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The structure of rabbit muscle phosphoglucomutase at intermediate resolution.

The three-dimensional structure of rabbit phosphoglucomutase has been determined to 2.7 A resolution by a combination of isomorphous and molecular replacement techniques. Heavy atom positions were found by using vector search and difference Fourier methods. The two molecules in the asymmetric unit form a dimer with its 2-fold axis perpendicular to and intersecting with a crystallographic 4(1) axis. Thus, the dimers are arranged so that they form fibers that are coincident with the 4(1) axes. A polypeptide model, corresponding with the known residue sequence, has been fitted to the electron density map to produce a structure that consists of four domains. All four have an alpha/beta structure; the first three have a somewhat similar topology that is based on a mixed parallel/antiparallel beta sheet, whereas the fourth is based on an antiparallel sheet. The active site lies between the four domains, with the phosphoserine residue in the first domain and some of the probable substrate-binding residues in the fourth and final domain. The carboxyl edges of all four sheets are directed towards the active site region, which lies in a deep crevice.

Animals↗

The catalytic activity of muscle phosphoglucomutase in the crystalline phase.

A suspension of microcrystals of phosphoglucomutase in 60% ammonium sulfate exhibits a maximal catalytic activity in substrate-velocity studies that is about 0.2 of that obtained with the soluble enzyme under the same conditions. The apparent Michaelis constants for the reaction in the crystal phase are altered to an even smaller extent, relative to that in solution, although the parameters for the monophosphate and bisphosphate are increased more than 3 and more than 5 orders of magnitude, respectively, by the sulfate present. The compatibility of larger crystals with a reaction that constitutes part of the catalytic process also is demonstrated.

Animals↗

The simultaneous separation of the enzymes glyoxalase I, esterase D, and phosphoglucomutase.

A procedure for the multisystem analysis of bloodstains using the simultaneous separation of the enzymes glyoxalase I, esterase D, and phosphoglucomutase has been developed. The amount of bloodstain required has therefore been reduced threefold without any loss in resolution and sensitivity. Bloodstains at least seven weeks old have been correctly phenotyped in all three systems.

Blood Stains↗

Glyoxalase I typing and phosphoglucomutase-1 subtyping of a single hair.

A technique is described for the typing of glyoxalase I (GLO I) and the subtyping of phosphoglucomutase-1 (PGM-1) from the root sheath cells of a single forcibly removed hair. This procedure does not require sample preparation and does not alter the morphological characteristics of the hair. The combined discrimination probability (DP) of the two markers taken together is 0.90 for whites and 0.89 for blacks. GLO I can be typed after four weeks, and PGM-1 can be typed after eight to fifteen weeks in hairs maintained at room temperature. Hairs mounted with Permount showed loss of enzyme activity and loss of band sharpness.

Forensic Medicine↗

Genetic mapping of a phosphoglucomutase locus in Aedes togoi.

An electrophoretic survey of the phosphoglucomutase (PGM) enzyme was performed using agar gels in 6 strains (3 Japanese strains and 3 strains from Taiwan, Thailand and Canada) of Aedes togoi. The survey revealed at least 3 alleles involved at the Pgm locus among the 6 strains examined. Backcross experiments showed that the Pgm locus was located on the sex chromosome in the following order: Odh (octanol dehydrogenase)--M(sex)--(13.8 map units)--Pgm--(17.0 map units)--h(hooked leg)--s(straw-colored larva).

Aedes↗

Simultaneous electrophoretic determination of phosphoglucomutase subtypes, adenosine deaminase, erythrocyte acid phosphatase, and adenylate kinase enzyme phenotypes.

Many of the conventional agarose phosphoglucomutase (PGM) subtyping systems presently in use fail to provide a good separation between the 1 + and 2- bands as well as the 2+ band and the more anodic moving bands. Use of a 1-mm-thick gel composed of 1% ISO GEL (FMC Corp.) and phosphate-citric acid gel and tank buffers with a pH of 5.3 provided exceptionally good separation between all four of the major subtyping bands. The additional criteria for this procedure is a voltage of 21 V/cm and a run time of 4 h. Utilization of this procedure using case samples of varied ages proved the reliability of the procedure. Also examined were the effects of several reducing agents on the enzyme band patterns and the use of this system for the simultaneous determinations of the adenosine deaminase (ADA), erythrocyte acid phosphatase (EAP), and adenylate kinase (AK) enzyme phenotypes.

Acid Phosphatase↗

The phosphoglucomutase group system of human erythrocytes.

Frequency of PGM1 phenotypes and their corresponding genes in the Polish population was determined in two samples: in 760 adults and 240 children. The frequency of the PGM1 1 gene in adults was 0-748, and in children 0-765. A statistically significant deficiency of heterozygotes was found in adults. Heredity of the phosphoglucomutase system was studied in 52 families with 162 children, in 223 mother-child pairs, and in 73 twin pairs of the same sex. In all groups, phenotypes of PGM1 agreed with the hypothesis of heredity, assuming a pair of alleles of the PGM1 system. In the parent combinations PGM1 1-1 X PGM1 2-1 a deficiency of PGM1 2-1 children was found. Analysis of linkage of genes of the PGM1 system with eight group systems provided data indicating a possibility of linkage of the PGM1 system with the Rh system. The theoretical usefulness of the PGM1 system in paternity investigations in the Polish population was estimated to be 14-24%.

Adult↗

Genetic polymorphisms and human reproduction: a study of phosphoglucomutase in spontaneous abortion.

Theoretical arguments suggest that variation of metabolic parameters due to genetically determined enzyme polymorphisms may exert important effects on implantation and zygote development. The polymorphic enzyme phosphoglucomutase controlled by locus 1 (PGM1) is a phosphotransferase which plays a key role in carbohydrate metabolism and it is present in high concentrations in placental tissue. The enzyme has been studied in 47 couples with habitual abortion, in 36 women with single episodes of spontaneous abortion, in 48 women with induced abortion, and in control samples of normal individuals from the same population. Among couples with habitual abortion a significant increase of mean survival time of fetuses was observed in PGM1-heterozygote mothers as compared to homozygotes. An increased proportion of couples which may produce the hypothetical PGM1-null phenotype was also observed in habitual abortion, which suggests that homozygosity for PGM10 allele may contribute to fetal loss. Investigations on polymorphic enzymes involved in placental and fetal metabolism may contribute significantly to the problem of genetic etiology of spontaneous abortion.

Abortion, Habitual↗

The complete amino acid sequence of rabbit muscle phosphoglucomutase.

The complete amino acid sequence of rabbit muscle phosphoglucomutase has been determined by isolating the 11 peptide fragments produced by the cyanogen bromide cleavage reaction and subjecting these to automated sequencing procedures. Products produced by treatment of some of these fragments with hydroxylamine, iodosobenzoic acid, mild acid, cyanogen bromide in formic and heptafluorobutyric acids, Staphylococcus aureus V8 protease, and trypsin (with or without blocking at lysine residues) were used to complete the sequence for each of the cyanogen bromide fragments. The cyanogen bromide fragments were ordered by isolating the four tryptic peptides produced by a limited tryptic digest of the native enzyme in the presence of its substrates and its bivalent metal ion activator, Mg2+, degrading these by means of trypsin, after blocking digestion at lysine residues, and isolating and identifying all fragments thus produced that contained 10 or more residues. The 561-residue sequence thus obtained is one of the longest that has been determined by chemical means. There is excellent agreement between this sequence and published compositions after appropriate normalization. The absorbance of the enzyme is about 7.0 at 278 nm for a 1% solution; this value is 9% lower than that previously used.

Amino Acid Sequence↗

Phosphoglucomutase, adenylate kinase and acid phosphatase polymorphism in some Jewish populations of Israel.

The phosphoglucomutase (PGM1) adenylate kinase (AK1) and acid phosphatase (ACP1) phenotypes were studied in Israeli Jews. In total 934 individuals were investigated for AK1 and of these, 926 for PGM1 and 768 for ACP1 isozymes. From the studied individuals, six groups deriving from Eastern, Central and Southern Europe, the Middle East, North Africa and Yemen were formed. The comparison of the phenotype distribution in these groups by the chi-square test failed to indicate any statistically significant differences with respect to PGM1 phenotypes. With respect to AK1 phenotypes, there were statistically significant differences between the Central European group on the one hand and the Yemenite and South European groups on the other (p less than 0.05), and with respect to ACP1--between the Middle Eastern and the Yemenite groups (p less than 0.01). In the studied groups, the frequency of the PGM11 gene varied from 0.6822 (North African group) to 0.7431 (Central European group), of the AK11 gene--from 0.9099 (Central European group) to 0.9698 (Yemenite group) and of the ACPb1 gene--from 0.6710 (Middle Eastern group) to 0.8194 (Yemenite group). The greatest genetic distances were found between the Yemenite group on the one hand and the Middle Eastern, Central European and East European subgroups on the other.

Acid Phosphatase↗

The simultaneous identification of seminal acid phosphatase and phosphoglucomutase by starch gel electrophoresis.

Although elevated acid phosphatase (AP) activity in vaginal fluid is a consistent indicator for semen, differentiation between vaginal AP and seminal AP provides a more meaningful result. Detection of seminal AP in mixtures of vaginal AP, feces, and blood is accomplished by starch gel electrophoresis, employing the substrate thymolphthalein monophosphate as a selective visualization agent. Genetic phosphoglucomutase isoenzymes are simultaneously separated by this method and allow differentiation in some semen/vaginal fluid mixtures.

Acid Phosphatase↗

Genetic markers in semen. III: Alteration of phosphoglucomutase isozyme patterns in semen contaminated with saliva.

Contamination of semen by saliva can result in the alteration of seminal phosphoglucomutase (PGM1) isozyme patterns. The alteration is characterized by the gradual loss of the a and b isozyme bands the concomitant generation of anodal bands; eventually, all PGM activity is lost. The conversion of PGM isozyme patterns has been shown to be due to a dialyzable heat-labile factor in saliva and a nondialyzable heat-labile factor in semen. The implications of this conversion for PGM typing in sexual assault evidence are discussed.

Chemical Phenomena↗

Isoelectric focusing in agarose: phosphoglucomutase (PGM locus 1) typing.

The subphenotypes of phosphoglucomutase (PGM) was successfully typed by isoelectric focusing with a charge-balanced agarose. The resolution was as high as that obtained with polyacrylamide, with none of the drawbacks associated with the use of polyacrylamide. Exceptionally straight iso-pH lines were obtained, making interpretation of the results more reliable. Gel preparation was simple and rapid, and the time for analysis was reduced. A way of preserving the resultant zymogram is described.

Blood Stains↗

Subtyping of human red cell phosphoglucomutase locus 1 (PGM1) polymorphism: a third PGM1(1) allele common among Twa Pygmies from North Rwanda.

Seventy-eight Twa Pygmies from North Rwanda have been subtyped by acid starch gel electrophoresis for the polymorphism at the phosphoglucomutase locus 1 (PGM1). A third common PGM1(1) allele that has been named PGM1(1Twa) was detected in heterozygous association with both PGM1(1S) and PGM1(1F) alleles. The PGM1(1Twa) product is faster than those of the other two PGM1(1) alleles and has the same electrophoretic mobility as the rare PGM1(6) enzyme. The frequency of PGM1(1Twa) was found to be 0.45.

Alleles↗

[UDPG pyrophosphorylase and phosphoglucomutase activity in the liver of rats with alloxan diabetes].

The UDPH-pyrophosphatase and phosphomurase activity was determined in the liver homogenates of rats with manifest alloxan diabetes. In comparison with control animals, there was a statistically significant reduction of UDPH-pyrophosphorylase and phosphoglucomutase activity (by 29 and 33%, respectively) in diabetic rats. Decreased activity of the mentioned enzymes in the liver of rats with alloxan diabetes pointed to their participation in reduction of glycogen synthesis in the liver occurring in this disease.

Animals↗

Lipooligosaccharide biosynthesis in pathogenic Neisseria. Cloning, identification, and characterization of the phosphoglucomutase gene.

The lipooligosaccharide (LOS) of pathogenic Neisseria is an important factor in disease pathogenesis. Little is known about the genes involved in neisserial LOS biosynthesis. To elucidate specific LOS biosynthetic genes, we screened a Tn916 library that was constructed in Neisseria meningitidis strain NMB. This strain expresses a single LOS that has an molecular mass of 4.5 kDa and binds monoclonal antibody (mAb) 3F11. This library was screened using a mAb panel that recognizes structural differences in neisserial LOS oligosaccharides. A stable LOS mutant of strain NMB was identified which we designated NMB-R6. This mutant expressed an LOS with an molecular mass of approximately 3.1-3.2 kDa and did not bind mAb 3F11. Genomic DNA from this mutant transformed N. meningitidis strain NMB to the tetracycline resistant NMB-R6 phenotype greater than 10(-4)/recipient/micrograms of DNA. In addition, we transformed Neisseria gonorrhoeae strain 1291 (LOS phenotype molecular mass 4.5 kDa, mAb 3F11+) to the NMB-R6 LOS phenotype with N. meningitidis NMB-R6 genomic DNA. Analysis of N. gonorrhoeae strain 1291-R6 LOS by mass spectroscopy showed that the LOS oligosaccharide structure is GlcNAc-->Hep2phosphoethanolamine-->2-keto-3-deoxymannooctuloson ic acid (where Hep is heptose). Sequence analysis showed that the transposon is inserted into the 3' end of a gene that has homology to the human phosphoglucomutase (PGM) gene. Sequence comparison indicated that the putative PGM gene in N. gonorrhoeae 1291 and N. meningitidis NMB had 92% identity at the DNA level. PGM and glucokinase activity was present in cell free extracts of N. meningitidis NMB and N. gonorrhoeae strain 1291. N. meningitidis NMB-R6 and N. gonorrhoeae strain 1291-R6 had no detectable PGM activity, whereas glucokinase activity was similar to the wild type strains. PGM activity can be reconstituted in N. meningitidis strain NMB-R6 by transformation with the cloned PGM gene. SDS-polyacrylamide gel electrophoresis demonstrated that NMB-R6 transformed with the PGM gene expressed the 3F11+, 4.5-kDa LOS of the parent NMB strain. The inability of N. meningitidis NMB-R6 and N. gonorrhoeae strain 1291-R6 to convert glucose 6-phosphate to glucose 1-phosphate results in the truncated LOS phenotype expressed by these mutants.

Amino Acid Sequence↗