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Recessive 2-(methylamino)-isobutyrate (MeAIB)-resistant mutant of Chinese hamster ovary cells (CHO-K1) with increased transport through ASC system.

Mutants of Chinese hamster ovary cells (CHO-K1 Pro-), resistant to the proline transport antagonist 2-(methylamino)-isobutyrate (MeAIB) were isolated by a single-step procedure. Mutation rates to Pro+ and to Pro- MeAIB resistance (MeAIBr) are 1.7 X 10(-6) and 2.4 X 10(-5), respectively. Several Pro- MeAIBr mutants were tested by measuring the uptake of 0.05 mM proline through the various amino acid transport systems: some showed increases in one transport system only; others revealed pleiotropic changes affecting two or more systems; still others had no apparent change in proline transport. One Pro- MeAIBr mutant analyzed in detail (MeAIBr22) was isolated after EMS treatment as resistant to 5 mM MeAIB, is Pro-, stable, and shows a 1.6-fold increase in the initial velocity of transport of 0.05 mM proline. There appears to be no change in the velocity of proline transport through the amino acid transport systems A, P, and L, and the "glutamine inhibitable fraction." In contrast, there is a 5.5-fold increase in the velocity of transport of 0.05 mM proline through the ASC system. Kinetic studies reveal a sixfold increase in the Vm and a slight increase in the Km of the transport of serine through the ASC system. Hybrids between MeAIBr22 and CHO-K1 Pro-, OUAr, HPRT- showed the parental phenotype. These results indicate that the mutant ASC phenotype of MeAIBr22 is recessive and is probably the result of a regulatory gene mutation.

Aminoisobutyric Acids↗

Alanine-resistant mutants of Chinese hamster ovary cells, CHO-K1, producing increases in velocity of proline transport through the A, ASC, and P systems.

We have developed a method for the isolation of transport mutants with increases in velocity of transport through the A and ASC systems and through a newly discovered P system utilizing the amino acid antagonism between A system amino acids and proline in CHO-K1 pro- cells. Mutants alar2 and alar3, isolated in a single-step procedure, resistant to 25 mM alanine in MEM-10 plus 0.05 mM proline are pro-, stable, cross resistant to alpha-(methylamino)isobutyric acid (MeAIB) and show an approximately twofold increase in the initial velocity of proline uptake. Ethyl methane sulfonate (EMS) increases the frequency of pro- alar clones in the population by at least 50 times the spontaneous frequency. The increased velocity of proline transport by alar2 and alar3 can be attributable to the 1.5 to 3 times increase in velocity of transport of proline through systems A, ASC, and P. The Vmax for proline transport through the A system has increased two times for alar2 while the Km and Vmax for alar3 has increased by 1.4 and 2.3 times that of CHO-K1. There is a corresponding increase in Vmax of proline transport by alar2 through the P system. The P system is defined operationally as that portion of the Na+-dependent velocity that remains when the A, ASC, and glutamine-inhibitable fraction are eliminated. The system is concentrative. Proline appears to be the preferred substrate. Li+ cannot be substituted for Na+. The system is moderately dependent upon pH. It obeys Michaelis-Menten kinetics and is not derepressible by starvation. There is no evidence for an N system in CHO-K1.

Alanine↗

Effects of tumor necrosis factor on system ASC-mediated glutamine transport by human fibroblasts.

The effects of tumor necrosis factor-alpha (TNF) on glutamine GLN transport by cultured human fibroblasts were studied. Uptake of 3H-GLN was assayed in both the presence and absence of sodium in order to differentiate Na(+)-dependent and Na(+)-independent transport systems. GLN transport was linear (r = 0.99) for at least 15 min and occurred predominantly via a single Na(+)-dependent pathway, consistent with System ASC. Incubation of fibroblasts with TNF (1000 units/ml) for 12 hr resulted in a significant decrease in system ASC-mediated glutamine transport activity. TNF did not alter cell morphology or protein content. Kinetic studies indicated that the decrease in carrier-mediated Na(+)-dependent GLN transport was not due to a change in transporter affinity (Km = 117 +/- 23 microM in controls vs 86 +/- 23 microM in TNF, P = NS), but instead to a 45% decrease in maximal transport rate (Vmax = 4088 +/- 354 pmole/mg protein/30 sec in controls vs 2230 +/- 510 in TNF, P less than 0.05). TNF also decreased Na(+)-independent transport by 50% (mean uptake of 50 microM GLN = 94 +/- 13 pmole/mg protein/30 sec in controls vs 46 +/- 6 in TNF, P less than 0.02). In human fibroblasts, the activity of System ASC, which has generally been viewed as a hormonally unresponsive carrier, is decreased by TNF. This impairment in glutamine transport may result in inadequate amounts of intracellular glutamine to support fibroblast metabolism and possibly function.

Amino Acid Transport Systems↗

The death-domain fold of the ASC PYRIN domain, presenting a basis for PYRIN/PYRIN recognition.

The PYRIN domain is a conserved sequence motif identified in more than 20 human proteins with putative functions in apoptotic and inflammatory signalling pathways. The three-dimensional structure of the PYRIN domain from human ASC was determined by NMR spectroscopy. The structure determination reveals close structural similarity to death domains, death effector domains, and caspase activation and recruitment domains, although the structural alignment with these other members of the death-domain superfamily differs from previously predicted amino acid sequence alignments. Two highly positively and negatively charged surfaces in the PYRIN domain of ASC result in a strong electrostatic dipole moment that is predicted to be present also in related PYRIN domains. These results suggest that electrostatic interactions play an important role for the binding between PYRIN domains. Consequently, the previously reported binding between the PYRIN domains of ASC and ASC2/POP1 or between the zebrafish PYRIN domains of zAsc and Caspy is proposed to involve interactions between helices 2 and 3 of one PYRIN domain with helices 1 and 4 of the other PYRIN domain, in analogy to previously reported homophilic interactions between caspase activation and recruitment domains.

Amino Acid Sequence↗

Transport of neutral, cationic and anionic amino acids by systems B, b(o,+), X(AG), and ASC in swine small intestine.

Amino acid influx across the brush border membrane of the intact pig ileal epithelium was studied. It was examine whether in addition to system B, systems ASC and b(o,+) were involved in transport of bipolar amino acids. The kinetics of interactions between lysine and leucine demonstrates that system b(o,+) is present and accessible also to L-glutamine. D-aspartate (K(1/2) 0.3 mM) and L-glutamate (K(i) 0.5 mM) share a high affinity transporter with a maximum rate of 1.3 micromol cm(-2) h(-1), while only L-glutamate with a K(1/2) of 14.4 mM uses a low affinity transporter with a maximum rate of 2. 7 micromol cm(-2) h(-1), system ASC, against which serine has a K(i) of 1.6 mM. In the presence of 100 mM lysine, L-glutamine (A), leucine (B), and methionine (C) fulfilled the criteria of the ABC test for transport by one and the same transporter. However, serine inhibits not only transport of L-glutamate but also of glutamine (K(i) 0.5 mM), and L-glutamate inhibits part of the transport of glutamine. The test does, therefore, only indicate that the three bipolar amino acids have similar affinities for transport by systems B and ASC. Further study of the function of system B must be carried out under full inhibition by lysine and glutamate.

Amino Acids↗

The PAAD/PYRIN-only protein POP1/ASC2 is a modulator of ASC-mediated nuclear-factor-kappa B and pro-caspase-1 regulation.

Proteins containing PAAD [pyrin, AIM (absent-in-melanoma), ASC [apoptosis-associated speck-like protein containing a CARD (caspase-recruitment domain)] and DD (death domain)-like] (PYRIN, DAPIN) domains are involved in innate immunity, regulating pathways leading to nuclear-factor-kappa B (NF-kappa B) and pro-caspase-1 activation. Many PAAD-family proteins have structures reminiscent of Nod-1, a putative intracellular sensor of lipopolysaccharide. Hereditary mutations in some of the PAAD-family genes are associated with auto-inflammatory diseases. Several of these proteins utilize the bipartite PAAD- and CARD-containing adapter protein ASC/TMS-1 (target of methylation-induced silencing) for linking to downstream signalling pathways. In the present paper, we describe characterization of human PAAD-only protein-1 (POP1)/ASC2, which is highly homologous with the PAAD domain of ASC, and which probably originated by gene duplication on chromosome 16. We demonstrate that POP1/ASC2 associates with ASC via PAAD-PAAD interactions and modulates NF-kappa B and pro-caspase-1 regulation by this adapter protein. In gene transfer experiments, POP1/ASC2 suppressed cytokine-mediated NF-kappa B activation similar to other PAAD-family proteins previously tested. Immunohistochemical studies showed expression of POP1/ASC2 predominantly in macrophages and granulocytes. We propose that POP1/ASC2 functions as a modulator of multidomain PAAD-containing proteins involved in NF-kappa B and pro-caspase-1 activation and innate immunity.

Amino Acid Sequence↗

Characterization of a novel variant of amino acid transport system asc in erythrocytes from Przewalski's horse (Equus przewalskii).

In thoroughbred horses, red blood cell amino acid transport activity is Na(+)-independent and controlled by three codominant genetic alleles (h, l, s), coding for high-affinity system asc1 (L-alanine apparent Km for influx at 37 degrees C congruent to 0.35 mM), low-affinity system asc2 (L-alanine Km congruent to 14 mM), and transport deficiency, respectively. The present study investigated amino acid transport mechanisms in red cells from four wild species: Przewalski's horse (Equus przewalskii), Hartmann's zebra (Zebra hartmannae), Grevy's zebra (Zebra grevyi), and onager (Equus hemonius). Red blood cell samples from different Przewalski's horses exhibited uniformly high rates of L-alanine uptake, mediated by a high-affinity asc1-type transport system. Mean apparent Km and Vmax values (+/- SE) for L-alanine influx at 37 degrees C in red cells from 10 individual animals were 0.373 +/- 0.068 mM and 2.27 +/- 0.11 mmol (L cells.h), respectively. As in thoroughbreds, the Przewalski's horse transporter interacted with dibasic as well as neutral amino acids. However, the Przewalski asc1 isoform transported L-lysine with a substantially (6.4-fold) higher apparent affinity than its thoroughbred counterpart (Km for influx 1.4 mM at 37 degrees C) and was also less prone to trans-stimulation effects. The novel high apparent affinity of the Przewalski's horse transporter for L-lysine provides additional key evidence of functional and possible structural similarities between asc and the classical Na(+)-dependent system ASC and between these systems and the Na(+)-independent dibasic amino acid transport system y+. Unlike Przewalski's horse, zebra red cells were polymorphic with respect to L-alanine transport activity, showing high-affinity or low-affinity saturable mechanisms of L-alanine uptake. Onager red cells transported this amino acid with intermediate affinity (apparent Km for influx 3.0 mM at 37 degrees C). Radiation inactivation analysis was used to estimate the target size of system asc in red cells from Przewalski's horse. The transporter's in situ apparent molecular weight was 158,000 +/- 2500 (SE).

Alanine↗

Differential expression of amino acid transport systems A and ASC during erythroleukemia cell differentiation.

The human erythroleukemic cell K-562 serves as an in vitro model to study changes in cell surface antigens and mechanisms regulating globin gene expression associated with in vivo erythropoiesis. In this report we have examined the regulation of amino acid transport systems, in particular, systems A and ASC, during differentiation of erythroleukemic cells. For additional comparison we examined the uptake of leucine, 3-aminoendobicyclo-(3,2,1)-octane-3-carboxylic acid (BCO), arginine, and glutamate. Hexamethylene-bis-acetamide (HMBA), dimethyl sulfoxide, and butyrate induce cell differentiation with a block in G1-G0 phase of the cell cycle. These agents caused a significant downregulation of 2-(methylamino)isobutyric acid uptake by system A. In contrast, the Na(+)-dependent threonine uptake by system ASC remained unaltered. The uptake of leucine, BCO, arginine, and glutamate by as yet unidentified systems was, however, stimulated after HMBA treatment. Hemin, a potent inducer of hemoglobin synthesis in K-562 cells, does not block cell cycle events and, interestingly, had no significant effect on both systems A and ASC. These differences in inducer actions suggest that system A activity may be related to specific stages of cell differentiation and perhaps to other cellular signals.

Amino Acids↗

Na+ -dependent neutral amino acid transporters A, ASC, and N of the blood-brain barrier: mechanisms for neutral amino acid removal.

Four Na+ -dependent transporters of neutral amino acids (NAA) are known to exist in the abluminal membranes (brain side) of the blood-brain barrier (BBB). This article describes the kinetic characteristics of systems A, ASC, and N that, together with the recently described Na+ -dependent system for large NAA (Na+ -LNAA), provide a basis for understanding the functional organization of the BBB. The data demonstrate that system A is voltage dependent (3 positive charges accompany each molecule of substrate). Systems ASC and N are not voltage dependent. Each NAA is a putative substrate for at least one system, and several NAA are transported by as many as three. System A transports Pro, Ala, His, Asn, Ser, and Gln; system ASC transports Ser, Gly, Met, Val, Leu, Ile, Cys, and Thr; system N transports Gln, His, Ser, and Asn; Na+ -LNAA transports Leu, Ile, Val, Trp, Tyr, Phe, Met, Ala, His, Thr, and Gly. Together, these four systems have the capability to actively transfer every naturally occurring NAA from the extracellular fluid (ECF) to endothelial cells and thence to the circulation. The existence of facilitative transport for NAA (L1) on both membranes provides the brain access to essential NAA. The presence of Na+ -dependent carriers on the abluminal membrane provides a mechanism by which NAA concentrations in the ECF of brain are maintained at approximately 10% of those of the plasma.

Algorithms↗

Enlarged squamous cell nuclei in cervical cytologic specimens from perimenopausal women ("PM Cells") : a cause of ASC overdiagnosis.

We studied the appropriateness of interpreting squamous cells with enlarged, smooth, bland nuclei in perimenopausal women ("PM cells") as atypical squamous cells (ASCs). Papanicolaou smears (Paps) from 100 women (40-55 years old) with a cytologic interpretation of ASC of undetermined significance (ASCUS) and human papillomavirus (HPV) testing or a biopsy within 6 months were reviewed by 2 observers without knowledge of the biopsy diagnosis or HPV results. Cases in which both reviewers agreed that the Paps were diagnosed more properly as "negative for intraepithelial lesion or malignancy" were compared with cases of "true ASCUS," using histologic squamous intraepithelial lesion and/or a positive high-risk HPV test as a positive outcome (abnormal follow-up). Of 100 cases, 28 were reclassified as benign by both observers. In 15 of these, the original ASCUS interpretation was based on cells with bland nuclear enlargement (2-3 times the area of intermediate cell nuclei), smooth nuclear membranes, and fine chromatin. Abnormal follow-up was identified in 1 (7%) of 15 benign cases but in 30 (42%) of 72 true ASCUS cases (P = .023). PM cells are a significant cause of ASC overdiagnosis in women 40 to 55 years old. Cervical Paps with cells no more atypical than these can be interpreted safely as negative for intraepithelial lesion or malignancy.

Adult↗

How to structure a compliant hospital-physician ASC.

Three recent advisory opinions issued by the HHS Office of Inspector General (OIG) provide insight into how the OIG is likely to view a proposal by a hospital and physicians to develop a jointly owned ambulatory surgical center (ASC). In assessing whether the proposed ASC meets the 13 requirements to qualify for the ASC safe harbor under federal fraud and abuse law, the OIG will likely insist that the arrangement strictly comply with some requirements, such as the one defining the necessary characteristics of physician owners, while allowing more leeway in compliance with others.

Fraud↗

Discrimination of Na+-independent transport systems L, T, and asc in erythrocytes. Na+ independence of the latter a consequence of cell maturation?

On the basis of inhibition analysis two bicyclic amino acid analogs appear to enter human red blood cells by much the same Na+-independent mediation, whereas striking differences are apparent in the routes for tryptophan and leucine, confirming a role for System T, but also suggesting the participation of a third system of low affinity somewhat selective for weakly basic amino acids. System T of the human cell is specifically inhibited by 4-azidophenylalanine, and is highly sensitive, relative to System L, to N-ethylmaleimide inhibition. Uptake by System T approaches its steady state much more slowly than does System L, and its participation in trans-stimulation is questionable, whereas that of System L is as usual strong. A different added transport system became apparent in the slow approach of the Na+-independent mediation of uptake of 3- and 4-carbon dipolar amino acids by the nucleated pigeon red cell to its steady state. In that cell System T makes at most a minor contribution. The patterns of trans-stimulation of fluxes among selected pairs of amino acids in the pigeon cell correspond to a usual participation in transmembrane exchange by System L, and also by the new transport system. An important but not the sole source of the heterogeneity in the pigeon cell is the participation of the system conspicuously involved in the transport of alanine, serine, and threonine, among other amino acids. This route of transport of these amino acids is made conspicuous by their small transport by other Na+-independent agencies, notably System L. Reactivity with this system is enhanced by a side change hydroxyl or sulfhydryl group. Uptake by this route as tested by threonine showed little inhibition by cysteinesulfinate under conditions inhibitory to System asc; also a sensitivity to lowering of pH unlike that seen with System asc. The new Na+-dependent transport system appears to be a species variant of quite similar Na+-independent systems discovered by Young et al. (Young, J. D., Ellory, J. C., and Tucker, E. M. (1975) Nature (Lond.) 254, 156-157; Fincham, D. A., Mason, D. K., and Young, J. D. (1982) Biochem. Soc. Trans. 11, 776-777) in sheep and horse erythrocytes on the basis of their absence in phenotypes. These authors have emphasized several similarities in these two cases to Na+-dependent System asc, and they propose that Na+ dependence has specifically been lost on maturation of the red cells without major changes in amino acid selectivity.(ABSTRACT TRUNCATED AT 400 WORDS)

Amino Acids↗

Wide distribution of pH-dependent service of transport system ASC for both anionic and zwitterionic amino acids.

Criteria have been set up for recognizing the trait of interconvertibility of transport System ASC, whereby it operates in a deprotonated form to mediate the transport of zwitterionic amino acids and in a protonated form to transport anionic amino acids. This trait has been detected by each criterion applied, in all the tested occurrences of System ASC, as follows: the Ehrlich ascites tumor cell in suspension; a cultured variant thereof in monolayer; the Chinese hamster ovary cell CHO-K1 in monolayer; the pigeon red blood cell in suspension; and the human red blood cell in suspension. We conclude that this trait is a general feature of System ASC which may we may use provisionally in defining the system.

Amino Acids↗

Prevalence and typing of HPV DNA by hybrid capture II in women with ASCUS, ASC-H, LSIL, and AGC on ThinPrep Pap tests.

Testing for human papillomavirus (HPV) DNA is now a viable option for the management of women with atypical squamous cells of undetermined significance (ASCUS). The utility of reflexive HPV DNA testing for women with a cytologic diagnosis of atypical glandular cells-not otherwise specified (AGC-NOS), ASCUS subtypes, and low-grade squamous intraepithelial lesion (LSIL) has not been well established. In the present investigation, reflex Hybrid Capture II HPV DNA testing results were evaluated for HPV prevalence and type in 371 women with abnormal cytologic diagnoses of ASCUS-not otherwise specified (ASCUS-NOS), ASCUS-suspicious for low-grade squamous intraepithelial lesion (ASCUS-L), atypical squamous cells-cannot exclude high-grade squamous intraepithelial lesion (ASC-H), AGC-NOS, and LSIL on ThinPrep Pap tests. Positive high-risk HPV DNA was identified in 53.6% of the study samples, including ASCUS-NOS 40.2% ASCUS-L 71.4%, ASC-H 37.5%, LSIL 88.6%, and AGC-NOS 0%. We conclude that reflex HPV DNA testing appears to not be useful for colposcopy triage for cytologic diagnoses of LSIL or AGC-NOS.

DNA Probes, HPV↗

An in vitro clonal assay of adherent stem cells (ASC) in mouse marrow.

Hematopoietic stem cells with high proliferative capacity can be assayed when stromal bone marrow cultures are overlaid with limiting dilutions of marrow samples. This leads to hematopoietic growth after 4 weeks in a fraction of cultures, consistent with expectations based on Poisson statistics. It will be shown that monoclonal cultures are obtained that last from 2 to 15 weeks and that can generate up to several million mature granulocytes. The originating clone-forming cell is named adherent stem cell (ASC) because of its adherence to plastic or stromal surfaces. The ASC is comparable to the CFU-S in frequency, proliferative capacity and in its ability to give rise to CFU-S. As an unexpected additional finding we report that a mode of "clonal succession" was apparent in cultures which expressed more than one clone.

Animals↗

Antisense oligonucleotide of clusterin mRNA induces apoptotic cell death and prevents adhesion of rat ASC-17D Sertoli cells.

Clusterin has been known to play important roles in cell-cell and/or cell-substratum interactions. Recently we reported the transient expression of clusterin in pancreatic endocrine cells during the early developmental stages and suggested a role in aggregating the endocrine cells for islet formation. In the present study, we have investigated the involvement of clusterin in cell-substratum interaction by the inhibition of clusterin synthesis using antisense oligonucleotide. The expression of clusterin was transiently increased as early as 2-8 h after plating the ASC-17D Sertoli cells to the culture flask, which was the period of cell attachment. In addition, up-regulation of clusterin mRNA was so much greater when the Sertoli cells were plated on the petri dish for the bacterial culture instead of in a animal cell culture flask that therefore, the cells failed to attach to it. These findings suggested that interruption of cell to plate substratum interaction might lead to over-expression of clusterin from Sertoli cells to induce cell to cell aggregation or, perhaps, to re-establish attachment with the substratum. Transfection of ASC-17D Sertoli cells with a 20-base antisense oligonucleotide against clusterin mRNA resulted in extracellular release of LDH and DNA fragmentation. Sertoli cell death by antisense oligonucleotide of clusterin was sequence specific and dose dependent. Treatment of antisense oligonucleotide induced a marked reduction of synthesis for clusterin protein, but not for clusterin mRNA expression, suggesting the translational suppression of clusterin by antisense oligonucleotide. Further, microscopic observation showed that more noticeable cell death was induced by treating the antisense prior to plating the cells than by treating after cell attachment to the plate. From these results, we speculate that down-regulation of clusterin expression in the anchorage-dependent Sertoli cells prevents them from attaching to the plate, and therefore induces cell death.

Animals↗

Amino acid transport in pig lymphocytes. Enhanced activity of transport system asc following mitogenic stimulation.

Changes in neutral amino acid transport activity caused by addition of phytohaemagglutinin-P to quiescent peripheral pig lymphocytes have been evaluated by measurements of 14C-labelled neutral and analogue amino acids under conditions approaching initial entry rates. Utilizing methylaminoisobutyric acid, the best model substrate of System A, we confirmed our previous report (Borghetti, A.F., Kay, J.E. and Wheeler, K.P. (1979) Biochem. J. 182, 27-32) on the absence of this transport system in quiescent cells and its emergence following stimulation. Furthermore, we demonstrated the presence in quiescent cells of an Na+-dependent transport system for neutral amino acids that has been characterized as System ASC by several criteria including intolerance to methylaminoisobutyric acid, strict Na+-dependence, the property of transtimulation and specificity for pertinent substrates such as alanine, serine, cysteine and threonine. Analysis of the relationship between influx and substrate concentration revealed that two independent saturable components contribute to entry of alanine in quiescent cells: a low affinity (Km = approximately 4 mM) and a high affinity (Km = approximately 0.2 mM) component. The high affinity component could be inhibited in a competitive way by serine, cysteine and threonine, but methylaminoisobutyric acid did not change appreciably its constants. The enhanced activity of alanine transport through the ASC system observed in activated cells resulted from a large increase in the capacity (V) of the high affinity component without any substantial change in the apparent affinity constant (Km).

Alanine↗

Structural and biochemical analysis of the asc operon encoding 6-phospho-beta-glucosidase in Pectobacterium carotovorum subsp. carotovorum LY34.

An asc operon of Pectobacterium carotovorum subsp. carotovorum LY34 (Pcc LY34) was isolated from a genomic library in a screen for beta-glucosidase activities. Sequence analysis of the 5618-bp cloned DNA fragment (accession number AY622309) showed three open reading frames (ascG, ascF, and ascB) that are predicted to encode 375, 486, and 476 amino acid proteins, respectively. The AscG ORF shared a high similarity with the Escherichia coli AscG repressor. The AscF ORF shared 81% identity with the E. coli AscF PTS enzyme II(asc), while the AscB ORF was highly similar to 6-phospho-beta-glucosidases and is a member of the glycosyl hydrolase family 1. The purified AscB enzyme hydrolyzed salicin, arbutin, pNPG, and MUG. It exhibited maximal activity at pH 7.0 and 40 degrees C, and its activity was enhanced in the presence of Mg(2+) and Ca(2+). The molecular weight of the enzyme was estimated to be 53 000 Da by SDS-PAGE. Two conserved glutamate residues (Glu(182) and Glu(374)) were shown to be important for AscB activity.

Amino Acid Sequence↗