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1 sis that the ammeline deaminating enzyme was guanine deaminase.
2 f guanine and xanthine in the active site of guanine deaminase.
3 ength sequences and the principal domains in guanine deaminases.
4                          In silico models of guanine deaminase active sites showed that ammeline coul
5              Mutant cypin proteins that lack guanine deaminase activity act in a dominant-negative ma
6  overexpression of cypin, a protein that has guanine deaminase activity and is expressed in developin
7 r characterization of 12 genes, one encoding guanine deaminase and the others encoding enzymes for co
8 nformatics and experimental data to identify guanine deaminase as the enzyme responsible for this bio
9                                   An E. coli guanine deaminase deletion mutant was deficient in ammel
10                                          Two guanine deaminases from disparate sources (Bradyrhizobiu
11                                              Guanine deaminase (GDA; guanase) is a ubiquitous enzyme
12 ed gene, a transcriptional regulator gene, a guanine deaminase gene, and cviI.
13                                       Plasma guanine deaminase (guanase; GD) is well established as a
14  The present study indicated that widespread guanine deaminases have a promiscuous activity allowing
15 ive sites showed that ammeline could bind to guanine deaminase in a similar orientation to guanine, w
16 e deaminase activity, supporting the role of guanine deaminase in this reaction.
17 ur laboratory showed that cypin, a mammalian guanine deaminase, increases dendrite number when overex
18 calization of insulin-like growth factor II, guanine deaminase, peripherin, early growth response 1,
19 cted genes insulin-like growth factor II and guanine deaminase protected spinal motor neurons from gl
20  method to redesign a critical loop in human guanine deaminase such that a key side-chain interaction
21 previously cloned and characterized cypin, a guanine deaminase that increases dendrite number by bind
22 at it is a hybrid of a cytosine as well as a guanine deaminase, thereby conferring Msd the ability to
23 m is common to most organisms and involves a guanine deaminase to convert guanine to xanthine in anim
24                    These mRNAs correspond to guanine deaminase, to the matrix proteins rat glypican 3
25  the amidohydrolase superfamily that are not guanine deaminases were assayed in vitro, and none had s
26 e, we reconstruct the molecular phylogeny of guanine deaminases with neighbor-joining, maximum-likeli

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