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M J Adams

Publications and source records attributed to M J Adams.

At least 37 records · Page 2Linked to original sources

Sequence analysis demonstrates that Onion yellow dwarf virus isolates from China contain a P3 region much larger than other potyviruses.

The complete sequence of an isolate of Onion yellow dwarf virus (OYDV) from Yuhang, Zhejiang province, China, was determined. It was 10538 nts in length and was predicted to encode a polyprotein 3403 amino acids (aa) long with a calculated M(r) of 385.1 kDa. The predicted P3 protein (530 aa) was larger than that of any of the potyviruses sequenced to date (344-378 aa). The additional sequence occurs at the N-terminus of the protein, does not represent a duplication from elsewhere in the OYDV genome and could not be matched to any other sequences in the databases. Similar sequences were found in 4 other Chinese OYDV isolates. Phylogenetic analysis of the amino acid sequences of the polyprotein showed that OYDV is distantly related to Pea seed-borne mosaic virus and the potyviruses of grasses and cereals.

Amino Acid Sequence↗

Characterisation of potyviruses from sugarcane and maize in China.

Sugarcane or maize leaves with mosaic virus symptoms were collected from 13 sites in China. Sequence data showed that all 8 samples from maize contained Sugarcane mosaic virus (SCMV); complete sequences were determined from 2 samples and partial sequences (the CI coding region and the 3'-part of the genome) from the others. The 5 sugarcane samples all contained a virus tentatively described as Sorghum mosaic virus (SrMV) and in three of them SCMV was also detected; 2 SrMV sequences and the 3 SCMV ones were completely determined and partial SrMV sequences were obtained from the remaining 3 samples. The features of the complete sequences of SCMV and SrMV are described for the first time. Sequence comparisons and phylogenetic analysis showed three distinct groups of Chinese SCMV sequences (sugarcane isolates from Zhejiang province, a maize isolate from Guangdong and maize isolates from other provinces). The SrMV sequences were similar to one another (> 93% identical nucleotides); they resembled published sequences in the coat protein but were less similar in the 3'-UTR. The complete sequences of SCMV and SrMV had about 70% nucleotides identical to one another and to Maize dwarf mosaic virus (MDMV). MDMV was not detected in any of the samples.

China↗

The complete sequence of Oat mosaic virus and evidence for deletion and duplication in RNA2.

The complete nucleotide sequence of a UK isolate of oat mosaic virus (OMV) was determined. RNA1 was 7550 nt long with one large open reading frame potentially encoding a polyprotein of 262.8 kDa with features typical of bymoviruses. RNA2 was 2284 nt in length, substantially smaller than those of other bymoviruses sequenced. It appeared that most of the P2 region had been deleted during repeated mechanical transmission of the isolate. The 3'-UTR of RNA2 was very long (> 1.25 kb) and proved to have a 532 nt slightly overlapping repeat. Phylogenetic analysis confirmed that OMV is an independent member of the genus Bymovirus.

Amino Acid Sequence↗

Characterisation of a potyvirus and a potexvirus from Chinese scallion.

Molecular analyses of viruses infecting Chinese scallion (Allium chinense G. Don) showed that the plants did not contain any of the poty-, carla- or allexiviruses that are common in garlic plants in China. The complete sequences of a potyvirus and a potexvirus were determined and these were shown to represent different viruses from any in the databases. They could be transmitted mechanically to scallion but not to other Allium species (including garlic) or to Narcissus. The potyvirus, tentatively named Scallion mosaic virus, has a distant relationship (c. 62% nucleotide identity over the entire genome) to Turnip mosaic virus and Japanese yam mosaic virus, with which it grouped in phylogenetic analyses. Its genome is 9324 nts long, encoding a 341.3 kDa polyprotein of 3001 amino acids. The potexvirus, tentatively named Scallion virus X, has a genome 6987 nts long and its organisation was similar to that of the other potexviruses but with only 46.3-63.2% nucleotides identical to them. It is most closely related to Narcissus mosaic virus but phylogenetic analyses indicate that it should be considered a distinct species. Neither of the viruses have been detected in garlic, although the two host plants are closely related.

Allium↗

Characterisation of some carla- and potyviruses from bulb crops in China. Brief report.

Conserved carla- and potyvirus primers were used in RT-PCR to amplify virus fragments from garlic and other bulb crops in China and the fragments were subsequently sequenced and compared in phylogenetic analyses. Garlic plants from Henan, Hubei, Jiangsu, Shangdong and Yunnan provinces all contained at least one isolate each of Garlic latent virus (genus Carlavirus), Onion yellow dwarf virus (OYDV, genus Potyvirus) and Leek yellow stripe virus (LYSV, genus Potyvirus). The complete sequence of a Zhejiang isolate of LYSV was also determined, providing the first complete sequence of this virus. The genome was 10142 nucleotides long excluding the poly(A) tail and had the typical features of the genus Potyvirus, although some of the amino acids surrounding the polyprotein cleavage sites were unusual. Shallot yellow stripe virus (SYSV) was amplified from bunching onion (Allium fistulosum var. caespitosum) in Zhejiang province, providing the first record of SYSV in China. Lily mottle virus was amplified from dragon-teeth lily (Lilium brownii var. viridulum).

Allium↗

NADP+ and NAD+ binding to the dual coenzyme specific enzyme Leuconostoc mesenteroides glucose 6-phosphate dehydrogenase: different interdomain hinge angles are seen in different binary and ternary complexes.

The reduced coenzymes NADH and NADPH only differ by one phosphate, but in the cell NADH provides reducing power for catabolism while NADPH is utilized in biosynthetic pathways. Enzymes almost invariably discriminate between the coenzymes, but glucose 6-phosphate dehydrogenase (G6PD) from Leuconostoc mesenteroides is rare in being functionally dual specific. In order to elucidate the coenzyme selectivity, the structures of NADP(+)- and NAD(+)-complexed L. mesenteroides G6PD have been determined including data to 2.2 and 2.5 A resolution, respectively, and compared with unliganded G6PD crystallized in the same space groups. Coenzyme binding is also compared with that in a ternary complex of a mutant in which Asp177 in the active site has been mutated to asparagine. There are no gross structural differences between the complexes. In both binary complexes, the enzyme interdomain hinge angle has opened. NADP(+) binds to the furthest open form; of the residues within the coenzyme domain, only Arg46 moves, interacting with the 2'-phosphate and adenine. NAD(+) is less well defined in the binding site; smaller hinge opening is seen but larger local changes: Arg46 is displaced, Thr14 bonds the 3'-hydroxyl and Gln47 bonds the 2'-hydroxyl. In the ternary complex, the hinge angle has closed; only the adenine nucleotide is ordered in the binding site. Arg46 again provides most binding interactions.

Binding Sites↗

Molecular characterisation of segments 1 to 6 of Rice black-streaked dwarf virus from China provides the complete genome.

The nucleotide sequences of segments S1 to S6 of a Chinese isolate of Rice black-streaked dwarf virus (RBSDV) were determined. This provides the first complete sequence of a plant pathogenic member of the genus Fijivirus. The complete ten-segment genome has 29,141 nucleotides, making it the largest reovirus genome so far reported. Each of the segments S1-S6 is predicted to encode a single major protein. Protein comparisons indicated that S1 encoded an RNA dependent RNA polymerase, with similarities to that encoded by S1 of Nilaparvata lugens reovirus (NLRV). S2 and S3 appeared to be homologous to S3 and S4 respectively of both Fiji disease virus (FDV) and NLRV. The protein encoded on S4 showed some similarity to that of NLRV S2. The proteins encoded on S5 and S6, though similar in size to those of NLRV S5 and S6, had no detectable homologies to them or to any other known protein.

Amino Acid Sequence↗

Molecular characterisation of a complex mixture of viruses in garlic with mosaic symptoms in China.

Degenerate primers were used to detect and amplify cDNA of viruses of the genera Carlavirus, Allexivirus and Potyvirus from garlic plants with mosaic symptoms growing in Zhejiang province, China. Plants contained a complex mixture of viruses and strains. Three distinct stains of Garlic latent virus were detected; the most frequent one was completely sequenced and partial sequences were obtained for the other two. The complete sequence (8363 nt) was 76.4% identical to a Korean isolate. Two allexiviruses were detected and completely sequenced. One (8319 nt) was identified as Garlic virus X and comparisons showed that a published Korean isolate (which had 90.2% identical nucleotides) had an N-terminal deletion in the serine-rich ORF4. The other isolate (8451 nt), tentatively named Garlic virus E, appeared to be a new member of the genus. Phylogenetic analyses of the different viral proteins and distinctive conserved sequence motifs within the genus are discussed. This is the first report of allexiviruses from China. Using potyvirus primers, three distinct isolates of Onion yellow dwarf virus and one of Leek yellow stripe virus were detected and the 3'-terminal sequences of their genomes were determined. In a coat protein phylogenetic analysis, the new isolates were most closely related to other published isolates from Japan and China.

Amino Acid Sequence↗

Molecular characterisation of an isolate of Dasheen mosaic virus from Zantedeschia aethiopica in China and comparisons in the genus Potyvirus.

The complete nucleotide sequence of an isolate of Dasheen mosaic virus from Zantedeschia aethiopica in Zhejiang Province, China, was determined. The 9991 nucleotide genome was typical of the genus Potyvirus and phylogenetic analysis showed it to be a member of the Bean common mosaic virus subgroup. The 3'-terminal sequence, including the coat protein region, was determined for three further isolates from China and Japan. Variations in the length and composition of the N-terminus of the coat protein were not related to geographic origin or plant host. An analysis of all potyvirus cleavage sites revealed patterns related to phylogenetic groupings.

Araceae↗

Plant virus transmission by plasmodiophorid fungi is associated with distinctive transmembrane regions of virus-encoded proteins.

Computer analysis of published sequence data has consistently identified two complementary transmembrane domains in the coat protein readthrough domains of benyviruses, furoviruses and pomoviruses and in the P2 proteins of bymoviruses. These viruses differ in genome organisation but are all transmitted by plasmodiophorid fungi. The second domain is absent or disrupted in naturally-occurring deletion mutants that cannot be fungally-transmitted. In a non-transmissible substitution mutant of Beet necrotic yellow vein virus [Tamada et al. (1996) J Gen Virol 77: 1359-1367], the alignment of the helices is disrupted. From conserved patterns detected in transmembrane helix sequences and calculated relative helix tilts, structural arrangements consistent with tight packing of transmembrane helices were identified. These included ridge/groove arrangements between the two helices and strong electrostatic associations at the interfacial regions of the membrane. The data strongly suggest that these transmembrane helices facilitate the movement of virus particles across the fungal membrane.

Amino Acid Sequence↗

Sequence analysis shows that ribgrass mosaic virus Shanghai isolate (RMV-Sh) is closely related to Youcai mosaic virus.

The complete nucleotide sequence of an isolate of Ribgrass mosaic virus (RMV-Sh) from Brassica chinensis (Qingcai) in Shanghai, China was determined. The genome consisted of 6301 nucleotides and its genomic organization was similar to those of other crucifer-tobamoviruses. Comparisons of the nucleotide and predicted amino acid sequences and phylogenetic analyses showed that RMV-Sh had very high homology (> 95% identical nucleotides and 97.7-99.6% identical amino acids) to a sequence of Youcai mosaic virus (YMV = Chinese rape mosaic or Oilseed rape mosaic virus), despite differences in host range or symptoms and this strongly suggests that these isolates should be regarded as belonging to the same species. Only coat protein sequences have been reported for other RMV isolates but it seems likely that the distinction between RMV and YoMV will be difficult to maintain.

Base Sequence↗

A universal PCR primer to detect members of the Potyviridae and its use to examine the taxonomic status of several members of the family.

A universal primer (Sprimer: 5'-GGX AAY AAY AGY GGX CAZ CC-3', X = A, G, C or T; Y = T or C; Z = A or G), designed from the consensus sequences that code for the conserved sequence GNNSGQP in the NIb region of members of the family Potyviridae, was used to amplify by RT-PCR the 3'-terminal genome regions from infected plant samples representing 21 different viruses in the family. Sequencing of some of the fragments (c. 1.7 kb) showed that the type strain (ATTC PV-107) of Oat necrotic mottle virus is not a distinct species in the genus Rymovirus, but is synonymous with Brome streak mosaic virus (genus Tritimovirus) and that Celery mosaic virus is a distinct member of the genus Potyvirus not closely related to any other sequenced species. Potyviruses infecting crops in China were also investigated, showing that viruses on cowpea and maize in Hangzhou, Zhejiang province were respectively Bean common mosaic virus and Sugarcane mosaic virus and that one on garlic in Nanjing, Jiangsu province was Onion yellow dwarf virus. Fragments were also sequenced from Chinese isolates of Lettuce mosaic virus and Soybean mosaic virus (from Hangzhou), Turnip mosaic virus (2 different isolates from Zhejiang province) and RNA1 of Wheat yellow mosaic virus (from Rongcheng, Shandong province).

Apiaceae↗

Anti-tissue factor pathway inhibitor activity in patients with primary antiphospholipid syndrome.

The association between antiphospholipid antibodies and an increased risk of thrombosis in antiphospholipid syndrome (aPS) patients is probably caused by numerous mechanisms, including the effects of antibodies to phospholipid-binding proteins such as beta(2)-glycoprotein I and prothrombin. In this study, we investigated the inhibition of tissue factor pathway inhibitor (TFPI) in 33 patients with primary antiphospholipid syndrome (PAPS). TFPI was measured in PAPS patients using an amidolytic assay, dependent on the generation of activated factor X (Fxa), and this was compared with 55 healthy subjects. Functional levels of TFPI (mean +/- SD) were significantly lower in PAPS patients (0.89 +/- 0.37 U/ml) than the control group (1.05 +/- 0.15 U/ml) (P = 0.02). The difference was caused by a subset of five patients who had TFPI levels below the lower 99% confidence interval of the normal reference range, representing increased FXa generation in the assay system. IgG fractions were isolated from these five patients and five control subjects, then incorporated into normal plasma to measure FXa generation in the TFPI assay system. FXa generation was increased when polyclonal rabbit anti-human TFPI IgG (P < 0.0001) or PAPS IgG (P = 0.0001) were added to normal plasma, demonstrating inhibition of TFPI. The apparent anti-TFPI activity demonstrated in the five subjects with PAPS in this study may represent a significant new mechanism for thrombosis in patients with aPS, as it implies that increased tissue factor FVIIa-mediated thrombin generation might occur.

Adult↗

High-resolution outpatient imaging of the wrist.

The authors describe their experience with magnetic resonance imaging (MRI) in the evaluation of pathologic conditions of the wrist in an outpatient setting. In that setting, because time and quality are both important factors, they have concentrated on developing protocols that will allow effective, time-efficient, high-resolution MRI of the wrist. With these wrist imaging protocols, they have evaluated the majority of commonly encountered pathologic conditions of the wrist. They have found that high-resolution images, which can be acquired in a very timely fashion when fast spin echo sequences are used in imaging protocols, will demonstrate the most common pathologic conditions, including triangular fibrocartilage and ligament tears in the wrist. They present the practical issues of patient position and imaging sequences as well as the imaging findings in those pathologic conditions.

Ambulatory Care↗

The effects of continuous and discontinuous walking on physiologic response in college-age subjects.

The Surgeon General's Report on Physical Activity recommends an accumulation of 30 minutes of moderate physical activity on most, if not all, days of the week. The purpose of this study was to determine if 3 10-minute bouts of walking had the same effect on physiologic response as 1 30-minute bout of continuous walking when both were performed 3 d x wk(-1) for 12 weeks. Thirty (18 completed the study) college-aged subjects (VO2max: 44 ml x kg(-1) x min(-1) +/- 8.37) were randomly assigned to either a nonexercising group (N = 7), a group (N = 5) that performed 3 10-minute bouts, or a group (N = 6) that performed 1 30-minute bout of exercise. Intensity was set at 50-60% of estimated maximum heart rate. A mixed factor 2 x 3 analysis of variance (time by group) was used to analyze the data (alpha = 0.10). Controls demonstrated a significant decrease in VO2max, while the exercise groups demonstrated no significant change. There was no significant difference demonstrated for pre- and postmaximal heart rates or for pre- and postmaximal respiratory exchange ratio. Continuous and discontinuous walking were equally effective in maintaining, but not improving, VO2max.

Adult↗

An examination of the role of asp-177 in the His-Asp catalytic dyad of Leuconostoc mesenteroides glucose 6-phosphate dehydrogenase: X-ray structure and pH dependence of kinetic parameters of the D177N mutant enzyme.

The role of Asp-177 in the His-Asp catalytic dyad of glucose 6-phosphate dehydrogenase from Leuconostoc mesenteroides has been investigated by a structural and functional characterization of the D177N mutant enzyme. Its three-dimensional structure has been determined by X-ray cryocrystallography in the presence of NAD(+) and in the presence of glucose 6-phosphate plus NADPH. The structure of a glucose 6-phosphate complex of a mutant (Q365C) with normal enzyme activity has also been determined and substrate binding compared. To understand the effect of Asp-177 on the ionization properties of the catalytic base His-240, the pH dependence of kinetic parameters has been determined for the D177N mutant and compared to that of the wild-type enzyme. The structures give details of glucose 6-phosphate binding and show that replacement of the Asp-177 of the catalytic dyad with asparagine does not affect the overall structure of glucose 6-phosphate dehydrogenase. Additionally, the evidence suggests that the productive tautomer of His-240 in the D177N mutant enzyme is stabilized by a hydrogen bond with Asn-177; hence, the mutation does not affect tautomer stabilization. We conclude, therefore, that the absence of a negatively charged aspartate at 177 accounts for the decrease in catalytic activity at pH 7.8. Structural analysis suggests that the pH dependence of the kinetic parameters of D177N glucose 6-phosphate dehydrogenase results from an ionized water molecule replacing the missing negative charge of the mutated Asp-177 at high pH. Glucose 6-phosphate binding orders and orients His-178 in the D177N-glucose 6-phosphate-NADPH ternary complex and appears to be necessary to form this water-binding site.

Aspartic Acid↗

Delineation of the roles of amino acids involved in the catalytic functions of Leuconostoc mesenteroides glucose 6-phosphate dehydrogenase.

The roles of particular amino acids in substrate and coenzyme binding and catalysis of glucose-6-phosphate dehydrogenase of Leuconostoc mesenteroides have been investigated by site-directed mutagenesis, kinetic analysis, and determination of binding constants. The enzyme from this species has functional dual NADP(+)/NAD(+) specificity. Previous investigations in our laboratories determined the three-dimensional structure. Kinetic studies showed an ordered mechanism for the NADP-linked reaction while the NAD-linked reaction is random. His-240 was identified as the catalytic base, and Arg-46 was identified as important for NADP(+) but not NAD(+) binding. Mutations have been selected on the basis of the three-dimensional structure. Kinetic studies of 14 mutant enzymes are reported and kinetic mechanisms are reported for 5 mutant enzymes. Fourteen substrate or coenzyme dissociation constants have been measured for 11 mutant enzymes. Roles of particular residues are inferred from k(cat), K(m), k(cat)/K(m), K(d), and changes in kinetic mechanism. Results for enzymes K182R, K182Q, K343R, and K343Q establish Lys-182 and Lys-343 as important in binding substrate both to free enzyme and during catalysis. Studies of mutant enzymes Y415F and Y179F showed no significant contribution for Tyr-415 to substrate binding and only a small contribution for Tyr-179. Changes in kinetics for T14A, Q47E, and R46A enzymes implicate these residues, to differing extents, in coenzyme binding and discrimination between NADP(+) and NAD(+). By the same measure, Lys-343 is also involved in defining coenzyme specificity. Decrease in k(cat) and k(cat)/K(m) for the D374Q mutant enzyme defines the way Asp-374, unique to L. mesenteroides G6PD, modulates stabilization of the enzyme during catalysis by its interaction with Lys-182. The greatly reduced k(cat) values of enzymes P149V and P149G indicate the importance of the cis conformation of Pro-149 in accessing the correct transition state.

Arginine↗