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Characterization of pH titration shifts for all the nonlabile proton resonances a protein by two-dimensional NMR: the case of mouse epidermal growth factor.

The pH titration shifts for all the nonlabile proton resonances in a 53-residue protein (mouse epidermal growth factor) were measured in the p2H range 1.5-9 with two-dimensional (2D) 1H NMR. The 2D NMR pH titration experiment made it possible to determine the pK values for all the ionizable groups which were titrated in the pH range 1.5-9 in the protein. The pK values of the nine ionizable groups (alpha-amino group, four Asp, two Glu, one His, and alpha-carboxyl group) were found to be near their normal values. The 2D titration experiment also provided a detailed description of the pH-dependent behavior of the proton chemical shifts and enabled us to characterize the pH-dependent changes of protein conformation. Analysis of the pH-dependent shifts of ca. 200 proton resonances offered evidence of conformational changes in slightly basic pH solution: The deprotonation of the N-terminal alpha-amino group induced a widespread conformational change over the beta-sheet structure in the protein, while the effects of deprotonation of the His22 imidazole group were relatively localized. We found that the 2D NMR pH titration experiment is a powerful tool for investigating the structural and dynamic properties of proteins.

Amino Acid Sequence↗

Structural details of Asp(B9) human insulin at low pH from two-dimensional NMR titration studies.

A titration study of the dimeric Asp(B9) mutant of human insulin was performed using two-dimensional NMR spectroscopy. Based on 10 NOESY spectra recorded in the pH range 1.73-3.93, the pKa values of the seven carboxyl groups in the mutant were determined, and the titration shifts of 46 pH-dependent protons in non-ionizable groups were investigated. Further, the pKa values of the two histidine imidazole rings were determined from a series of 1D spectra recorded in the pH range 6.65-10.0. The titration shifts of all pH-dependent protons were analyzed by a nonlinear least-squares fitting procedure, using an equation that describes a one-step titration. Also the pH dependence of the exchange rate of the amide proton of Phe(B24) was determined in the applied pH range. On the basis of the experimental results, it is concluded that the Asp(B9) residue forms an N-cap of the B-chain alpha-helix through an interaction between the side-chain carboxyl group of the residue and the dipole of the helix. Further, the titration data show that salt bridges are established between Glu(B13) and His(B10) and between Asn(A21) and Arg(B22) at pH values, where the interacting groups are ionized, and that a hydrogen bond exists between the amide proton of Val(A3) and the C-terminal carboxyl group of Thr(B30). Most surprisingly, the data analysis shows that the Asp(B9) insulin exists as a dimer throughout the investigated pH range, that is, also at pH values where there is a substantial negative charge repulsion in the monomer-monomer interface of the dimer.

Amino Acid Sequence↗

Analysis of cooperativity observed in pH titrations of proton nuclear magnetic resonances of histidine residues of rabbit cardiac tropomyosin.

We have investigated in detail the cooperativity which we had previously observed in the pH titration profiles of the histidine residues of rabbit tropomyosin [Edwards, B. F. P., & Sykes, B. D. (1978) Biochemistry 17, 684]. Nonpolymerizing tropomyosin was prepared by carboxypeptidase digestion, and the titration profiles of its histidine residues were compared with those of undigested tropomyosin which was fully polymerized (in 0.1 M KCl) throughout the titration. We have concluded that both histidine-153 and histidine-273 have significant cooperativity in their pH titrations only in polymerized tropomyosin, that the cooperativity arises from an intrinsic pH-dependent conformational transition which links the two residues together and not from the known pH dependence of the polymerization, and that the best model for the cooperativity is a biallosteric adaption of the Monod--Wyman--Changeux formalism involving two classes of binding sites for the same ligand (protons). Three other models which postulated either a Hill transition, an interaction with a neighboring residue that also titrates, or a pH-dependent polymerization were also considered.

Allosteric Regulation↗

Application of the pH-jump method to the titration of tyrosine residues in bovine alpha-lactalbumin.

A stopped-flow technique has been developed for the zero-time spectrophotometric titration of tyrosine residues in the purely native or in the purely alkaline denatured state of alpha-lactalbumin that undergoes an alkaline conformational transition in the pH region of tyrosine ionization. The progressive absorption change at 298 nm caused by a pH jump from neutral pH is shown to result from the change in ionization of the tyrosine residues brought about by a first-order process of the conformational transition. Extrapolation to zero time gives the titration curve for purely native alpha-lactalbumin. Similarly, the pH jump from highly alkaline pH gives the titration curve for the purely alkaline denatured protein. The method should be generally applicable to other proteins that contain tyrosines. Analysis of the titration curves suggests that the four tyrosines in native alpha-lactalbumin have pK values of 10.5, 11.8, 11.8, and 12.7, respectively. After the alkaline transconformation, all of them become titrated normally with a pK value of 10.3. A comparison of these results with the ionization behavior of tyrosines in hen egg white and human lysozymes is presented and discussed in terms of differences in the sequences of the proteins.

Animals↗

Oxidative titrations of reduced cytochrome aa3: correlation of midpoint potentials and extinction coefficients observed at three major absorption bands.

Anaerobic oxidative titrations of purified cytochrome aa3 were monitored at three wavelengths (444, 604, and 820 nm), in both the absence and the presence of carbon monoxide. Computer simulation of each titration curve was utilized to ascertain the midpoint potentials of the four oxidation-reduction centers of the enzyme. For experiments performed under nitrogen, two components were found to titrate with low potential (heme aL = 220 mV, CuL = 240 mV) and two with high potential (heme ath, cuH = 340 mV), consistent with results obtained previously in reductive titrations. Unequal heme extinction coefficients were observed at 444 nm. Oxidation by either potassium ferricyanide or 1,1'-bis(hydroxymethyl)ferricinium ion showed that the low potential heme component contributed 75% of the absorbance change at 444 nm. At 820 nm, the entire absorbance change could be attributed to a single, low potential copper component. Midpoint potentials calculated for the carbon monoxide complexed enzyme agreed with previously reported values. The copper components retained the values observed under nitrogen, while the titratable heme group gave an apparent midpoint potential of 260 mV. These results enable us to assign absorbance changes at various wavelengths to specific redox components of cytochrome aa3.

Anaerobiosis↗

Oxidative titrations of reduced cytochrome aa3: influence of cytochrome c and carbon monoxide on the midpoint potential values.

Oxidative titrations were performed on the electrostatic complex formed between cytochrome c and cytochrome aa3 at low ionic strength. Midpoint potentials of the redox centers in the proteins in 1:1 and 2:1 complexes were compared with those in mixtures of the cytochromes at high ionic strength. Computer simulations of all titrations yielded midpoint potentials for the components of cytochrome aa3 which were consistent with literature values for isolated cytochrome aa3 or mixture of cytochromes c and aa3. However, the unequal heme extinction coefficients observed previously (Schroedl, N.A., and Hartzell, C.R. (1977), Biochemistry 16, 1327) during oxidative titrations of cytochrome aa3 became equal in magnitude under these experimental conditions. The binding of cytochrome c to cytochrome aa3 changed the midpoint potentials of cytochrome aa3 by 15-20 mV, while the midpoint potentials for cytochrome c were altered by 50-60 mV. Careful analysis of these titrations including computer simulation revealed that cytochrome c was able to bind to cytochrome aa3 only after cytochrome aL2+ had become oxidized. When bound to cytochrome aa3, the midpoint potential of cytochrome c was 210 7V. Titrations performed under a carbon monoxide atmosphere revealed cytochrome aa3 midpoint potentials unchanged from reported values. Cytochrome c again exhibited a midpoint potential of 210 mV after binding to cytochrome aa3.

Anaerobiosis↗

Proton magnetic resonance titration curves of the three histidine residues of staphylococcal protease.

Proton magnetic resonance spectra of staphylococcal protease, a serine protease from Staphylococcus aureus, strain V8, are presented. Initial proton spectra were obtained at 220 MHz, and more detailed studies of the aromatic region were carried out by correlation spectroscopy at 250 MHz. The overall spectrum bears a close resemblance to one calculated from the sum of spectra of the component amino acids. Chemical shifts of the three tyrosine, four phenylalanine, and three histidine residues appear to be equivalent at pH 3.7 and 8.5 indicating that they are all in normal chemical environments in the enzyme. The staphylococcal protease contains a large number of slowly exchanging protons. In fact, interpretable spectra of the aromatic region were obtained only after extensive exchange of N-H groups with deuterium from the D2O solvent. Proton magnetic resonance titration studies of the three histidine residues indicate that these have normal chemical shifts and pK' values. When the data are fitted to single noninteracting titration curves, the histidine pK' values are 7.19 plus or minus 0.02, 6.85 plus or minus 0.03, and 6.69 plus or minus 0.02. The titration curves of two of the histidine residues indicate negative cooperativity. A possible explanation for this is a direct electrostatic interaction between the two histidines. The titration data for these histidines give a significantly better fit to such a mutual interaction model than to noninteracting titration curves. The component microscopic dissociation constants have been calculated. Mutual interaction leads to pK' displacements of 0.31 unit; which indicates a distance of approximately 7 angstrom between the two interacting histidine rings according to the model of Tanford and Roxby. The proton resonances of the two interacting histidines are doubled in the pH region 6.7-7.0 suggesting the presence of two forms of the enzyme having lifetimes in excess of 30 msec.

Amino Acids↗

Resolution of multiple substrate binding sites in cytochrome P450 3A4: the stoichiometry of the enzyme-substrate complexes probed by FRET and Job's titration.

To explore the mechanism of homotropic cooperativity in human cytochrome P450 3A4 (CYP3A4) we studied the interactions of the enzyme with 1-pyrenebutanol (1-PB), 1-pyrenemethylamine (PMA), and bromocriptine by FRET from the substrate fluorophore to the heme, and by absorbance spectroscopy. These approaches combined with an innovative setup of titration-by-dilution and continuous variation (Job's titration) experiments allowed us to probe the relationship between substrate binding and the subsequent spin transition caused by 1-PB or bromocriptine or the type-II spectral changes caused by PMA. The 1-PB-induced spin shift in CYP3A4 reveals prominent homotropic cooperativity, which is characterized by a Hill coefficient of 1.8 +/- 0.3 (S50 = 8.0 +/- 1.1 microM). In contrast, the interactions of CYP3A4 with bromocriptine or PMA reveal no cooperativity, exhibiting KD values of 0.31 +/- 0.08 microM and 7.1 +/- 2.3 microM, respectively. The binding of all three substrates monitored by FRET in titration-by-dilution experiments at an enzyme:substrate ratio of 1 reveals a simple bimolecular interaction with KD values of 0.16 +/- 0.09, 4.8 +/- 1.4, and 0.18 +/- 0.09 microM for 1-PB, PMA, and bromocriptine, respectively. Correspondingly, Job's titration experiments showed that the 1-PB-induced spin shift reflects the formation of a complex of the enzyme with two substrate molecules, while bromocriptine and PMA exhibit 1:1 binding stoichiometry. Combining the results of Job's titrations with the value of KD obtained in our FRET experiments, we demonstrate that the interactions of CYP3A4 with 1-PB obey a sequential binding mechanism, where the spin transition is triggered by the binding of 1-PB to the low-affinity site, which becomes possible only upon saturation of the high-affinity site.

Binding Sites↗

Stoichiometric CO reductive titrations of acetyl-CoA synthase (Carbon monoxide dehydrogenase) from Clostridium thermoaceticum.

Acetyl-CoA synthase (carbon monoxide dehydrogenase) from Clostridium thermoaceticum was stoichiometrically titrated under CO(2) with CO and thionin. Resulting EPR titration curves were simulated assuming different redox descriptions of the enzyme. Samples began slightly reduced, with approximately 20% of the C-cluster reduced to the C(red1) state. With increasing CO intensities, the intensity of C(red1) increased to a maximum, and then declined as the intensities of C(red2), B(red), and A(red)-CO increased and plateaued. Simulations revealed that only a fraction of the A-, B-, and C-centers in the enzyme were redox-active and that, within the probed potentials (-0.2 to -0.45 V), there are probably no other redox sites in the enzyme. Oxidative processes occurred at higher potentials, but they are catalytically irrelevant. Additional low-potential redox sites may be present, but this could not be assessed from the titrations. Best-fit E degrees (C)()ox(/C)()red1 = -0.12 +/- 0.04 V, 0.1 V less negative than under Ar. Titrated samples accepted from 3.5 to 5.0 equiv/alphabeta in accordance with the intensity of the sample's EPR signals. A similar titration under Ar revealed a different pattern of reduction. The intensity of B(red) increased first; then C(red1) converted to C(red2), and then A(red)-CO developed. The sample accepted approximately 4 equiv/alphabeta. The heterogeneity in the enzyme is summarized as follows. About forty percent of A(ox) can be reduced by one electron and bound with CO, yielding A(red)-CO. The remaining A(ox) cannot be reduced. All B(ox) can be reduced, most ( approximately 65%) to the S = (1)/(2) state and the remainder to the S = (3)/(2) state. About 40% of C(ox) are reduced by one electron to C(red1) and then by two more electrons to C(red2). The remaining C(ox) clusters are reduced by one electron to an S = (3)/(2) form. Possible origins of this heterogeneity are discussed.

Aldehyde Oxidoreductases↗

Supramolecular gold nanoparticles for the redox recognition of oxoanions: syntheses, titrations, stereoelectronic effects, and selectivity.

Stable, CH(2)Cl(2)-soluble mixed dodecanethiol/(amidoferrocenyl)alkanethiol (AFAT) gold colloids were synthesized by ligand substitution reactions from Brust's dodecanethiol gold colloids and the AFAT ligands to study the recognition and titration of oxoanions. Gold colloids were obtained with various chain lengths (C(11) and C(6) chains) of the AFAT ligand and different proportions of AFAT ligands in the colloids. Modification of the amidoferrocenyl structure [replacement of the free C(5)H(5) ferrocene ring by C(5)Me(5) (Cp) or C(5)H(4)COCH(3)] has been achieved to investigate the stereoelectronic effects on the recognition. The cyclic voltammetry of these colloids in CH(2)Cl(2) on Pt electrode shows a reversible Fe(II/III) wave with some adsorption. With AFAT ligands, a new, less electrochemically reversible wave (with some adsorption) at a potential 220 +/- 20 mV less positive than that of the initial wave appears upon titration of [n-Bu(4)N][H(2)PO(4)], and the initial wave completely disappears after addition of 1 equiv of anion, which allows its titration. The potential shift does not depend on the AFAT proportion nor on its chain length but is reduced with Cp and enhanced with C(5)H(4)COCH(3), showing the key role of the hydrogen bonding between the -NH-amido group and a terminal oxygen atom of the oxoanions. According to the Echegoyen-Kaifer model, the potential shift leads to the ratio K((+))/K((0)) of apparent association constants. In the presence of both [n-Bu(4)N][HSO(4)] and [n-Bu(4)N]Cl, a shift of the initial wave (rather than its replacement) allows an easy titration, ideally with 20-Fc. Upon addition of [n-Bu(4)N][HSO(4)] alone, a weak wave shift (30 mV) of the colloids is also observed, allowing the titration of the HSO(4)(-) anion by the colloids containing a low percentage of AFAT ligand. The Echegoyen-Kaifer model provides access to the apparent association constant K((+)) in this case for which the interaction between the anion and the neutral form of the host is not significant. With the C(5)H(4)COCH(3) modification of the amidoferrocenyl branch, a new wave appears at a potential 70 mV more positive than the initial wave, signifying a stronger interaction with this modified ligand than with the parent AFAT ligand. These colloids favorably compare with ferrocenyl dendrimers in terms of rapid synthesis and selectivity of H(2)PO(4-) over HSO(4-) and with gold surfaces for the recognition of HSO(4)(-).

Anions↗

A pilot study of loading versus titration of valproate in the treatment of acute mania.

OBJECTIVE: This double-blind pilot study compares the effectiveness and incidence of adverse effects of oral loading versus titration schedules of valproate in acute mania. METHOD: Consecutive new admissions for an acute manic episode were prescribed either an oral loading dose (20 mg/kg/day; n = 5; mean age = 33.4) or slower titration dose (10 mg/kg/day, n = 6. mean age = 30.6) of valproate for 7 days without other psychotropic agents. with the exception of benzodiazepines. Daily outcome measures included: serum valproic acid levels, the Young Mania Rating Scale (YMRS), the Brief Psychiatry Rating Scale (BPRS), the Clinical Global Impression Scale (CGI) and the Adverse Effect Rating Scale. RESULTS: The mean serum valproic acid levels were significantly higher in the loading group when compared with the titration group after 1 and 2 days following the initiation of treatment (p < 0.05). After 3 days of treatment there was a trend for the group that received the loading regimen to have slightly more improvement in YMRS scores compared with the titration group. Side-effects were minor for both treatments, however, a higher incidence of side-effects was reported in the titration group, with 50% of patients reporting sedation most likely because of increased use of benzodiazepines. CONCLUSION: This suggests that a loading dose of valproate is likely safe and may provide an earlier onset of antimanic effects in patients with bipolar disorder. Future studies with larger sample sizes are indicated.

Acute Disease↗

Calculation of titratable acidity from urinary stone risk factors.

Using urine samples and standard solutions, this study demonstrates that the existing procedure for measuring titratable acidity in the urine is not reliable and may result in overestimates of up to 25%. The accuracy is affected by loss of CO2, the presence of uric acid crystals, and the precipitation of calciumphosphate phases during the titration. A method is presented for calculating titratable acidity, using a number of routinely-measured urine components and a computer program for calculating complex equilibria in the urine. The calculated titratable acidity is shown to be more reliable then the measured one. The results are compiled in a nomogram from which the titratable acidity can be directly read. When the parameters of urine pH, PO4 content and pCO2 are used, the accuracy of the nomogram is > 96% for urine samples with a pH value above 6.0 and > 89% for urine samples with a pH value below 6.0. For all samples, the accuracy is improved to > 97% when the nomogram using uric acid and citrate content is used in additionally.

Acids↗

Using RNA sample titrations to assess microarray platform performance and normalization techniques.

We have assessed the utility of RNA titration samples for evaluating microarray platform performance and the impact of different normalization methods on the results obtained. As part of the MicroArray Quality Control project, we investigated the performance of five commercial microarray platforms using two independent RNA samples and two titration mixtures of these samples. Focusing on 12,091 genes common across all platforms, we determined the ability of each platform to detect the correct titration response across the samples. Global deviations from the response predicted by the titration ratios were observed. These differences could be explained by variations in relative amounts of messenger RNA as a fraction of total RNA between the two independent samples. Overall, both the qualitative and quantitative correspondence across platforms was high. In summary, titration samples may be regarded as a valuable tool, not only for assessing microarray platform performance and different analysis methods, but also for determining some underlying biological features of the samples.

Algorithms↗

Acid-base titration across the membrane system of rat-liver mitochondria. Catalysis by uncouplers.

1. Pulsed acid-base titrations of suspensions of rat-liver mitochondria under anaerobic equilibrium conditions show fast and slow titration processes. 2. The fast process is the titration of the outer aqueous phase of the mitochondria, which is continuous with the suspension medium, and the slow process can be identified with the titration of the inner aqueous phase of the mitochondria, which is separated from the outer aqueous phase by the non-aqueous osmotic barrier or M phase of the cristae membrane system. 3. The buffering power of the outer and inner phases have been separately measured over a range of pH values. 4. The rate of titration of the inner aqueous phase under a known protonmotive force across the M phase has been characterized by an effective proton conductance coefficient, which, near pH7 and at 25 degrees , is only 0.45mumho/cm.(2) of the M-phase membrane. 5. The low effective proton conductance of the M phase will account quantitatively for the observed respiratory control in state 4, assuming that oxidoreduction and phosphorylation are coupled by a circulating proton current as required by the chemi-osmotic hypothesis. 6. The addition of 2,4-dinitrophenol (or carbonyl cyanide p-trifluoromethoxyphenylhydrazone) at normal uncoupling concentrations causes a large increase in the effective proton conductance of the M phase of the cristae membrane. 7. The increase of the effective proton conductance of the M phase by 2,4-dinitrophenol (or carbonyl cyanide p-trifluoromethoxyphenylhydrazone) will account quantitatively for the short-circuiting effect of the uncoupling agent on the proton current and for the observed rise of the rate of respiration to that characteristic of state 3 or higher.

Animals↗

Hydrogen-ion titration studies on erythrocyte membranes.

1. H+ titration was used to detect the presence of ionizable groups on human erythrocyte plasma membranes. Between pH2.9 and 11.3, two significant peaks of H+ association/dissociation occur in the differential from of the titration curve, one at pH3. 1. And the other at pH10.3. 2. After disruption of membrane structure by exposure to high pH or by the addition of sodium dodecyl sulphate, maxima of H+ association/dissociation were seen at pH3.1,4.3,6.5,10.3 and 10.7. 3. Spectrophotometric assay and selective chemical treatments were used to identify several of the titratable residues. 4. The degree of eleectrostatic interaction between titratable charged groups was investigated by comparing the titration characteristics of the membranes before and after modification of membrane structure.

Cell Membrane↗

Comparison of conventional tube test with diamed gel microcolumn assay for anti-D titration.

Anti-D titration is the first step in the evaluation of the RhD-sensitized patient. Traditionally, anti-D titration has been performed by tube agglutination. Gel microcolumn assay is a method that has gained widespread usage throughout the world, mainly for ABO/Rh typing, unexpected antibody screening and direct antiglobulin tests. As gel assay has become widely used as a routine method to detect red blood cell alloantibodies, a critical anti-D titer needs to be established. Seventy-nine known blood samples with anti-D (titers 1-32) were titrated simultaneously by the conventional tube test and the gel microcolumn assay. Red blood cells (R0r phenotype) were used, with a final concentration of 3% for tube and 0.8% for gel. Serial twofold dilutions (2-2.048) were prepared for each technique, followed by reading in antiglobulin phase. Anti-D titration in the gel microcolumn assay showed significantly higher titers (mean 3.4-fold) than the conventional tube test in all samples studied. Based on these data, it was not possible to determine a critical titer for anti-D titration by the gel microcolumn assay.

Blood Grouping and Crossmatching↗

Methadone titration in opioid-resistant cancer pain.

AIM: To assess the use of methadone in patients with cancer pain who fail to respond to increasing doses of other opioids or experience intolerable side-effects from them. METHOD: Inpatients of a specialist palliative care unit were titrated onto oral methadone. The dose was calculated as 10% of the previous morphine equivalent dose, up to maximum of 40 mg, given every 3 h as required for analgesia. When daily requirements were stable it was divided into two regular doses. Pain was assessed on a five-point verbal rating score (VRS): a good response was defined as a fall in VRS of two points or more. Results are expressed as median (range). RESULTS: Thirty-three patients (13 men, 20 women, age 61 (34-91) years), 26 with inadequate analgesia and seven with intolerable opioid related side-effects, were converted to methadone from diamorphine (12), morphine (19) or fentanyl (two). Morphine equivalent dose was 480 (20-1200) mg/day prior to titration. Pain was neuropathic (11), nociceptive (three) or mixed (19). Stabilisation on methadone was complete in 3 (2-18) days in 29 (88%) patients at 80 (20-360) mg/day. Twenty-six (78%) had a good response. Four (12%) patients were withdrawn during titration (three entered terminal phase, one failed to respond). During follow-up 15 (45%) required alteration of methadone dose. Twenty-three (70%) patients were discharged home at 12 (4-26) days. In all cases the stable dose of methadone was less than the previous morphine equivalent, and there was a weak correlation between them. CONCLUSIONS: This method of methadone titration often results in improved pain control in patients with morphine resistance or intolerance. It requires careful titration in a specialist inpatient unit as there is no reliable formula for dose equivalence.

Administration, Oral↗

Studies on host-virus interactions in the chick embryo-influenza virus system. VII. Data concerning the significance of infectivity titration end-points and the separation of clones at limiting dilutions.

Equal mixtures of influenza A (PR8) and B (Lee) viruses, based on predetermined ID(50) values of the individual preparations, were titrated in closely spaced steps near the 50 per cent infectivity end-point. Typing of the hemagglutinins found in the allantoic fluids after incubation of the eggs for 72 hours showed an approximately equal distribution between types A and B, when less than 2 ID(50) of the mixed seed had been injected. With larger inocula influenza A became dominant because it reproduces at a faster rate than the influenza B virus. While this result agreed with expectations, it was found that passage of the allantoic fluids revealing influenza A agglutinins in mixture with anti-A serum, and of B agglutinins with anti-B, yielded the heterologous virus in many instances, even when only one-half of an ID(50) of mixed seed had been administered in the original titration. "Negative" fluids obtained from embryos injected with as little as one-eighth of an ID(50) upon passage yielded on occasion virus of one or the other type. Similar closely spaced titrations near the 50 per cent end-point of single strains (PR8) indicated that if hemagglutinins were found after incubation of 72 hours they were of high titer, as a rule. However, in some embryos hemagglutinins became detectable only between the 3rd and 4th days of incubation. In addition, negative allantoic fluids removed from embryos 72 hours after injection yielded on occasion virus on passage, yet no hemagglutinins were found in some of these eggs after an additional incubation period of 24 hours, or a total of 96 hours. None of the possible explanations for these various observations, which have been discussed in detail, is completely satisfactory. However, the data indicate that in infectivity titrations the ID(50) end-point obtained at 72 hours, or even after 96 hours, does not reflect the total amount of virus present in the material titrated. The data also denote that separation of variants, or mutants or "genetic recombinants" by the limiting dilution technic, although possible, does not represent an absolutely safe procedure.

Antibodies↗