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《核酸研究医学期刊》2006年第15期

helicases and ntp-driven nucleic acid machines: structure, function and roles in human disease
regulation of bacterial priming and daughter strand synthesis through helicase-primase interactions
the uvrd helicase and its modulation by the mismatch repair protein mutl
sit down, relax and unwind: structural insights into recq helicase mechanisms
recq helicases: lessons from model organisms
rad54: the swiss army knife of homologous recombination?
a dynamic model for replication protein a (rpa) function in dna processing pathways
coordination of dna synthesis and replicative unwinding by the s-phase checkpoint pathways
roles of pif1-like helicases in the maintenance of genomic stability
dna unwinding and protein displacement by superfamily 1 and superfamily 2 helicases
snf2 family atpases and dexx box helicases: differences and unifying concepts from high-resolution crystal structures
dead-box proteins: a family affair―active and passive players in rnp-remodeling
remodeling of ribonucleoprotein complexes with dexh/d rna helicases
dead-box rna helicases in escherichia coli
role of rna helicases in hiv-1 replication
dexd/h box rna helicases: multifunctional proteins with important roles in transcriptional regulation
mechanisms of a ring shaped helicase
xp54 and related (ddx6-like) rna helicases: roles in messenger rnp assembly, translation regulation and rna degradation
rna helicases and abiotic stress
a genome-wide study of preferential amplification/hybridization in microarray-based pooled dna experiments
non-linear analysis of genechip arrays
high-throughput assays for dna gyrase and other topoisomerases
easi―enrichment of alternatively spliced isoforms
antisense-induced ribosomal frameshifting
formation of the conserved pseudouridine at position 55 in archaeal trna
dynamics of nascent mrna folding and rna
structural basis for topoisomerase vi inhibition by the anti-hsp90 drug radicicol
the gene of an archaeal -l-fucosidase is expressed by translational frameshifting
mycobacterial transcriptional signals: requirements for recognition by rna polymerase and optimal transcriptional activity
dna mechanics as a tool to probe helicase and translocase activity
unraveling helicase mechanisms one molecule at a time
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