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Estimation of isoelectric points of human plasma proteins employing capillary isoelectric focusing and peptide isoelectric point markers.

Synthetic UV-detectable peptide pI markers were used to estimate isoelectric point (pI) values of proteins separated by capillary isoelectric focusing (CIEF) followed by cathodic mobilization in the absence of denaturing agents. The pI calculation and quantitative analysis of purified proteins showed the feasibility of these peptides as pI markers and internal standards in CIEF separation of proteins. Estimation of pI values of major proteins in human plasma was performed using the peptide pI markers, and the values were compared with those previously obtained by gel isoelectric focusing (IEF). Sera of immunoglobulin G (IgG) myeloma patients, which showed characteristic peaks of myeloma IgG in their CIEF patterns, were also subjected to the analysis and the pI values of the myeloma proteins have been estimated.

Blood Proteins↗

Spontaneous change of human plasma angiotensin I converting enzyme isoelectric point.

The isoelectric point of angiotensin I converting enzyme (ACE) spontaneously changes from 4.3 to 4.6 during purification from human plasma. The spontaneous change in pI corresponds to that occurring with neuraminidase-treated but not with EDTA-treated samples. There is no detectable difference in the molecular weight of, or lectin binding by, the two forms of ACE with different pI's. These data indicate that ACE in the circulation contains a greater amount of sialic acid than purified ACE. The implication is that purified ACE isoenzymes which differ in sialic acid content may not reflect tissue-specific isoenzymes but rather artifacts of purification.

Chemical Phenomena↗

Accuracy in the determination of isoelectric points of some proteins and a peptide by capillary isoelectric focusing: utility of synthetic peptides as isoelectric point markers.

To evaluate the accuracy ofisoelectric point determination by capillary isoelectric focusing, the pI values of nine proteins and a peptide, the pI values of which had been determined by other methods and ranging pI 3.55-9.60, were determined by capillary isoelectric focusing by cofocusing of recently developed peptide pI markers ranging 3.38-10.17, and the consistency of the pI values was examined. Isoelectric focusing was carried out in neutral polymer-coated capillaries, and the pH gradient was mobilized by pressure toward the cathode, to detect samples with absorption at 280 nm at a fixed detection point. Carrier ampholytes from two different suppliers and in different pH ranges were used. The sharp peaks of the highly pure peptide pI markers greatly facilitated the unambiguous identification of the peaks. When a carrier ampholyte ranging over the acidic side was used, the detection of acidic pI samples was anomalously delayed. This could be partly mitigated by reducing the viscosity of the anode solution in comparison with the pH gradient formed in the capillary. Since the detection times vs the pH relationships were not linear in most cases, the use of a linear calibration line over an entire pH gradient would be erroneous. Instead, the pI values of samples were calculated by assuming a linear relation for pH against detection time between two flanking marker peptides. Close agreement between the pI values, determined by capillary isoelectric focusing, and the reference values of the samples was observed within an average difference range of 0.04-0.08 pH unit with a sample consumption of 10-100 ng within 30-60 min. Some carrier ampholytes were preferentially more effective at either the acidic or the basic side of the pH gradient. For confirmation of the completion of focusing, the use of two different focusing times is recommended.

Electrophoresis, Capillary↗

Determination of transcription factor isoelectric point by two-dimensional native isoelectric focusing and electrophoretic mobility shift analysis.

A rapid, sensitive, and inexpensive assay is described for the determination of isoelectric points of native transcription factors derived from cell nuclei. This assay depends on a transcription factors' ability to bind DNA with high specificity and obviates the need for specific antisera or additional detection methods in identifying a particular protein following isoelectric focusing. This method has been applied to two ubiquitous proteins, the octamer transcription factor, Oct-1, and the multisubunit CCAAT box factor, NF-Y. Isoelectric points have been determined under native conditions using conventional isoelectric focusing in the first dimension, followed by binding to a specific oligonucleotide DNA probe, and separation of specific DNA/protein complexes from unbound DNA in the second dimension using native polyacrylamide gel electrophoresis. Oct-1 from HeLa cell nuclei was shown to have a pI of 9.6, while NF-Y was shown to have a pI of 4.5. This method is applicable to any transcription factor which binds DNA specifically and may be used to identify changes in surface charge characteristics which occur as a result of alternative splicing events and/or following transcription factor post-translational modification(s).

Base Sequence↗

Measurement of isoelectric points of phospholipid exchange proteins by gel isoelectric focusing.

A method of the estimation of isoelectric points of phospholipid exchange proteins is described. The phospholipid presumably bound to a phospholipid exchange protein was replaced with [3H]phosphatidylcholine of a high specific radioactivity by an incubation of the protein with liposomes containing the labeled lipid and dimannosyl diglyceride. After the incubation, a major portion of the liposomes was separated from the protein by an affinity of the liposomes to concanavalin A-Sepharose 2B. The isoelectric point of the protein was measured by gel isoelectric focusing of the protein, which was located by tritium radioactivity of the bound [3H]phosphatidylcholine. The method was used to measure isoelectric points of partially purified phospholipid exchange proteins in pig liver.

Carrier Proteins↗

Isoelectric focusing and isoelectric points of aminoacyl-tRNA synthetases.

Isoelectric points and isoelectric focusing behaviour of 10 highly purified eukaryotic aminoacyl-tRNA synthetases from 3 sources, Saccharomyces cerevisiae, Euglena gracilis and Phaseolus vulgaris were examined. The pI-values measured on polyacrylamide gels under native conditions are situated between pH 5.0-7.5. A microheterogeneity was observed for 9 enzymes appearing otherwise homogeneous on gel electrophoresis. A compilation of the isoelectric points of aminoacyl-tRNA synthetases is given and literature data are compared with our experimental results.

Amino Acyl-tRNA Synthetases↗

Synthetic oligopeptides as isoelectric point markers for capillary isoelectric focusing with ultraviolet absorption detection.

Sixteen peptides (trimers to hexamers) were designed for use as a set of pI markers for capillary isoelectric focusing (CIEF). Each peptide contains one tryptophan residue for detection by UV absorption and other amino acid residues having ionic side chains, which are responsible for focusing to its pI. The pIs of these peptides were determined by slab-gel IEF using commercial carrier ampholytes. The focused peptides in the gel were detected by absorption measurement at 280 nm using a scanning densitometer and the pH gradient was determined by measuring the pH of the gel using an oxidized metal membrane electrode. The pI values of the peptides ranged from 3.38 to 10.17. The obtained values agreed well with the predicted ones, which were calculated based on amino acid compositions, with root mean square differences of 0.15 pH unit. The peptides were detected at 280 nm as very sharp peaks when separated by CIEF. The pI values of some standard proteins were redetermined by CIEF by using this set of peptide pI markers and the values agreed closely with those reported previously. The sharp focusing, stability, high purity and high solubility of these synthetic pI markers should facilitate the profiling of a pH gradient in a capillary and the determination of the pI values of proteins.

Hydrogen-Ion Concentration↗

Polypeptide amino acid composition and isoelectric point. II. Comparison between experiment and theory.

Experimental isoelectric points and amino acid compositional data for 58 proteins were compiled and organized. The experimental isoelectric points correlated well with the acidic to basic amino acid molar ratio. This agreement proved the usefulness of a recently presented analytical expression correlating explicitly protein isoelectric point to acid-base composition. Regressed acidic and basic dissociation constants were determined to be pK(alpha) = 4.9 and pK(beta) = 10.0, in fair agreement with the expected values of pK(alpha) = 4.2 and pK(beta) = 11.2. Theoretical isoelectric points determined by a more complete computational procedure were on the average in as good an agreement with the experimental values as those calculated via the theoretical approximation using the regressed dissociation constants. Thus, the analytical approximation is a powerful tool for the convenient and accurate calculation of protein isoelectric point from the amino acid composition.

Amino Acids↗

Beta-lactamases: determination of their isoelectric points.

Important discrepancies in isoelectric points (pI) of beta-lactamases were observed depending on the experimental procedure used for their determination: isoelectric focusing (IEF) in sucrose density gradients or analytical IEF in thin-layer polyacrylamide gels (PA). The variations, negligable in the case of TEM-like beta-lactamases, appeared to be important in the case of cephalosporinases and are related to an artifact which appears in PA-IEF. This has been clearly shown with beta-lactamase preparations from the following bacterial strains: Pseudomonas aeruginosa NCTC 8203 (pI = 8.7), P. aeruginosa NCTC 10701 (pI = 9.4), and Proteus morganii NCTC 235 (pI = 8.3). The data previously obtained by PA-IEF were much lower.

Amidohydrolases↗

Isoelectric points of spinach thylakoid membrane surfaces as determined by cross partition.

The isoelectric points of unbroken chloroplast lamellae and various subchloroplast fractions, including a preparation of inside-out thylakoids, have been determined using aqueous two-phase systems containing dextran and charged polyethylene glycol. When the amounts of material in the top phase in a phase system with the positively charged trimethylamino polyethylene glycol are plotted against pH the curve intersects the corresponding curve obtained from phase systems with the negatively charged polyethylene glycol sulfonate. This cross-point can be correlated with the isoelectric point of the material. The cross-point for unbroken chloroplast lamellae was found to be around pH 4.7. Mechanical disintegration lowered the cross-point to around pH 4.4, probably because of exposure of new membrane surfaces. The disintegrated chloroplasts were fractionated by differential centrifugation to separate the grana and stroma lamellae. The stroma lamellae vesicles showed the same isoelectric point as the unbroken lamellae, while a cross-point at pH 4.3 was obtained for the grana-enriched fraction. For thylakoid membranes destacked under low salt conditions the cross-point was 0.3 pH unit lower than for membranes originating exclusively from the stroma lamellae. The most acidic crosspoint (pH 4.1) was observed for the fraction enriched in inside-out granathylakoids. It is suggested that the differences in isoelectric point between various subchloroplast fractions reflect a heterogeneous arrangement of surface charge along and across the thylakoid membrane.

Cell Fractionation↗

Fluorescence-labeled peptides as isoelectric point (pI) markers in capillary isoelectric focusing with fluorescence detection.

Commercially available peptides, mostly angiotensin derivatives, were labeled at their N-terminal amino group with 5-carboxytetramethylrhodamine succinimidyl ester, to obtain fluorescent pI markers for capillary isoelectric focusing with fluorescence detection. The labeled peptides were purified by reversed-phase chromatography. They were well separated on isoelectric focusing in a polyacrylamide gel slab and their pIs were determined by comigration with protein-pI markers. The fluorescent markers could be detected as sharp peaks in capillary isoelectric focusing with laser-induced fluorescence detection (He-Ne laser, 1 mW, 543.5 nm). The detection limit was found to be around 3 x 10(-12) M (0.8 amol). Tetramethylrhodamine-labeled pea lectin (3 pg) was subjected to capillary isoelectric focusing and the pIs of the fluorescent derivatives of the lectin were determined by using the fluorescence-labeled peptides as pI markers.

Amino Acid Sequence↗

Influence of the conformational state on the isoelectric points of rat brain synaptosomes, mitochondria and mitoplasts.

The isoelectric points of rat brain synaptosomes, mitochondria and mitoplasts have been determined by using different charged two-phase systems containing dextran and poly(ethylene glycol). The cross-partition diagrams of these organelles show isoelectric points at pH 4.1, 4.5 and 4.7, respectively. The influence of the conformational state of mitochondrial membranes upon their partition in two-phase systems has been studied. Shrunk mitoplasts showed a large change in their partition behavior as reflected by an increased affinity for the lower dextran phase, while shrinkage of mitochondria did not affect their partition. Shrunk mitoplasts showed the same isoelectric point of pH 4.7 as swollen mitoplasts, which indicates that no charge changes occurred on the outer side of the inner mitochondrial membrane during shrinkage of mitoplasts.

Animals↗

Isoelectric points of erabutoxins and monoacyl derivatives of erabutoxin b. Estimation of the pK values of amino groups in erabutoxins by using isoelectric-focusing data.

The isoelectric points of erabutoxins a, b and c, neurotoxic proteins of a sea snake, Laticauda semifasciata, were determined by density-gradient isoelectric focusing. The same measurement was also made with monoacyl derivatives of erabutoxin b, in which each one of all amino groups had been either acetylated or propionylated. Erabutoxins a and b showed the same isoelectric point at pH 9.68. The values for ]1-N alpha-acetyl-arginine]-, [15-N6-acetyl-lysine]-, [27-N6-acetyl-lysine]-, [47-N6-propionyl-lysine]- and [51-N6-acetyl-lysine]-erabutoxin b were at pH 9.52, 9.31, 9.45, 9.22 and 9.09 respectively, being definitely different from each other and lower than the value for the unmodified molecule. The isoelectric point of erabutoxin c, which is [51-asparagine]-erabutoxin b, was the same as that of [51-N6-acetyl-lysine]erabutoxin b. Assuming that no change in pK occurs on monoacylation, the pK values of amino groups in erabutoxin b were calculated from the isoelectric-point data. It is indicated that the pK values of zeta-amino groups differ markedly from each other and that the value of alpha-amino group is anomalously high.

Amino Acids↗

An algorithm for the computer calculation of the coefficients of a polynomial that allows determination of isoelectric points of proteins and other macromolecules.

The isoelectric point (pI) of a macromolecule containing any number of acid-base residues can be expressed as a polynomial whose coefficients are related to both the number of acid-base residues present in the molecule and their K values. Polynomials of degree higher than 5 are too complicated to be solved manually. An algorithm is here presented which allows, with few sentences written in BASIC, the calculation of the polynomial coefficients. With this knowledge and using standard polynomial solving programs, the isoelectric point of the macromolecule can be calculated.

Algorithms↗

Determination of the Surface Isoelectric Point of Oxide Films on Metals by Contact Angle Titration

The surface isoelectric point for the native air-formed oxide films on aluminum, chromium, and tantalum has been determined by measurement of contact angles at the hexadecane/aqueous solution interface as a function of pH of the aqueous phase. Application of Young's equation, the Gibbs equation, and surface equilibria conditions for hydroxylated oxide films leads to a mathematical expression which shows that the contact angle goes though a maximum at the isoelectric point of the oxide. The experimentally determined isoelectric point of oxide-covered chromium is 5.2 to 5.3, of oxide-covered aluminum is 9.5, and of oxide-covered tantalum is approximately -0.7. These values for the oxide films are within one to three pH units of the reported isoelectric points for the corresponding bulk oxide powders. The oxide-covered metal surfaces were cleaned by argon plasma treatment prior to measurement of contact angles, in that XPS measurements showed this treatment to be effective in reducing the thickness of the carbon contamination layer. In addition, interfacial tensions were measured at the hexadecane/aqueous solution interface and were observed to have only a slight dependence on the pH of the aqueous phase. Copyright 1997 Academic Press. Copyright 1997Academic Press

Journal Article↗

Isoelectric points of red clover necrotic mosaic virus serotypes.

Isoelectric focusing in agarose gel was used to determine the isoelectric points of red clover necrotic mosaic virus serotypes. The isoelectric points of serotypes A, B and C were in the pH ranges from 5.03-5.06, from 4.82-4.84 and from 4.60-4.62, respectively.

Isoelectric Point↗