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W Hu

Publications and source records attributed to W Hu.

At least 19 recordsLinked to original sources

Tryptophan dynamics and structural refinement in a lipid bilayer environment: solid state NMR of the gramicidin channel.

Tryptophans in the gramicidin channel are important for defining the conformation and the orientation with respect to the bilayer normal and for facilitating cation conductance. Here, high-resolution structure and dynamics of these rings are characterized by solid state NMR. Both oriented and unoriented lipid bilayer preparations are used. Fast frozen lipid bilayer preparations of unoriented samples have been used to obtain static characterizations of nuclear spin interaction tensors. The temperature dependence of these unoriented samples and the spectral features of fast frozen oriented samples were used to experimentally define the local motions of the individual indole rings. Local motions were shown to have amplitudes as high as +/- 29 degrees, and the motions were dominated by libration about the chi 2 axis. The high-resolution structure has been achieved by interpreting seven precise (+/- 0.3 degree) orientational constraints from 2H and 15N NMR for each indole ring in light of the motionally averaged interaction tensors. Each of the four indoles is restricted to a unique orientation of the ring with respect to the bilayer normal and one of two possible rotameric states. The side chain torsion angles for each residue are very similar, generating similar electric dipole moment orientations with respect to the channel.

Amino Acid Sequence

Tryptophan hydrogen bonding and electric dipole moments: functional roles in the gramicidin channel and implications for membrane proteins.

The known high-resolution structure and dynamics characterization of the lipid bilayer-bound polypeptide gramicidin A provides a unique opportunity to study structure-function and dynamics-function correlations in a model membrane protein. In particular, the indoles have a variety of very important functional roles in this cation channel that will undoubtedly be recognized in membrane proteins. That indoles and phenols are oriented at the hydrophobic-hydrophilic interface of lipid bilayers is already well-recognized in membrane proteins. The most buried indole of the gramicidin channel, Trp9, is shown by 15N solid state NMR to be exposed to the hydrophilic surface through hydrogen exchange. Here the importance of the indole dipole moments is described for cation conductance. Preparation of samples with high concentrations of Na+ is shown by high-resolution orientational constraints derived from 2H NMR to have no structural effect on the indole side chain conformations. These dipoles stabilize cations in the binding sites near the channel entrance and substantially reduce the potential energy barrier at the bilayer center. This latter finding conclusively documents that the rate-limiting step in cation conductance by this channel involves the barrier at the bilayer center. Furthermore, dynamics of the indole rings cause significant fluctuations in the energy of stabilization at the binding site that may result in a rapid mechanism for gating the channel.

Electrochemistry

Zeon-1, a member of a new maize retrotransposon family.

We have previously shown that the tandemly duplicated 27 kDa maize storage protein locus underwent mitotic rearrangement to yield a single-copy allele in isolates of the inbred line A188. This rearrangement contains a new LTR retrotransposon, designated Zeon-1. This middle repetitive element of 7313 bp had two long terminal repeats, a primer binding site, a polypurine tract and a gag-related open reading frame of 375 amino acids. Transcripts of the gag-related region were detected by the polymerase chain reaction (PCR) in certain maize tissues, and Western blots detected the gag-related protein in the same tissues. Moreover, the product of this mitotic rearrangement was shown to contain the same insertion site and 3' LTR as Zeon-1, suggesting that this rearrangement occurs with unusual precision. Zeon elements were found to be present in teosinte and not present in the Gramineae wheat, barley, sorghum and rye.

Amino Acid Sequence

Expression of Aequorea green fluorescent protein in plant cells.

The coding region of the green fluorescent protein (GFP) from Aequorea victoria has been fused to the cauliflower mosaic virus 35S promoter and introduced into maize leaf protoplasts. Transient expression of GFP was observed. In addition, the coding region of GFP was fused to an Arabidopsis heat shock promoter and co-transformed with another construct in which GFP has been replaced with chloramphenicol acetyltransferase (CAT). The heat-induced expression of GFP in maize protoplasts parallels that of CAT. While GFP was expressed in both dark-grown and green maize leaf protoplasts, no green fluorescence was observed in similarly transformed Arabidopsis protoplasts.

Arabidopsis

A chimeric bacterial phosphofructokinase exhibits cooperativity in the absence of heterotropic regulation.

The phosphofructokinases (PFKs) from the bacteria Escherichia coli and Bacillus stearothermophilus differ markedly in their regulation by ATP. Whereas E. coli PFK (EcPFK) is profoundly inhibited by ATP, B. stearothermophilus PFK (BsPFK) is only slightly inhibited. The structural basis for this difference could be closure of the active site via a conformational transition that occurs in the ATP-binding domain of EcPFK, but is absent in BsPFK. To investigate the role of this transition in ATP inhibition of EcPFK, we have constructed a chimeric enzyme that contains the "rigid" ATP-binding domain of BsPFK grafted onto the remainder of the EcPFK subunit. The chimeric PFK has the following characteristics: (i) tetrameric structure and kinetic parameters similar to those of the native enzymes, (ii) insensitivity to regulation by the effector phosphoenolpyruvate despite its ability to bind to the enzyme, and (iii) a sigmoidal (nH around 2) fructose 6-phosphate saturation curve. From the results, it is concluded that the active site regions of the two native enzymes are remarkably similar, but their effector sites and their mechanisms of heterotropic regulation are different. The chimeric subunit is locked in a structure resembling that of activated E. coli PFK, yet the enzyme can exist in two different conformational states. Mechanisms for its sigmoidal kinetics are discussed.

Adenylyl Imidodiphosphate

Low-temperature solid-state 15N NMR characterization of polypeptide backbone librations.

The local molecular dynamics of gramicidin A in dimyristoylphosphatidylcholine bilayers were probed by a combination of low-temperature solid-state 15N NMR and rapid freezing of samples using liquid propane. It has previously been shown that this approach leads to sharp discontinuities in powder-pattern spectra of the gramicidin channel in lipid bilayers, and hence, an accurate determination of tensor element magnitudes is achieved. The static-tensor-element magnitudes determined here using hydrated bilayer samples at low temperatures are different from the values obtained from dry-powder samples at 308 K. However, for the one site studied, the orientation of the 15N chemical-shift tensor in the molecular frame is the same for both types of samples. Averaging of the chemical-shift tensor between 200 and 263 K is shown to be anisotropic and consistent with a motional axis parallel with the C alpha-C alpha axis for adjacent residues. The librational amplitudes determined here range from +/- 14 degrees to +/- 22 degrees at 263 K and are significantly larger than the nanosecond librations characterized by relaxation studies. The nanosecond motions are thought to represent correlated motions, while the librations described here are the sum of correlated (nanosecond) and uncorrelated (picosecond) motions. The picosecond librational amplitudes become considerably larger and more isotropic above 0 degree for the residues near the bilayer surface.

Amino Acid Sequence

The T-cell receptor V beta 6 gene usage in alloreactive T-cell responses.

To analyze the role of TCR V beta gene elements in allorecognition, we have determined frequencies of the TCR V beta 6 elements expressed by allospecific T cells as compared to randomly activated T cells. Limiting dilution analysis was applied to estimate the usage of TCR V beta elements in CD4+ T cells polyclonally stimulated by immobilized anti-CD3 or specifically activated with HLA-DR disparate allotargets. In a focused alloresponse of HLA-DRB1*0401+ responders to HLA-DRB1*0404+ stimulator cells, V beta 6+ T cells were preferentially recruited. To map the functional domain of allogeneic HLA-DR molecules involved in the recruitment of V beta 6+ T-cell specificities, CD4+ T cells from HLA-DRB1*0401+ donors were activated with allogeneic stimulators sharing either the first and second or the third HVR of the HLA-DRB1 gene. Stimulation with allotargets sharing the sequence of the HVR3 caused a twofold to fourfold enrichment of V beta 6+ CD4+ T cells, while sequence variations in the HVR3 was sufficient to abrogate the preferential usage of V beta 6+ T cells. These data suggest that sequence variations mapped to the alpha-helical loop of the HLA-DR beta chain impose structural constraints that shape the alloreactive TCR V beta repertoire.

Alleles

Depolarization-induced 86Rb+ efflux in CHO cells expressing a recombinant potassium channel.

Cells expressing a recombinant human voltage-activated potassium channel (K-channel), Kv1.5, have been used in a functional assay that measures depolarization-stimulated 86Rb+ efflux as an indicator of K-channel function. Neither untransfected nor vector-transfected cells display measurable 86Rb+ efflux under depolarizing conditions. The depolarization-induced 86Rb+ efflux is blocked by standard K-channel blockers quinine, 4-aminopyridine and 3,4-diaminopyridine, but not by tetraethylammonium, quinidine, glibenclamide, or several peptide toxins. The pharmacological profile of the recombinant system reflects that reported for the channel in its native state. In such a system with no observable endogenous background, analysis of recombinant K-channel subtypes allows rapid assessment of pharmacological agents with isoform selectivity and specificity. Inclusion of compounds of unknown activity in an assay such as this could identify agents capable of modulating specific K-channel isoforms. Development of this high through-put assay system for the study of specific isoforms is a critical step in the identification and development of drugs that affect the desired target tissues with predictable pharmacology and minimal side effects due to nonselective K-channel interaction.

Amino Acid Sequence

Developmental expression of fibrillin genes suggests heterogeneity of extracellular microfibrils.

Extracellular microfibrils, alone or in association with elastin, confer critical biomechanical properties on a variety of connective tissues. Little is known about the composition of the microfibrils or the factors responsible for their spatial organization into tissue-specific macroaggregates. Recent work has revealed the existence of two structurally related microfibrillar components, termed fibrillin-1 and fibrillin-2. The functional relationships between these glycoproteins and between them and other components of the microfibrils and elastic fibers are obscure. As a first step toward elucidating these important points, we compared the expression pattern of the fibrillin genes during mammalian embryogenesis. The results revealed that the two genes are differentially expressed, in terms of both developmental stages and tissue distribution. In the majority of cases, fibrillin-2 transcripts appear earlier and accumulate for a shorter period of time than fibrillin-1 transcripts. Synthesis of fibrillin-1 correlates with late morphogenesis and the appearance of well-defined organ structures; fibrillin-2 synthesis, on the other hand, coincides with early morphogenesis and, in particular, with the beginning of elastogenesis. The findings lend indirect support to our original hypothesis stating that fibrillins contribute to the compositional and functional heterogeneity of the microfibrils. The available evidence is also consistent with the notion that the fibrillins might have distinct, but related roles in microfibril physiology. Accordingly, we propose that fibrillin-1 provides mostly force-bearing structural support, whereas fibrillin-2 predominantly regulates the early process of elastic fiber assembly.

Amino Acid Sequence

A GOD electrode free from the influence of ethanol.

The influence of ethanol on GOD electrode was investigated. When enzyme electrode was made by the Sandwich method, 0.1% (V/V) ethanol had an obvious influence on the response of the electrode with 4.3% deviation. The influence increased with increasing ethanol content of the samples. This influence can be avoided by using a nylon mesh GOD electrode, which was successfully used for the determination of glucose in the range of 5-20 mM with ethanol content up to 9% (V/V). Such an electrode showed good reproducibility, stable response activity and long storage life ( > 30 days).

Biosensing Techniques

[Studies on amino acid and chemical element in five species of filariae].

Five species of human and domestic animal filariae (B. m, S. d, S. l, S. e, D. i) after lyophilization and hydrolysis were resolved using HPLC and type WFX-IB AAS to determine amino acid (AA) and microelement (ME) content, respectively. The results showed that there were 16 and 17 AA in B. malayi and the animal filariae, respectively. Among AA, the total amount (microgram/mg dry wt.) was markedly higher in animal filariae than that in B. malayi in which the content of acidic and aliphatic AA was significantly higher than those of basic and aromatic AA, respectively. Among five ME (Zn, Cu, Fe, Mn, Cd) and two microelements (Ca, Mg) found in all these filariae. Zn Content was the predominant ME and Ca was much more than Mg.

Amino Acids

[Replantation of the hand and fingers].

Using microsurgical techniques to replant an amputated hand or digit is one of the most important progress in the field of hand surgery during the last three decades. The result of a replantation depends on: the mechanism and the level of amputation, the length and the type of ischaemia of the amputated segment, the surgical techniques, the postoperative care, the rehabilitation and so on. Although the success of a replantation is first judged on the survival of the replanted segment, it nevertheless should be assessed on the function achieved. Thanks to the 30-year clinical experience, the final functional result of a replantation can now be anticipated at initial examination; thus indications can be better established by patient selection criteria. The replantation of the hand and the digits is henceforth reasonable only if there is a possibility of a useful functional result.

Amputation, Traumatic

Simultaneous separation of inorganic cations and anions by ion chromatography using a single column coated with weak/strong-charged zwitterionic bile salt micelles.

A single reversed-phase ODS (octadecyl silica) column coated with taurine-conjugated bile salt micelles has been investigated for simultaneous separation of inorganic cations and anions. Under acidic conditions in the separation column, taurine-conjugated bile salts are protonated; therefore, the stationary phase coated with taurine-conjugated bile micelles exists as a "weak/strong"-charged zwitterionic stationary phase (H+ and SO3-). The weak/strong-charged zwitterionic stationary phase provides a new retention mechanism which is different from conventional ion chromatography in that both positive and negative charges are close together in a single molecule, resulting in simultaneous electrostatic attraction and repulsion of the analyte ions. Also, the stronger negative charge (sulfonate) of the stationary phase works as a cation-exchange site at the same time. The combined effects of cation-exchange and simultaneous electrostatic repulsion/attraction interactions were successfully used in ion chromatography for the simultaneous separation of inorganic cations and anions.

Anions

Cloning of an apamin binding protein of vascular smooth muscle.

The receptor for the bee venom derived neurotoxin, apamin, is widely believed to be an integral component of the small conductance calcium-activated potassium channel in many excitable cells. By affinity chromatography on immobilized apamin, a 78 kD apamin binding protein of the bovine brain synaptosomes was isolated. Antibodies were elicited against this protein and used to clone a cDNA from a porcine vascular smooth muscle expression library. This gene (Kcal 1.8) codes for a 438 amino protein with four potential transmembrane domains, one putative calcium binding site, a protein kinase C phosphorylation site, and a leucine zipper motif. Kcal 1.8 encoded protein has no significant sequence homologies with any known ion channels or receptors. Kcal 1.8 is likely to encode a protein associated with the small conductance calcium-activated potassium channel in vascular smooth muscle.

Amino Acid Sequence

Detection of free malignant cells in the peritoneal cavity before and after resection of colorectal cancer.

PURPOSE: This study was designed to select the best monoclonal antibody to stain malignant cells in peritoneal wash fluid, and to investigate the incidence of free malignant cells in preresection and postresection colorectal cancer peritoneal washings using a combination of conventional cytology and immunocytochemistry. METHODS: Peritoneal washings were taken from 35 consecutive patients undergoing colorectal cancer resection. RESULTS: Malignant cells were isolated on a density gradient and identified by conventional cytology and an indirect immunoperoxidase stain. Malignant cells were identified in peritoneal washings from 15 patients (preresection only n = 3, postresection only n = 4, both n = 8). The origin of free malignant peritoneal cells in 11 preresection-positive washings must be the serosa. The origin of these cells in the four postresection-positive patients is uncertain: serosal and luminal spillage were considered unlikely and no circulating cells were found in the mesenteric vessels near the tumor. CONCLUSION: Tumor cells may have leaked out from lymphatics cut during the dissection.

Aged

Structure and expression of fibrillin-2, a novel microfibrillar component preferentially located in elastic matrices.

During the previous cloning of the fibrillin gene (FBN1), we isolated a partial cDNA coding for a fibrillin-like peptide and mapped the corresponding gene (FBN2) to human chromosome 5. (Lee, B., M. Godfrey, E. Vitale, H. Hori, M. G. Mattei, M. Sarfarazi, P. Tsipouras, F. Ramirez, and D. W. Hollister. 1991. Nature [Lond.]. 352:330-334). The study left, however, unresolved whether or not the FBN2 gene product is an extracellular component structurally related to fibrillin. Work presented in this report clarifies this important point. Determination of the entire primary structure of the FBN2 gene product demonstrated that this polypeptide is highly homologous to fibrillin. Immunoelectron microscopy localized both fibrillin proteins to elastin-associated extracellular microfibrils. Finally, immunohistochemistry revealed that the fibrillins co-distribute in elastic and non-elastic connective tissues of the developing embryo, with preferential accumulation of the FBN2 gene product in elastic fiber-rich matrices. These results support the original hypothesis that the fibrillins may have distinct but related functions in the formation and maintenance of extracellular microfibrils. Accordingly, we propose to classify the FBN1 and FBN2 gene products as a new family of extracellular proteins and to name its members fibrillin-1 and fibrillin-2, respectively.

Amino Acid Sequence

Use of cultured human neuroblastoma cells in rapid discovery of the voltage-gated potassium-channel blockers.

Depolarization of human neuroblastoma cells by high concentrations of extracellular potassium ions, leads to the activation of the voltage-gated potassium channels. The activity of such potassium channels can be effectively and rapidly monitored by tracking the efflux of 86Rb from pre-loaded target cells in response to the depolarizing stimulus. The inclusion of compounds with unknown activity in the assay medium, can result in the identification of novel blockers of the voltage-gated potassium channels. Since this functional assay is performed in 96-well microtitre plates, it represents a rapid and high-volume primary screening method for the detection and identification of the voltage-gated potassium-channel blockers, which may have therapeutic utility in several indications including memory degeneration and cardiac arrhythmias.

4-Aminopyridine