand transfer catalyzed by protein(s) from meiotic cells of the yeast Saccharomyces cerevisiae.

机译:来自酵母酿酒酵母减数分裂细胞的蛋白质催化不依赖ATP的DNA链转移。

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摘要

An activity that catalyzes the transfer of a strand from a duplex linear molecule of DNA to a complementary circular single strand can be detected in crude extracts from mitotic and meiotic cells of the yeast Saccharomyces cerevisiae by adding yeast single-stranded DNA binding proteins. This DNA strand-transfer activity increases greater than 15-fold during meiosis in MATa/MAT alpha diploids prior to the detection of a 100- to 1000-fold increase in homologous chromosomal recombination. No increase is observed in MATa/MATa or MAT alpha/MAT alpha cells, which do not undergo meiosis when shifted to meiotic medium, suggesting the activity is related to meiotic recombination. The activity is named strand-transfer protein alpha (STP alpha) and has been extensively purified from the meiotic cells (6 hr after exposure to sporulation medium). The apparent molecular mass of STP alpha is 38 kDa under denaturing conditions. The DNA strand-transfer reaction catalyzed by STP alpha requires homologous single-stranded and double-stranded DNA and Mg2+ but no nucleotide cofactor. Yeast single-stranded DNA binding proteins stimulate the reaction at least 10-fold. Among the products analyzed by electron microscopy were typical strand-exchange structures.
机译:通过添加酵母单链DNA结合蛋白,可以在酵母酿酒酵母的有丝分裂和减数分裂细胞的粗提物中检测到催化DNA从双链线性分子转移到互补环状单链的催化活性。在检测到同源染色体重组增加100到1000倍之前,在MATa / MATα二倍体减数分裂期间,这种DNA链转移活性增加了15倍以上。没有观察到MATa / MATa或MAT alpha / MAT alpha细胞的增加,当转移到减数分裂培养基中时,它们不会发生减数分裂,这表明该活性与减数分裂重组有关。该活性被称为链转移蛋白α(STP alpha),并已从减数分裂细胞中广泛纯化(暴露于孢子形成培养基后6小时)。在变性条件下,STPα的表观分子量为38 kDa。 STPα催化的DNA链转移反应需要同源的单链和双链DNA和Mg2 +,但不需要核苷酸辅因子。酵母单链DNA结合蛋白刺激反应至少10倍。用电子显微镜分析的产物中有典型的链交换结构。

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