Chen Inês, Christie Peter J, Dubnau David
Public Health Research Institute, 225 Warren Street, Newark, NJ 07103, USA.
Science. 2005 Dec 2;310(5753):1456-60. doi: 10.1126/science.1114021.
Transformation and conjugation permit the passage of DNA through the bacterial membranes and represent dominant modes for the transfer of genetic information between bacterial cells or between bacterial and eukaryotic cells. As such, they are responsible for the spread of fitness-enhancing traits, including antibiotic resistance. Both processes usually involve the recognition of double-stranded DNA, followed by the transfer of single strands. Elaborate molecular machines are responsible for negotiating the passage of macromolecular DNA through the layers of the cell surface. All or nearly all the machine components involved in transformation and conjugation have been identified, and here we present models for their roles in DNA transport.
转化和接合作用使DNA能够穿过细菌细胞膜,是细菌细胞之间或细菌与真核细胞之间遗传信息传递的主要方式。因此,它们导致了包括抗生素耐药性在内的适应性增强性状的传播。这两个过程通常都涉及双链DNA的识别,随后是单链的转移。精密的分子机器负责促使大分子DNA穿过细胞表面各层。参与转化和接合作用的所有或几乎所有机器组件都已被识别出来,在此我们展示了它们在DNA转运中的作用模型。