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V Geetha

Publications and source records attributed to V Geetha.

15 recordsLinked to original sources

Recognizing the pleckstrin homology domain fold in mammalian phospholipase D using hidden Markov models.

Phospholipase D was first described in plant tissue but has recently been shown to occur in mammalian cells where it is activated by cell surface receptors. Its mode of activation by receptors in unclear. Biochemical studies suggest that it may occur downstream of other effector proteins and that small GTP-dependent regulatory proteins may be involved. The sequence in a non-designated region of mammalian phospholipase D1 and 2 shows similarity to a structural domain that is present in signalling proteins that are regulated by protein kinases or heterotrimeric G-proteins. Mammalian phospholipase D has structural similarities with other lipid signalling phospholipases and thus may be regulated by receptors in an analogous fashion.

Adaptor Proteins, Signal Transducing↗

Comparing protein sequence-based and predicted secondary structure-based methods for identification of remote homologs.

We have compared a novel sequence-structure matching technique, FORESST, for detecting remote homologs to three existing sequence based methods, including local amino acid sequence similarity by BLASTP, hidden Markov models (HMMs) of sequences of protein families using SAM, HMMs based on sequence motifs identified using meta-MEME. FORESST compares predicted secondary structures to a library of structural families of proteins, using HMMs. Altogether 45 proteins from nine structural families in the database CATH were used in a cross-validated test of the fold assignment accuracy of each method. Local sequence similarity of a query sequence to a protein family is measured by the highest segment pair (HSP) score. Each of the HMM-based approaches (FORESST, MEME, amino acid sequence-based HMM) yielded log-odds score for the query sequence. In order to make a fair comparison among these methods, the scores for each method were converted to Z-scores in a uniform way by comparing the raw scores of a query protein with the corresponding scores for a set of unrelated proteins. Z-Scores were analyzed as a function of the maximum pairwise sequence identity (MPSID) of the query sequence to sequences used in training the model. For MPSID above 20%, the Z-scores increase linearly with MPSID for the sequence-based methods but remain roughly constant for FORESST. Below 15%, average Z-scores are close to zero for the sequence-based methods, whereas the FORESST method yielded average Z-scores of 1.8 and 1.1, using observed and predicted secondary structures, respectively. This demonstrates the advantage of the sequence-structure method for detecting remote homologs.

Algorithms↗

Fold recognition using predicted secondary structure sequences and hidden Markov models of protein folds.

We present an analysis of the blind predictions submitted to the fold recognition category for the second meeting on the Critical Assessment of techniques for protein Structure Prediction. Our method achieves fold recognition from predicted secondary structure sequences using hidden Markov models (HMMs) of protein folds. HMMs are trained only with experimentally derived secondary structure sequences of proteins having similar fold, therefore protein structures are described by the models at a remarkably simplified level. We submitted predictions for five target sequences, of which four were later found to be suitable for threading. Our approach correctly predicted the fold for three of them. For a fourth sequence the fold could have been correctly predicted if a better model for its structure was available. We conclude that we have additional evidence that secondary structure information represents an important factor for achieving fold recognition.

Algal Proteins↗

Linkers of secondary structures in proteins.

Linkers that connect repeating secondary structures fall into conformational classes based on distance and main-chain torsion clustering. A data set of 300 unique protein chains with low pairwise sequence identity was clustered into only a few groups representing the preferred motifs. The linkers of two to eight residues for the nonredundant data set are designated H-Ln-H, H-Ln-E, E-Ln-H, E-Ln-E, where n is the length, H stands for alpha-helices, and E for beta-strands. Most of the clusters identified here corroborate earlier findings. However, 19 new clusters are identified in this paper, with many of them having seven and eight residue linkers. In our first analysis, the secondary structures flanking the linkers are both interacting and noninteracting and there is no precise angle of orientation between them. A second analysis was performed on a set of proteins with restricted orientations for the flanking elements, namely, mainly alpha class of proteins with orthogonal architecture. Two definite clusters are identified, one corresponding to linkers of orthogonal helices and the other to linkers of antiparallel helices. Loops forming binding sites or involved in catalytic activity are important determinants of the function of proteins. Although the structural conservation of the residues around the catalytic triad of serine proteases has been studied widely, there has not been a systematic analysis of the conformation of the loops that contain them. Residues of the catalytic triad reside in the linkers of beta-strands, with varying lengths of more than eight residues. Here, we analyze the structural conservation of such linkers by superposition, and observe a conserved structural feature of the linkers incorporating each of the three residues of the catalytic triad.

Amino Acid Sequence↗

Cold haemagglutinin disease in systemic lupus erythematosus.

A 34-year-old lady presenting with features of cold agglutinin disease during the course of systemic lupus erythematosus is described. Cold antibody titer was very high (1 in 4096) with specificity for 'I' antigen. Even though she had poor prognostic factors like high titer of cold antibodies with low thermal amplitude, she responded well to prednisolone.

Adult↗

Distortions in protein helices.

alpha-helices are the most common secondary structures in observed proteins. However, they are not always found in ideal helical conformation and they often exhibit structural distortions. Quantification of these irregularities become essential in understanding the packing of helices and therefore, their role in the functional characteristics of the protein. The backbone torsions phi, psi are of limited utility in this endeavor, because distorted helices often maintain the backbone geometry. The local compensatory effects are responsible for the preservation of the entire hydrogen bond network of the helical stretch. Earlier descriptions of helical linearity and curvature rest mostly on approximation, thus motivating the search for a better method for understanding and quantifying helical irregularities. We developed a method which involves the rotation and superposition of identical repeating units of the protein by the quaternion method. The set of parameters derived from the rotation-superposition algorithm helps in identifying the bends and kinks which are not necessarily induced by unusual amino acids like proline. The quantification of irregularities of observed helices might lead to a better understanding of their packing interactions.

Citrate (si)-Synthase↗

Simplified representation of proteins.

The conventional methods for characterizing the secondary structures of proteins based on hydrogen bonding patterns and phi,rho torsions are not fully specific in determining the spatial arrangements of various secondary structural elements. This fact motivates a search for an efficient description of the various secondary structures and their interactions. The successive identical repeating units of a polypeptide chain, namely the atoms of the peptide plane may be superposed using a method based on the mathematical quaternion. The superposition angle then characterizes different secondary structures. The distortions in protein alpha-helices such as kinks and bends are also precisely determined. The twist in beta-sheets is quantified and reverse turns are found to have characteristic variations. This new representation might pave the way for a better understanding of the final folding conformation of the polypeptide chain.

Amino Acid Sequence↗

Diresidue-monopeptide (DRMP) model for analysis of peptide and protein conformation.

The paired torsional angle representation phi i, psi i in protein conformational analysis is only one type of correlation with a focus on a given C alpha residue and gives the relative orientation of a pair of peptide planes sandwiching a given residue (referred as mono-residue dipeptide model, MRDP). A shift of emphasis from a residue site to a given peptide plane (termed as diresidue monopeptide model, DRMP) leads to examination of pairs such as phi i, psi i-1 and other parameters derived therefrom. General sum (alpha n = phi i + psi i-n) and the difference (beta n = phi i - psi i-n) parameters are introduced, of which, n = 0 and n = 1 relate to MRDP models and DRMP models respectively. Apart from the helical regions, where 'alpha 0' is found to be relatively stable, the sum parameters have been found to be more useful in the analysis of beta-turns. The 'alpha 0' at the second and third residue sites and 'alpha 1' at the middle peptide plane of the four residue corner is found to offer a numerical triplet code for resolving various beta-turn types. Besides these, an additional parameter introduced under the DRMP model is a virtual torsion angle 'sigma 1' involving C beta i-1 ... C'i-1 - Ni ... C beta i, which is expected to reflect the effect of interaction of the side chain atoms. The sigma 1, alpha 1 pair is found to play a role parallel to phi, psi at a given residue site.(ABSTRACT TRUNCATED AT 250 WORDS)

Dipeptides↗

A unique or essentially unique single parametric characterisation of biopolymeric structures.

A generalised method of characterising the three dimensional structure of any biopolymer is proposed. The method makes use of rotation and superposition of identical rigid monomeric units that comprise the polymer. Out of the various parameters involved (refers the seven parametric representation of relating two identical rigid bodies in space), the angle of rotation and superposition termed as 'phi s' turns out to be essentially unique. An ideal biopolymer with n identical rigid units is characterised by (n-1) such unique angles. In applying the results to real biopolymers, the importance of recognising that monomeric units are no more rigid but only quasi-rigid is emphasised. However, by appropriate choice of 'rigid' fraction of the quasi-rigid monomers, one is led, as first approximation, to essentially unique characterisation of the biopolymer with (n-1) such unique angles. The phi s as a function of residue number acts essentially as a finger print of the given polymeric fold and the conformation of the chosen biopolymer. However, the full set of seven parameters are needed for model building. It is emphasised that the method is general in its application to any polymer and the application of the results to proteins and nucleic acids is illustrated.

Amino Acids↗

Identification and partial characterization of a low-molecular-weight inhibitor of leukotaxis from fibrosarcoma cells.

Lysate from T-241 murine fibrosarcoma cells contains a low-molecular-weight (Mr less than 1000), heat-stable peptide factor which has antichemotactic activity for both macrophages and polymorphonuclear leukocytes in vitro. The tumor factor was partially purified from an alcohol extract of the fibrosarcomas by gel filtration, anion exchange chromatography, and paper chromatography successively. This factor inhibits both the hydrolytic cleavage of the peptide attractant N-formylmethionylleucylphenylalanine by polymorphonuclear leukocytes and the methylation of both protein carboxyl groups and membrane phospholipids. Furthermore, the factor does not appear to compete with N-formylmethionylleucylphenylalanine for its receptor. The tumor-derived material, therefore, affects biochemical reactions believed to have roles in the expression of an adequate leukotactic response. These data suggest that depressed inflammatory responses at sites of neoplasms may result in part from release of small, potent inhibitors of leukotaxis from tumors themselves.

Animals↗

Adherence and regulation of leukotaxis.

PMNs upon stimulation by a chemoattractant adhere to a substratum and then in amoeboid fashion migrate toward the source of the attractant. We have studied molecular events in both adherence and migration and have arrived at the following conclusions: 1) PMNs, like other motile cells such as highly metastatic tumor cells, can use laminin to attach to Type IV basement membrane collagen. PMNs may use this anchoring mechanism in their emigration from the vasculature. 2) Attached cells may be stimulated to migrate as a result of the chemo-attractant-induced inactivation of lipomodulin, a natural inhibitor of phospholipase A2, an enzyme that may be essential for chemotaxis. 3) The substrate for this enzyme is generated by both the CDP-choline and transmethylation pathways. These pathways may be regulated by another enzyme, transglutaminase (TGase). 4) Natural substrates of TGase, such as uteroglobin, inhibit leukocyte chemotaxis, again suggesting a regulatory role for TGase in chemotaxis. 5) Tumor cells also produce inhibitors of chemotaxis. In addition to protecting the tumor from the host's phagocytes, these inhibitors may be related to normal modulators of cell motility. Therefore, determination of their mode of action could increase our understanding of this type of cell behavior.

Annexins↗

Synthesis of soluble, thylakoid and envelope polypeptides by isolated chloroplasts of Sorghum vulgare.

Isolated chloroplasts from the seedlings of Sorghum vulgare leaves incorporated 14C-labelled amino acids into soluble and membrane-bound products, using light as the sole energy source. The labelled chloroplasts were lysed osmotically and fractionated on a discontinuous gradient of sucrose into the soluble, thylakoid and envelope membrane fractions. About 24% of the total radioactivity in the chloroplasts was recovered in the soluble fraction, 66% in the thylakoid membranes and less than 1% in the envelope membranes. The products of protein synthesis in the different fractions, as well as in the whole chloroplasts were analyzed by electrophoresis on polyacrylamide gels in the presence of sodium dodecyl sulfate. There were three zones of radioactivity in the gels of the soluble fraction. The thylakoid membranes contained nine labelled polypeptides, the most prominent ones having the molecular weights of about 66 000, 56 000 and 27 000. The envelope membranes contained a major radioactive component of molecular weight of about 54 000 and two other minor components.

Chloroplasts↗

An in vitro protein-synthesizing system with isolated chloroplasts of Sorghum vulgare. An alternate assay system for exogenous template RNA.

A light-dependent in vitro protein-synthesizing system from isolated mesophyll chloroplasts of Sorghum vulgare was characterized. Preincubation of chloroplasts in light at 25 degrees C for 1 h depleted the endogenous templates completely; such preincubated chloroplasts translated exogenously added homologous, heterologous, and synthetic templates efficiently. The fidelity of the system in translating added templates was tested with specific templates. Substantive evidence for the fidelity of the system was obtained by immunological analysis of the specific products, e.g. chloroplast coupling Factor I obtained by the translation of S. vulgare leaf cellular and chloroplast RNAs. The efficiency of the system in translating the exogenous mRNA was also quite high. As the endogenous mRNA was totally depleted during preincubation, and as the system was nonspecific for the source of RNA for translation, these chloroplasts can serve as a simple alternative system for assaying the role of diverse template RNAs.

Amino Acids↗

Cell-free synthesis of active ribulose-1,5-bisphosphate carboxylase in the mesophyll chloroplasts of Sorghum vulgare.

Chloroplast and whole leaf cell RNA from Vigna sinensis, a C3 plant were used as exogenous templates for translation in a cell-free light-dependent system of isolated chloroplasts from Sorghum vulgare, a C4-type plant. Analysis of immunoprecipitates of the translated products with the total cellular RNA on sodium dodecyl sulfate polyacrylamide gels revealed the synthesis of both the subunits of ribulose-1,5-bisphosphate carboxylase. Similar analysis of the product translated with the RNA from Vigna chloroplasts, indicated the synthesis of only the large subunit of the carboxylase. Apparently the chloroplast protein synthetic machinery is capable of translating the mRNA for the smaller subunit of this protein as well, which is known to be translated in the cytoplasmic ribosomal system. Sufficient quantities of ribulose-1,5-bisphosphate carboxylase were synthesised in vitro in the preincubated chloroplast system with the whole cell RNA from the C3 plant to assay the ribulose 1,5-bisphosphate-dependent carboxylation. The newly synthesised protein in the cell-free system is identical in many ways to the native enzyme including the Mg2+ concentration-dependent shift in pH optima towards neutral side. It is specifically inhibited by anti-native ribulose-1,5-bisphosphate carboxylase and pyridoxal 5'-phosphate.

Carboxy-Lyases↗