| Literature DB >> 31622427 |
Caroline A Hunter1, Nicholas I Plymale1, Kevin M Smee1, Catherine A Sarisky1.
Abstract
There is variability as to how archaea catalyze the final step of de novo purine biosynthesis to formEntities:
Year: 2019 PMID: 31622427 PMCID: PMC6797443 DOI: 10.1371/journal.pone.0223983
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Fig 1Reactions studied and phylogenetic patterns.
(A) The enzymatic conversion of AICAR to FAICAR and FAICAR to IMP. Non-archaea use PurH for both steps, while archaea are more variable. Abbreviations used: AICAR-FT, AICAR formyltransferase. 10-FTHF, 10-formyltetrahydrofolate. IMPCH, IMP cyclohydrolase. Other abbreviations are as used in the text. (B) Presence of genes encoding putative AICAR formyltransferases and IMP cyclohydrolases in selected euryarchaea, adapted from [1]. Symbols used: ■ denotes a gene that is a good match. □ denotes a match with some problems, as described in more detail in [1]. ▲ is used to represent a cluster II PurP protein. [■] indicates that the expected gene is split into two adjacent loci. Where a "?" appears, an IMP cyclohydrolase gene is necessary for an otherwise complete purine biosynthesis pathway to be functional, but no gene candidate has been identified.
Fig 2HPLC chromatograms of incubation mixtures.
The Y-axis is in arbitrary units, proportional to absorbance at 248 nm. (A) Chemically-synthesized FAICAR (purified) following a 30 minute incubation at 60°C in assay buffer (Tris pH 7.3). (B) Assay buffer containing authentic IMP. (C) Assay mix as in A, with the addition of AF1811 protein. (D) Assay mix as in A, with the addition of TK0430 protein.
Relative time to appearance of colonies in complementation experiments.
| Growth conditions | ||||
|---|---|---|---|---|
| Cell line | LB | M9 glucose | M9 glucose + IMP | M9 glucose + IPTG |
| ΔpurH | ++ | - | + | - |
| ΔpurH / pPurH1/ pMAL-c5e | ++ | - | + | - |
| ΔpurH / pPurH1/ pTk0430 | ++ | - | + | + |
| ΔpurH / pPurH1/ pAf1811 | ++ | - | + | + |
All growth conditions included antibiotics for plasmid selection. (A “-” denotes no growth after two weeks. A “++” denotes wildtype-like growth, with large colonies after overnight growth. A “+” denotes 2mm colonies after 2–7 days.)
Fig 3Kinetic analysis of TK0430 and AF1811.
Solid lines represent best fit curves for Michaelis-Menten kinetics. (A) shows the results for the AF1811 enzyme, while (B) shows the results for the TK0430 enzyme.
Comparison of kinetic parameters of IMP cyclohydrolase enzymes.
| Enzyme | Km (μM) | kcat (s-1) | Specific activity |
|---|---|---|---|
| 82 [ | 22 | 1.8 | |
| 1.56 ± 0.39 | 0.48 ± 0.04 | 0.45 ± 0.04 | |
| Human ATIC (PurH) | 0.9 ± 0.1 [ | 8.6 ± 0.2 [ | 2.8 [ |
| 2.10 ± 0.36 [ | 2.69 ± 0.56 [ | ||
| 1.84 ± 0.29 [ | 1.75 ± 0.43 [ | ||
| 7.8 ± 1.8 | 1.32 ± 0.14 | 1.30 ± 0.14 |
Shaded rows indicate the results of this work, including standard errors of the mean. Values in unshaded rows are reproduced from the sources cited.
a calculated from reported Km and kcat/Km
Fig 4Temperature effects on TK0430 and AF1811.
Each point is an average of three trials, with standard deviations. (A) shows the results for the AF1811 enzyme, while (B) shows the results for the TK0430 enzyme.