کد مقاله | کد نشریه | سال انتشار | مقاله انگلیسی | نسخه تمام متن |
---|---|---|---|---|
2029662 | 1070945 | 2015 | 11 صفحه PDF | دانلود رایگان |

• DNA binding dramatically reorients and couples the inter-domain motion of RPA70AB
• RPA70N protein interaction domain has structural and dynamic autonomy from RPA70AB
• RPA70N remains autonomous from RPA70AB when ssDNA is engaged
• Linkers between the globular domains are proposed to control RPA functional dynamics
SummaryReplication Protein A (RPA) is an essential scaffold for many DNA processing machines; its function relies on its modular architecture. Here, we report 15N-nuclear magnetic resonance heteronuclear relaxation analysis to characterize the movements of single-stranded (ss) DNA binding and protein interaction modules in the RPA70 subunit. Our results provide direct evidence for coordination of the motion of the tandem RPA70AB ssDNA binding domains. Moreover, binding of ssDNA substrate is found to cause dramatic reorientation and full coupling of inter-domain motion. In contrast, the RPA70N protein interaction domain remains structurally and dynamically independent of RPA70AB regardless of binding of ssDNA. This autonomy of motion between the 70N and 70AB modules supports a model in which the two binding functions of RPA are mediated fully independently, but remain differentially coordinated depending on the length of their flexible tethers. A critical role for linkers between the globular domains in determining the functional dynamics of RPA is proposed.
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Journal: - Volume 23, Issue 6, 2 June 2015, Pages 1028–1038