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K Uma

Publications and source records attributed to K Uma.

At least 19 recordsLinked to original sources

Expression, purification, and characterization of equine lactoferrin in Pichia pastoris.

Lactoferrin is an 80kDa iron-binding glycoprotein. It is secreted by exocrine glands. Many functions such as iron sequestering, anti-bacterial activity, regulation of gene expression, and immunomodulation are attributed to it. In the present study, we report the production of recombinant equine lactoferrin (ELF) in the methylotropic yeast Pichia pastoris using pPIC9K vector. The recombinant protein was purified by one-step affinity chromatography using heparin-Sepharose column. The purified protein has a molecular weight of 80kDa and reacted with antibody raised against the native equine lactoferrin. Its N-terminal sequence was identical to that of the native ELF. The iron-binding behavior and circular dichroism studies of the purified protein indicate that it has folded properly. The recombinant protein appears to be hyperglycosylated by the host strain, GS115. This is the first heterologous expression of equine lactoferrin and also the first report of intact lactoferrin expression using P. pastoris system. An yield of 40mg/l obtained in shake-flask cultures with this system, which is higher than the reported values for other systems.

Amino Acid Sequence↗

Isomorphous replacement combined with anomalous dispersion in the linear equations: application to a crystal containing four nonapeptide conformers.

The investigation of the structure of the four conformers of the nonapeptide described here has an additional purpose: to illustrate a method for combining isomorphous replacement information with anomalous dispersion information within the linear equations that have found use in the analysis of multiple-wavelength anomalous dispersion data. In the present application, isomorphous replacement data were obtained from the replacement of naturally occurring S atoms in the nonapeptide with Se atoms. Only one wavelength was used for the analysis: Cu Kalpha radiation. Details of the analysis are presented, as well as the structural results obtained. It was found that the four independent molecules in the structure have similar, but not identical, conformations. The backbones fold into predominantly alpha-helices with one or two 310-type hydrogen bonds and have extended side chains. Three to four water molecules are associated with each of the four head-to-tail regions between the peptides. Optimal packing between hydrophobic surfaces may account for the existence of four molecules in an asymmetric unit.

Amino Acid Sequence↗

Left ventricular hypertrophy and its relation to the cardiac kinin-forming system in hypertensive and diabetic rats.

We investigated the cardiac tissue kallikrein and kininogen levels, left ventricular wall thickness and mean arterial blood pressure of Wistar Kyoto and spontaneously hypertensive rats with and without streptozotocin-induced diabetes. The mean arterial blood pressure was highly elevated (P<0.001) in Wistar Kyoto diabetic and spontaneously hypertensive diabetic rats as compared with their respective controls. The cardiac tissue kallikrein and kininogen levels were reduced significantly (P<0.001) in diabetic Wistar Kyoto, spontaneously hypertensive and diabetic spontaneously hypertensive compared with Wistar Kyoto control rats. In addition, the left ventricular thickness was found to be increased (P<0.001) in diabetic Wistar Kyoto and spontaneously hypertensive rats in the presence and in the absence of diabetes. Our results indicate that reduced activity of the kinin-forming system may be responsible for inducing left ventricular hypertrophy in the presence of raised mean arterial blood pressure in diabetic and hypertensive rats. Thus, the kinin-forming components might have a protective role against the development of left ventricular hypertrophy. The possible significance of these findings is discussed.

Animals↗

Structural features of the binding site for ribosomal protein S8 in Escherichia coli 16S rRNA defined using NMR spectroscopy.

Ribosomal protein S8 of Escherichia coli plays a key role in 30S ribosomal subunit assembly through its interaction with 16S rRNA. S8 also participates in the translational regulation of ribosomal protein expression through its interaction with spc operon mRNA. The binding site for protein S8 within the 16S rRNA encompasses nucleotides G588 to G604 and C634 to C651 and is composed of two base paired helical regions that flank a phylogenetically conserved core element containing nine residues. We have investigated the structure of the rRNA binding site for S8 both in the free state and in the presence of protein using NMR spectroscopy. The integrity of the two helical segments has been verified, and the presence of G597 x C643 and A596 x U644 base pairs within the conserved core, predicted from comparative analysis, have been confirmed. In addition, we have identified a base triple within the core that is composed of residues A595 x (A596 x U644). The NMR data suggest that S8-RNA interaction is accomplished without significant changes in the RNA. Nonetheless, S8 binding promotes formation of the U598 x A640 base pair and appears to stabilize the G597 x C643 and A596 x U644 base pairs.

Amino Acid Sequence↗

Interaction between vitamin A and iron: effects of supplements in pregnancy.

Very few reports are available on the vitamin A status of Indian pregnant women in the rural population. The present study was carried out to assess the vitamin A status and the effect of vitamin A and iron supplementation in pregnancy on serum vitamin A levels in the rural women. It was observed that serum vitamin A levels showed a marginal decrease with advancing gestation. Though satisfactory as per WHO guidelines, supplementation with 60 mg of iron prevented this decrease. A higher dose of iron (120 mg) actually resulted in a similar vitamin A status as seen in vitamin A supplemented women. If this preliminary study can be confirmed it would appear that interactions between vitamin A and iron in pregnancy have a positive effect on the vitamin A nutriture.

Analysis of Variance↗

Blood pressure regulation by the kallikrein-kinin system.

1. The kallikrein-kinin system has a significant role in regulating arterial blood pressure. 2. Reduced formation of the kinin compontents may cause hypertensive diseases. This is because of the fact that this system is responsible for vasodilatation, reduction in total peripheral resistance, natriuresis, diuresis, increasing renal blood flow and releasing various vasodilator agents. 3. Reduced kinin-kallikrein generation in hypertensive subjects may also be associated with genetic and environmental defects. 4. The kallikrein-kinin system when administered to hypertensive patients can lower their raised blood pressure to normotensive levels. 5. The mode of action of angiotensin-converting enzyme inhibitors principally may be dependent on the kinin system protection.

Angiotensin-Converting Enzyme Inhibitors↗

Hydration and distortion of peptide helices in crystals. Alpha-helical structure of a dodecapeptide, Boc-(Ala-Leu-Aib)4-OMe.

The dodecapeptide Boc-(Ala-Leu-Aib)4-OMe crystallized with two independent helical molecules in a triclinic cell. The two molecules are very similar in conformation, with a 3(10)-helix turn at the N-terminus followed by an alpha-helix, except for an elongated N(7)...O(3) distance in both molecules. All the helices in the crystal pack in a parallel motif. Eleven water sites have been found in the head-to-tail region between the apolar helices that participate in peptide-water hydrogen bonds and a network of water-water hydrogen bonds. The crystal parameters are as follows: 2(C58H104N12O15)+ca. 10H2O, space group P1 with a = 12.946(2), b = 17.321(3), c = 20.465(4) A, alpha = 103.12(2), beta = 105.63(2), gamma = 107.50(2) degrees, Z = 2, R = 10.9% for 5152 data observed > 3 sigma (F), resolution 1.0 A. In contrast to the shorter sequences [Karle et al. (1988) Proc. Natl. Acad. Sci. USA 85, 299-303] and Boc-(Ala-Leu-Aib)2-OMe [Karle et al. (1989) Biopolymers 28, 773-781], no insertion of a water molecule into the helix is observed. However, the elongated N---O distance between Ala7 NH and Aib3 CO in both molecules (molecule A, 3.40 A; molecule B, 3.42 A) is indicative of an incipient break in the helices.

Amino Acid Sequence↗

Accommodation of a D-Phe residue into a right-handed 3(10)-helix: structure of Boc-D-Phe-(Aib)4-Gly-L-Leu-(Aib)2-OMe, an analogue of the amino terminal segment of antiamoebins and emerimicins.

The crystal structure of the nonapeptide Boc-D-Phe-Aib-Aib-Aib-Aib-Gly-Leu-Aib-Aib-OMe (I), which is an analogue of the N-terminal sequence of antiamoebins and emerimicins, establishes a completely 3(10)-helical conformation with seven successive intramolecular 4-->1 hydrogen bonds. The average, phi,psi values for residues 1-8 are -59 degrees and -32 degrees, respectively. Crystal parameters are C47H77N9O12, space group P1, a = 10.636 (4) A, b = 11.239 (4) A, c = 12.227 (6) A, alpha = 101.17 (4) degrees, beta = 97.22 (4) degrees, gamma = 89.80 (3) degrees, Z = 1, R = 5.95% for 3018 data with magnitude of F0 > 3 sigma(F), resolution 0.93 A. The use of the torsion angle kappa = C(i-1)N(i)C alpha(i)C beta(i), where kappa = 68 degrees for D-Phe and kappa = 164 degrees for L-Leu, confirms the opposite configurations of these residues. The phi,psi values of -62 degrees and -32 degrees at D-Phe are unusual, since this region is characteristic of residues with L configurations. Peptide I possesses only two chiral residues of opposing configuration. The observed right-handed 3(10)-helical structure suggests that helix sense has probably been determined by the stereochemical preferences of the Leu residue.

Amino Acid Sequence↗

Unfolding of an alpha-helix in peptide crystals by solvation: conformational fragility in a heptapeptide.

The structure of the peptide Boc-Val-Ala-Leu-Aib-Val-Ala-Leu-OMe has been determined in crystals obtained from a dimethylsulfoxide-isopropanol mixture. Crystal parameters are as follows: C38H69N7O10.H2O.2C3H7OH, space group P2(1), a = 10.350 (2) A b = 26.084 (4) A, c = 10.395 (2) A, beta = 96.87 (12), Z = 2, R = 8.7% for 2686 reflections observed > 3.0 sigma (F). A single 5-->1 hydrogen bond is observed at the N-terminus, while two 4-->1 hydrogen bonds characteristic of a 3(10)-helix are seen in the central segment. The C-terminus residues, Ala(6) and Leu(7) are extended, while Val(5) is considerably distorted from a helical conformation. Two isopropanol molecules make hydrogen bonds to the C-terminal segment, while a water molecule interacts with the N-terminus. The structure is in contrast to that obtained for the same peptide in crystals from methanol-water [I. L. Karle, J. L. Flippen-Anderson, K. Uma, and P. Balaram (1990) Proteins: Structure, Function and Genetics, Vol. 7, pp. 62-73] in which two independent molecules reveal an almost perfect alpha-helix and a helix penetrated by a water molecule. A comparison of the three structures provides a snapshot of the progressive effects of solvation leading to helix unwinding. The fragility of the heptapeptide helix in solution is demonstrated by nmr studies in CDCl3 and (CD3)2SO. A helical conformation is supported in the apolar solvent CDCl3, whereas almost complete unfolding is observed in the strongly solvating medium (CD3)2SO.

Amino Acid Sequence↗

Stereochemical constraints in peptide design: analysis of the influence of a disulfide bridge and an alpha-aminoisobutyryl residue on the conformation of a hexapeptide.

The competing effects of a disulfide bridge and an alpha-aminoisobutyryl residue (Aib) in determining the conformation of a hexapeptide have been investigated, by comparing the cyclic disulfide [sequence: see text] and the acylic peptide Boc-Cys (SBzl)-Val-Aib-Ala-Leu-Cys (SBzl)-NHMe (2). Previously published nmr and crystallographic studies [R. Kishore, S. Raghothama, and P. Balaram (1987) Biopolymers, Vol. 26, pp. 873-891; I. L. Karle, R. Kishore, S. Raghothama, & P. Balaram, (1988) Journal of the American Chemical Society Vol. 110, pp. 1958-1963] have established an antiparallel beta-hairpin structure for 1 with a central Aib-Ala beta-turn. A comparison of nmr data for 1 and 2 in chloroform and dimethylsulfoxide reveals that the acyclic peptide is conformationally labile. Evidence for a 3(10)-helical conformation in CDCl3 is obtained from sensitivity of NH chemical shifts to temperature and solvent perturbation and low JHNC alpha H values. Studies in solvent mixtures establish a conformational transition on going from CDCl3 to (CD3)2SO. The changes in NH nmr parameters, together with the observation of several interresidue C alpha i H-Ni+1H nuclear Overhauser effects support a conformation having a central beta-turn with extended arms in (CD3)2SO. A single Aib residue appears to stabilize a helix in apolar solvents, for the acyclic hexapeptide, while the disulfide bridge serves to lock the beta-hairpin conformation.

Amino Acid Sequence↗

Peptide mimics for structural features in proteins. Crystal structures of three heptapeptide helices with a C-terminal 6-->1 hydrogen bond.

The crystal structure determination of three heptapeptides containing alpha-aminoisobutyryl (Aib) residues as a means of helix stabilization provides a high-resolution characterization of 6-->1 hydrogen-bonded conformations, reminiscent of helix-terminating structural features in proteins. The crystal parameters for the three peptides, Boc-Val-Aib-X-Aib-Ala-Aib-Y-OMe, where X and Y are Phe, Leu (I), Leu, Phe (II) and Leu, Leu (III) are: (I) space group P1, Z = 1, a = 9.903 A, b = 10.709 A, c = 11.969 A, alpha = 102.94 degrees, beta = 103.41 degrees, gamma = 92.72 degrees, R = 4.55%; (II) space group P21, Z = 2, a = 10.052 A, b = 17.653 A, c = 13.510 A, beta = 108.45 degrees, R = 4.49%; (III) space group P1, Z = 2 (two independent molecules IIIa and IIIb in the asymmetric unit), a = 10.833 A, b = 13.850 A, c = 16.928 A, alpha = 99.77 degrees, beta = 105.90 degrees, gamma = 90.64 degrees, R = 8.54%. In all cases the helices form 3(10)/alpha-helical (or 3(10)helical) structures, with helical columns formed by head-to-tail hydrogen bonding. The helices assemble in an all-parallel motif in crystals I and III and in an antiparallel motif in II. In the four crystallographically characterized molecules, I, II, IIIa and IIIb, Aib(6) adopts a left-handed helical (hL) conformation with positive phi, psi values, resulting in 6-->1 hydrogen-bond formation between Aib(2) CO and Leu(7)/Phe(7) NH groups. In addition a 4-->1 hydrogen bond is seen between Aib(3) CO and Aib(6) NH groups. This pattern of hydrogen bonding is often observed at the C-terminus of helices proteins, with the terminal pi-type turn being formed by four residues adopting the hRhRhRhL conformation.

Amino Acid Sequence↗

Zervamicins, a structurally characterised peptide model for membrane ion channels.

Voltage dependent membrane channels are formed by the zervamicins, a group of alpha-aminoisobutyric acid containing peptides. The role of polar residues like Thr, Gln and Hyp in promoting helical bundle formation is established by dramatically reduced channel lifetimes for a synthetic apolar analog. Crystal structures of Leu1-zervamicin reveal association of bent helices. Polar contacts between convex faces result in an 'hour glass' like arrangement of an aqueous channel with a central constriction. The structure suggests that gating mechanisms may involve movement of the Gln11 carboxamide group. Gln3 may play a role in modulating the size of the channel mouth.

Amino Acid Sequence↗

Helix aggregation in peptide crystals: occurrence of either all parallel or antiparallel packing motifs for alpha-helices in polymorphs of Boc-Aib-Ala-Leu-Ala-Leu-Aib-Leu-Ala-Leu-Aib-OMe.

Three crystalline polymorphs of the helical decapeptide, Boc-Aib-Ala-Leu-Ala-Leu-Aib-Leu-Ala-Leu-Aib-OMe, have been obtained. Antiparallel helix aggregation is observed in crystals grown from methanol (A), while completely parallel packing is observed in crystals from isopropanol (B) or an ethylene glycol-ethanol mixture (C). Crystals B and C are very similar in molecular conformation and packing. The packing motifs in crystals A and B consist of rows of parallel molecules, with an almost identical arrangement in both crystals. In crystal A, adjacent rows assemble with the helix axes pointed in opposite directions, whereas in crystal B all rows assemble with helix axes pointed in the same direction. Electrostatic interactions between helix dipoles do not appear to be a major determinant of packing modes. The structures also do not provide a ready rationalization of packing preferences in terms of side-chain interactions or solvation. The alpha-helix of the peptide in crystal A has seven 5----1 hydrogen bonds; the helix in crystal B is a mixed 3(10)/alpha-helix. The crystal parameters are as follows. Crystal A: C51H92N10O13.CH3OH, space group P2(1) with a = 10.498 (1) A, b = 18.189 (3) A, c = 16.475 (3) A, beta = 99.28 (1) degree, Z = 2, R = 9.6% for 1860 data. Crystal B: C51H92N10O13.C3H7OH, space group P2(1) with a = 10.534 (1) A, b = 28.571 (4) A, c = 11.055 (2) A, beta = 95.74 (1) degree, Z = 2, R = 6.5% for 3251 data. Crystal C: C51H92N10O13.C2H5OH, space group P2(1), with a = 10.450 (1) A, b = 28.442 (5) A, c = 11.020 (2) A, beta = 95.44(1) degree, Z = 2, R = 14.8% (isotropic) for 1948 data.

Amino Acid Sequence↗

Synthetic peptide helices in crystals: structure and antiparallel and skewed packing motifs for alpha-helices in two isomeric decapeptides.

The isomeric decapeptides Boc-Aib-Ala-Leu-Ala-Aib-Aib-Leu-Ala-Leu-Aib-OMe (II) and Boc-Aib-Ala-Aib-Ala-Leu-Ala-Leu-Aib-Leu-Aib-OMe (III), are predominantly alpha-helical with little effect on the conformation with interchange of Aib/Ala residues or Aib/Leu residues. The packing motif of helices in crystal II is antiparallel, whereas the helices pack in a skewed fashion in crystal III, with a 40 degrees angle between neighboring helix axes. Crystal III contains a water molecule in a hydrophobic hole that forms hydrogen bonds with two carbonyl oxygens that also participate in 5----1 type hydrogen bonds. Values for helical torsional angles phi and psi assume a much wider range than anticipated. Crystal II: C49H88N10O13, space group P2(1), with a = 16.625 (2) A, b = 9.811 (5) A, c = 18.412 (3) A, beta = 99.79 (1) degrees, Z = 2, R = 5.7% for 4338 data with magnitude of F0' greater than 3 sigma(F). Crystal III: C49H88N10O13 x 1/2H2O, space group P2(1) with a = 11.072 (2) A, b = 34.663 (5) A, c = 16.446 (3) A, beta = 107.85 (1) degrees, Z = 4, R = 8.3% for 6087 data with [F0[ greater than 3 sigma(F).

Amino Acid Sequence↗

Apolar peptide models for conformational heterogeneity, hydration, and packing of polypeptide helices: crystal structure of hepta- and octapeptides containing alpha-aminoisobutyric acid.

The crystal structures of two helical peptides Boc-Val-Ala-Leu-Aib-Val-ala-Leu-OMe (VALU-7) and Boc-Val-Ala-Leu-Aib-Val-Ala-Leu-Aib-OMe (VALU-8) have been determined to a resolution of 1.0 and 0.9 A, respectively. Both the seven and eight residue peptides crystallize with two conformers per asymmetric unit. The VALU-8 conformers are completely helical and differ only at the C-terminus by a sign reversal of the phi, psi angles of the last residue. One of the VALU-7 conformers occurs as a normal alpha-helix, whereas in the other, the N(7)--O(3) alpha-type hydrogen bond is ruptured by the entry of a water molecule (W) into the helix, which in turn makes hydrogen bonds N(7)...W = 2.97 A and W...O(3) = 2.77 A. The other side of the water molecule is surrounded by a hydrophobic pocket. These two conformers give a static representation of a step in a possible helix unwinding or folding process. In the VALU-8 crystal the helices aggregate in a parallel mode, whereas the aggregation is anti-parallel in the VALU-7 crystal. The crystal parameters are VALU-7, P2(1), a = 10.203 (3) A, b = 19.744 (6) A, c = 22.561 (6) A, beta = 96.76 degrees, Z = 4, C38H69N7O10.0.5H2O, R = 6.65% for 3674 reflections observed greater than 3 sigma (F); and VALU-8, P2(1), a = 10.593 (4) A, b = 27.57 (6) A, c = 17.745 (5) A, beta = 95.76 (3) degrees, Z = 4, C42H76N8O11.0.25 CH3OH, R = 6.63% for 4701 reflections observed greater than 3 sigma (F).

Amino Acid Sequence↗

Parallel zippers formed by alpha-helical peptide columns in crystals of Boc-Aib-Glu(OBzl)-Leu-Aib-Ala-Leu-Aib-Ala-Lys(Z)-Aib-OMe.

The crystal structure of the decapeptide Boc-Aib-Glu(OBzl)-Leu-Aib-Ala-Leu-Aib-Ala-Lys(Z)-Aib-OMe (where Aib is alpha-aminoisobutyryl, Boc is t-butoxycarbonyl, OBzl is benzyl ester, and Z is benzyloxycarbonyl) illustrates a parallel zipper arrangement of interacting helical peptide columns. Head-to-tail NH...OC hydrogen bonding extends the alpha-helices formed by the decapeptide into long columns in the crystal. An additional NH...OC hydrogen bond in the head-to-tail region, between the extended side chains of Glu(OBzl), residue 2 in one molecule, and Lys(Z), residue 9 in another molecule, forms a "double tooth" on the side of the column. These double teeth are repeated regularly on the helical columns with spaces of six residues between them (approximately 10 A). The double teeth on a pair of parallel columns (all carbonyl groups pointed in the same direction) interdigitate in a zipper motif. All contacts in the zipper portion are of the van der Waals type. The peptide, with formula C66H103N11O17.H2O, crystallizes in space group P2(1)2(1)2(1) with a = 10.677(4) A, b = 16.452(6) A, and c = 43.779(13) A; overall agreement R = 10.2% for 3527 observed reflections (magnitude of /F0/ greater than 3 sigma); resolution 0.9 A.

Amino Acid Sequence↗

Synthetic peptide models for protein secondary structures. Beta-sheet formation in acyclic cystine peptides.

The conformations of the symmetrical cystine peptides Boc-Cys-(Val)n-Trp-OMe Boc-Cys-(Val)n-Trp-OMe (n = 1, 1; 2, 2; 3, 3) have been examined in solution, in order to evaluate the use of disulfide crosslinks in stabilizing extended beta-strand conformations in acyclic sequences. NMR studies in (CD3)2SO provide evidence for the solvent inaccessible nature of the Val(2) NH group in peptides 1 and 2. JHNCH alpha H values are indicative of extended structures. Sequential interresidue nuclear Overhauser effects support the population of beta-strand structures in both peptides. The fluorescence quantum yield of tryptophan determined in methanol follows the order 2 greater than 1 approximately 3. Reduction of the disulfides with NaBH4 results in large enhancements of emission intensity, with the changes following the order 1 greater than 3 much greater than 2. The order of quenching is a function of the disposition of the indole and disulfide sidechains in an extended beta-sheet structure.

Amino Acid Sequence↗