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Structure of bovine beta-lactoglobulin (variant A) at very low ionic strength.

Bovine beta-lactoglobulin (BLG) is a globular protein of uncertain physiological function and a member of the lipocalin superfamily of proteins. Here, we present the X-ray structure at 3.0 angstroms of BLG (variant A) from an orthorhombic (P2(1)2(1)2(1)) pseudo-tetragonal crystal form that suffers from pseudo-merohedral twinning (final R(working) = 0.224, R(free) = 0.265). Crystals were grown by dialysis against ultra-purified water (i.e., at very low ionic strength), at pH approximately 5.2 (approximately pI), conditions vastly different from all other BLG structures determined previously. This allows critical assessment of the BLG structure and of the influence that pH, ionic strength, and crystal packing may have on the molecular structure of BLG. The pH-sensitive EF loop is found in the closed conformation characteristic of BLG at pH less than 7 and moderate to high ionic strength. Although the hydrophobic pocket appears to be empty, the presence of highly disordered water molecules cannot be excluded. The dimer interface and the hydrophobic pocket (calyx) are preserved. However, the orientation of the subunits in the dimer varies considerably with crystal form. Structure is deposited with PDB ID 2akq.

Animals↗

[Variants of influenza H1N1 virus, adapted to mouse lungs and inhibitors of mouse serum inhibitors differ by hemagglutinin characteristics and structure].

Influenza virus A/USSR/90/77 variants adapted to mouse blood serum (USSR/90-MS) and lungs (USSR/90-ML) resistant to beta-inhibitors of mouse serum differ by biological properties and hemagglutinin (HA) structure. One of glycosylation site (GS) located at the tip of HA spike near the receptor binding site is lost because of mutations in both variants: GS 158 (Asn158Asp substitution) in USSR/90-MS and GS131 (Asp131Asp substitution) in USSR/90-ML. Probably adaptation to mouse lungs and serum represents adaptation to different types of receptor molecules. From these data we conclude that mouse lungs and/or bronchi and serum contain different beta-like inhibitors. Presumably the inhibitors in the lungs contain some additional factors in comparison with the serum, adaptation to which allows a wider spectrum of virus resistance to homologous and to many other normal animal sera.

Adaptation, Physiological↗

Determination of the structure of two novel echistatin variants and comparison of the ability of echistatin variants to inhibit aggregation of platelets from different species.

Two new variants of short disintegrins were purified from the venom of Echis carinatus leakeyi and named echistatin beta and gamma. These proteins were found to be about 85% similar in amino acid sequence to echistatin alpha which has been well studied. The disulphide pattern of echistatin gamma appeared to be identical with that of echistatin alpha. They all contain the adhesive recognition sequence Arg-Gly-Asp (RGD) but inhibit the aggregation of platelets from human and other mammals with different potencies. Echistatin beta and alpha are far more effective on platelets from humans and guinea pigs than those from rabbits and rats whereas echistatin gamma is less discriminating of the platelets of the species tested. This species-dependent platelet sensitivity to echistatin beta and gamma could be attributed to the variations in residues 15, 21, 22 and 27, which are close to or within the RGD loop, rather than to the C-terminal variations after residue 46. Taking advantage of the presence of methionine residues flanking both sides of the ARGDDM motif in echistatin gamma, we deleted this hexapeptide by CNBr cleavage to produce des-(23-28)-echistatin gamma. The modified protein showed c.d. and fluorescent spectra grossly similar to the intact echistatin but its antiplatelet potency decreased more than 200-fold. We thus propose that a favourable conformation of the RGD region is responsible mainly for the high-affinity binding of echistatin to the platelet glycoprotein IIb-IIIa as shown previously for the binding of medium-size disintegrin.

Amino Acid Sequence↗

Evolutional design of a hyperactive cysteine- and methionine-free mutant of Escherichia coli dihydrofolate reductase.

We developed a strategy for finding out the adapted variants of enzymes, and we applied it to an enzyme, dihydrofolate reductase (DHFR), in terms of its catalytic activity so that we successfully obtained several hyperactive cysteine- and methionine-free variants of DHFR in which all five methionyl and two cysteinyl residues were replaced by other amino acid residues. Among them, a variant (M1A/M16N/M20L/M42Y/C85A/M92F/C152S), named as ANLYF, has an approximately seven times higher k(cat) value than wild type DHFR. Enzyme kinetics and crystal structures of the variant were investigated for elucidating the mechanism of the hyperactivity. Steady-state and transient binding kinetics of the variant indicated that the kinetic scheme of the catalytic cycle of ANLYF was essentially the same as that of wild type, showing that the hyperactivity was brought about by an increase of the dissociation rate constants of tetrahydrofolate from the enzyme-NADPH-tetrahydrofolate ternary complex. The crystal structure of the variant, solved and refined to an R factor of 0.205 at 1.9-angstroms resolution, indicated that an increased structural flexibility of the variant and an increased size of the N-(p-aminobenzoyl)-L-glutamate binding cleft induced the increase of the dissociation constant. This was consistent with a large compressibility (volume fluctuation) of the variant. A comparison of folding kinetics between wild type and the variant showed that the folding of these two enzymes was similar to each other, suggesting that the activity enhancement of the enzyme can be attained without drastic changes of the folding mechanism.

Binding Sites↗

Tandem Double Inversion Resolves the Structural Paradox Underlying Recurrent KAT6A::NCOA2 Fusion in Acute Myeloid Leukemia.

The KAT6A::NCOA2 (formerly MOZ::TIF2) fusion is an extremely rare recurrent genetic abnormality in acute myeloid leukemia (AML), with only nine cases reported to date. It has consistently been associated with inv(8)(p11q13). However, the genomic mechanism underlying this fusion has remained unresolved. Because both KAT6A and NCOA2 are transcribed in the same reverse orientation on chromosome 8, a simple inversion is structurally insufficient to generate a transcriptionally competent fusion transcript, creating a long-standing cytogenetic paradox. We analyzed an AML case harboring a KAT6A::NCOA2 fusion using targeted genomic profiling and breakpoint-level validation. In addition to the canonical KAT6A::NCOA2 fusion, sequencing identified an unexpected MTFR1::KAT6A rearrangement. Since MTFR1 is located between KAT6A and NCOA2 on chromosome 8, we hypothesized a complex intrachromosomal rearrangement. Genomic breakpoint analysis revealed that the fusion was generated not by a single inv(8), but by two adjacent intrachromosomal inversions forming a tandem double inversion. This rearrangement reoriented genomic segments to place KAT6A and NCOA2 in a transcriptionally compatible configuration, enabling fusion formation. These findings resolve the structural paradox of KAT6A::NCOA2-positive AML by demonstrating that a cytogenetically apparent inv(8)(p11q13) can conceal a tandem double-inversion architecture that reorients KAT6A and NCOA2 into a transcriptionally compatible configuration.

Humans↗

Complete loss of HLA class I antigen expression on melanoma cells: a result of successive mutational events.

Alterations in the surface expression of HLA class I molecules have been described as a strategy of tumors to evade recognition by cytotoxic T cells. We detected complete loss of HLA class I antigen presentation for 2 tumor cell lines from 1 melanoma patient, the first originated from a regional lymph node lesion diagnosed simultaneously with the primary tumor and the second established 8 months later from a metastatic pleural effusion sample. Antigen presentation was not inducible with IFN-gamma but could be restored after transfection of tumor cells with b2m cDNA, indicating a defect in b2m expression. Analysis of the nature of this defect revealed that it originated from at least 2 mutational events affecting both copies of the b2m gene: a microdeletion of 498 bp in one b2m gene, including its entire exon 1, and a macrodeletion involving the entire copy of the second b2m gene. Microsatellite analysis pointed to the macrodeletion by demonstrating LOH for several specific markers on the long arm (q) of chromosome 15. Structural imbalance of 15q was verified by FISH. FISH studies also indicated the coexistence of a structurally abnormal variant of chromosome 15q with 2 apparently entire chromosomes 15q harboring the homozygous b2m microdeletion. Block of b2m expression in tumor cells builds a barrier to immunotherapy of cancer patients, and its early incidence should be of major consideration in the development and design of immunotherapeutic strategies.

Adult↗

Enhancing surface free energy and hydrophilicity through chemical modification of microstructured titanium implant surfaces.

Roughness-induced hydrophobicity, well-known from natural plant surfaces and intensively studied toward superhydrophobic surfaces, has currently been identified on microstructured titanium implant surfaces. Studies indicate that microstructuring by sandblasting and acid etching (SLA) enhances the osteogenic properties of titanium. The undesired initial hydrophobicity, however, presumably decelerates primary interactions with the aqueous biosystem. To improve the initial wettability and to retain SLA microstructure, a novel surface modification was tested. This modification differs from SLA by its preparation after acid etching, which was done under protective gas conditions following liquid instead of dry storage. We hypothesized that this modification should have increased wettability due to the prevention of contaminations that occurs during air contact. The main outcome of dynamic wettability measurements was that the novel modification shows increased surface free energy (SFE) and increased hydrophilicity with initial water contact angles of 0 degrees compared to 139.9 degrees for SLA. This hydrophilization was kept even after any drying. Reduced hydrocarbon contaminations were identified to play a possible role in altered surface thermodynamics. Such surfaces aim to retain the hydrophilicity and natural high surface energy of the Ti dioxide surface until surgical implants' insertion and are compared in this in vitro study with structural surface variants of titanium to compare roughness and chemically induced wettability.

Acids↗

A gene in human chromosome band Xq28 (GABRE) defines a putative new subunit class of the GABAA neurotransmitter receptor.

We have isolated and sequenced a novel human gene (GABRE) of the GABAA neurotransmitter receptor family. A cDNA sequence of the gene coding for a 506 amino acid protein was identified, representing a member of a putative new class (epsilon) of the GABAA receptor. The gene is transcribed at least at low level in several different tissues, with the highest levels being detected in adult heart and placenta. Alternative splicing of GABRE transcripts isolated from different tissues was observed at multiple positions of the gene, yielding an unusually complex variety of cDNA variants. The structure of the 5' region of most cDNAs is compatible with expression of protein sequence epsilon only in adult brain, whereas in other tissues, the majority of transcripts code for truncated protein sequences. The GABRE gene extends over 14 kb and is clustered together with the alpha 3 and the putative beta 4 GABAA receptor subunit genes in an approximately 0.8-Mb interval in chromosome band Xq28, located in the candidate regions of two different neurologic diseases. Based on features of conservation of protein sequences, gene structure, and genomic organization of GABAA receptor gene clusters, we propose that the epsilon and gamma subunit genes have a common ancestor and that GABAA receptor gene clusters in the human genome have diverged by multiple duplication events of an ancestral gene cluster containing one each alpha, beta, and gamma/epsilon precursor gene.

Adult↗

Heterogeneity within type II and MODY diabetes.

The heterogeneity within Type II diabetes (NIDDM) and within Maturity-Onset type Diabetes of Young people (MODY), a subset of NIDDM which is inherited in an autosomal dominant fashion, is discussed. Aspects of the definition and phenotypic expression of MODY are reviewed. Within NIDDM there are differences in patterns of inheritance between subgroups. HLA antigen associations are not found in most NIDDM populations but exist in three specific population groups with Type II diabetes. Within NIDDM and within MODY there are differences in the magnitude of insulin responses to glucose, differences in target tissue responsiveness to insulin in vivo, and differences in receptor and post-receptor effects of insulin. Structurally abnormal variant and biologically defective insulin molecules have been found in some Type II diabetic patients and in members of certain MODY families. The presence or absence of obesity may mark heterogeneous groups of Type II diabetic patients, in addition to the importance of obesity in uncovering an insulin secretory defect by causing insulin resistance. There is heterogeneity in susceptibility to vascular disease within NIDDM and MODY. The natural history of carbohydrate metabolism and of insulin secretory responses to glucose in early Type I diabetes and in MODY with low insulin secretory responses are illustrated and similarities and dissimilarities compared and contrasted. Failure to recognize young patients with MODY may contribute to incorrect diagnosis, management, and assignment of prognosis of this form of diabetes in the young by many practicing physicians. The recognition that Type I or insulin-dependent diabetes (IDDM) and Type II or noninsulin-dependent (NIDDM) differ from each other not only phenotypically but also in etiology and pathogenesis led the National Diabetes Data Group (NDDG) to devise the present nomenclature and classification of diabetes mellitus. These were adopted by the World Health Organization. As suggested by the NDDG report, the classification should be reexamined periodically to reflect improved understanding of the disease, to stimulate further research, and to be of help to practicing physicians.

Adult↗

Structural analysis of two length variants of the rDNA intergenic spacer from Eruca sativa.

Restriction enzyme analysis of the rRNA genes of Eruca sativa indicated the presence of many length variants within a single plant and also between different cultivars which is unusual for most crucifers studied so far. Two length variants of the rDNA intergenic spacer (IGS) from a single individual E. sativa (cv. Itsa) plant were cloned and characterized. The complete nucleotide sequences of both the variants (3 kb and 4 kb) were determined. The intergenic spacer contains three families of tandemly repeated DNA sequences denoted as A, B and C. However, the long (4 kb) variant shows the presence of an additional repeat, denoted as D, which is a duplication of a 224 bp sequence just upstream of the putative transcription initiation site. Repeat units belonging to the three different families (A, B and C) were in the size range of 22 to 30 bp. Such short repeat elements are present in the IGS of most of the crucifers analysed so far. Sequence analysis of the variants (3 kb and 4 kb) revealed that the length heterogeneity of the spacer is located at three different regions and is due to the varying copy numbers of repeat units belonging to families A and B. Length variation of the spacer is also due to the presence of a large duplication (D repeats) in the 4 kb variant which is absent in the 3 kb variant. The putative transcription initiation site was identified by comparisons with the rDNA sequences from other plant species.

Base Sequence↗

The nervous system of Microstomum lineare (Turbellaria, Macrostomida). II. The ultrastructure of synapses and neurosecretory release sites.

The ultrastructure of release sites of neurochemical messenger substances in the microturbellarian Microstomum lineare was examined. Aminergic neurites form conventional synapses and synapse-like structures (SLS). Variants of true synapses include: "single" synapses with symmetric pre- and postsynaptic densities, "shared" synapses, i.e., contacts between 1 pre- and 2 postsynaptic fibres, en passant synapses between parallel axonal membranes, and synapses without thickenings having only clustered vesicles in the presynaptic terminal. SLS on a nerve cell soma or facing an intercellular stromal channel near muscles are described. Peptidergic neurites containing large granular vesicles (LGV) from synaptoids and signs of putative neurosecretory release. Synaptoids between neurites and between neurite and muscle have lucent vacuoles (about 100 nm) and dense material at the contact site. In en passage synaptoids dense-core vesicles are embedded in electron-dense material at the contact site. Putative signs of release of neurosecretory material other than "typical" exocytosis have been observed.

Amines↗

Hemoglobin G San José [beta 2 7 (A4) Glu to Gly alpha 2], beta thalassemia, and alpha thalassemia in a Sicilian family.

A 3-year-old child of Sicilian origin was found to have a severe form of Cooley's anemia. Investigations were extended to other members of her family. In three, a rare beta-chain structural Hb variant, Hb G San José [beta 7 (A4) Glu to Gly], was observed: in the father of the porposita heterozygosity for the abnormal Hb was found to be coexistent with beta o thalassemia; two sisters had lowered MCV and MCH values and levels of the abnormal Hb significantly lower than in other heterozygotes for Hb G San José. The alpha-chain/total beta-chain synthesis ratios suggest an alpha-thalassemic-like effect. Their mother had lowered MCV and MCH values, an Hb A2 level in the upper limit of the normal range, and a balanced alpha-chain/beta-chain synthesis ratio. Therefore, the possibility of coexistence of an alpha thalassemia trait with a beta thalassemia trait in the mother of the proposita and with Hb G San José heterozygosity in the two sisters who had lowered levels of abnormal Hb is discussed.

Child, Preschool↗

Plasmid diversity in senescent and nonsenescent strains of Neurospora.

A sample of 171 natural isolates of Neurospora crassa and Neurospora intermedia was tested for senescence. Of these, 28 strains senesced within the duration of the experiment. These senescent strains, together with a selection of nonsenescent strains, were examined for the presence of mitochondrial plasmids. This was done by digesting mitochondrial DNA preparations with proteinase K, and running these samples on agarose gels. Most of the strains examined, both senescent and nonsenescent, contained plasmids, many of them new. Some new plasmids were linear, as inferred from their resistance to 5' exonuclease and sensitivity to 3' exonuclease. New circular plasmids were also found. Some strains carry several plasmids, and mixtures of circular and linear elements were common. A cross-homology study was performed on a sample of plasmid-bearing strains, and several cases of apparent relatedness were found, some between strains from distant geographical locations. Linear plasmids homologous to the maranhar linear senescence plasmid were quite common. A new member of the LaBelle circular plasmid homology group was found. In the sample tested for homology, no strains contained elements related to the kalilo linear senescence plasmid. The relationship of the new plasmids to senescence is not known. In addition to plasmid monomers, several different types of derivatives were found. The kalilo linear plasmid was found to occur in linear and circular forms of low mobility, presumed to be giant concatamers, and, in some strains, variant sibling structures and ladders of short derivatives were found. Circular plasmids also gave rise to extensive ladders on electrophoresis, probably representing different relaxation states and head-to-tail concatameric series. Some such forms migrated more slowly than mitochondrial DNA. One unique type of plasmid modification observed was a pair of linear elements that had apparently arisen de novo which showed homology to a circular plasmid.

DNA, Circular↗

Cannabiripsol: a novel Cannabis constituent.

Cannabiripsol [(-) (6aR, 9S, 10S, 10aR)9,10-dihydroxy-hexahydrocannabinol] (1), a new cannabinoid was isolated from a South African Cannabis variant. The structure was determined by spectral means and by synthesis.

Cannabinoids↗

Retrograde flow in the left gonadal vein at abdominal angiography: an anatomo-physiological review and clinical assessment.

Retrograde flow in the left gonadal vein may be visualized in the venous phase of aortography or renal arteriography. In none of 13 cases was this due to a mass lesion at the renal hilum. Although the Valsalva maneuver may cause this flow reversal in some, in most cases it is due to anatomical structures or variants compressing the renal vein. These are detailed. Left gonadal vein reflux incidentally detected on the aortogram may thus indicate impaired left renal venous drainage and its consequences. There are also clinical and urographic constellations which merit aortography to detect left gonadal vein reflux for their elucidation.

Adolescent↗

[Molecular analysis of the human "growth hormone secretagogue"-receptor].

BACKGROUND: Growth hormone secretagogues (GHS) are highly potent synthetic peptides which release growth hormone (GH) by activation of a growth hormone-releasing hormone-independent signal cascade. A specific growth hormone secretagogue receptor (GHS-R) has been isolated, its endogenous ligand is still unknown. It might represent another major endocrine pathway controlling GH secretion. To gain insight into the specific function of the human GHS-R we studied the gene structure. Two variants, type 1a and 1b, have been described, but their specific functions are unknown. METHODS AND RESULTS: A specific probe for the GHS-R was cloned following reverse transcription and PCR amplification of pituitary mRNA. A genomic human placenta library was screened for the GHS-R gene. Positive clones were identified and further characterized by Southern blotting and sequencing. A genomic clone of 18 kb in size was determined to include the coding sequence of both GHS-R variants. Here we show that GHS-R type 1a and type 1b are encoded by a single gene. Sequencing of the immediate 5'-flanking region suggests a number of transcription factor binding sites, but their functional significance remains to be investigated. CONCLUSION: A genomic clone encoding for the two known variants of the human GHS-R was isolated. Further studies will determine physiological relevance and regulation of GHS-R. This will facilitate studies of GHS as diagnostic and therapeutic agents in GH disorders.

GTP-Binding Proteins↗