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1 primase with the unique ability to initiate nucleic acid synthesis.
2 ssential for cellular energy homeostasis and nucleic acid synthesis.
3 play an important role in their fidelity of nucleic acid synthesis.
4 ilability of purine nucleotides destined for nucleic acid synthesis.
5 P, and dCDP, which are required for cellular nucleic acid synthesis.
6 s between cellular methylation reactions and nucleic acid synthesis.
7 on; folate is central because of its role in nucleic acid synthesis.
8 use oligoribonucleotide primers to initiate nucleic acid synthesis.
9 Protozoa depend on purine salvage for nucleic acid synthesis.
10 nfluencing the nucleotide pool available for nucleic acid synthesis.
11 table for conventional phosphoramidite-based nucleic acid synthesis.
12 olase deficiency reduces NADPH synthesis and nucleic acid synthesis and cell division and could expla
14 the genome which includes genes involved in nucleic acid synthesis and repair, including dipyrimidin
15 agenesis, two aspartate residues crucial for nucleic acid synthesis and residues important for the bi
16 e acquired via HGT several genes involved in nucleic acid synthesis and salvage, such as those encodi
17 ian cells has important roles in protein and nucleic acid synthesis and structure, protection from ox
18 where they are used for energy transactions, nucleic acid synthesis, and a multiplicity of biochemica
19 such as cell wall synthesis, amino acid and nucleic acid synthesis, and the ability to survive under
20 volved in cell signaling, energy metabolism, nucleic acid synthesis, and the maintenance of acid-base
21 s function of producing one-carbon units for nucleic acid synthesis, another crucial function of this
22 ed in metabolism, transcription, protein and nucleic acids synthesis, as well as stress responses, ce
23 te (P(i)) is required for energy metabolism, nucleic acid synthesis, bone mineralization, and cell si
24 s a crucial role in supplying precursors for nucleic acid synthesis by catalyzing the conversion of U
25 eed for these viruses to promote lytic viral nucleic acid synthesis by unscheduled entry into the S p
26 disturbance in tumor cells: highly increased nucleic acid synthesis despite hypoxia and decreased glu
31 A) is important to mitochondrial protein and nucleic acid synthesis, is an antioxidant, and enhances
32 jor classes of cellular activities: mitosis, nucleic acid synthesis, membrane transport and integrity
33 provide an appropriate functional group for nucleic acid synthesis or oligonucleotide immobilization
34 a nucleoside mimic nor a known inhibitor of nucleic acid synthesis, this was expected and suggests i
36 and support models of a common mechanism of nucleic acid synthesis underlying catalysis by all such
37 In contrast, here we demonstrate templated nucleic acid synthesis using a base-filling approach in
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