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Distribution of rare triplets along mRNA and their relation to protein folding.

It is believed that pausing during mRNA translation plays some role in ensuring proper folding of newly synthesized sections of a protein chain. Such pausing occurs when rare triplets are encountered in the mRNA, as it takes additional time for the corresponding rare species of tRNA to be delivered. To determine whether pause sites are non-randomly distributed along prokaryotic mRNA (cDNA), we have located clusters of rare triplets in cDNA sequences from 21 different bacteria. From the individual profiles of local codon frequencies calculated with various windows, the positions of the clusters of the rarest codons were taken for generation of the combined histograms of positional preferences of the pause sites. The histograms show that in the prokaryotic sequences, the pause sites are located preferentially at the start positions and at about 155 triplets from the starts. To verify the generality of these observations, the data are grouped in six independent sets about 500 sequences each, all revealing the same features. A less prominent maximum is also seen at the triplet position 75. Judging by the amplitude of the peak at 155 triplets, an optimal cluster size is estimated to equal 18 triplets. The distance 155 closely corresponds to the sizes of typical protein folds and to earlier estimated prokaryotic protein sequence segments. This supports the suggestion of a role for translation pausing in the cotranslational folding of protein domains. The profiles of rare codons in mRNA can serve in the detection or prediction of boundaries between protein domains.

Amino Acid Sequence↗

The Friedreich ataxia GAA triplet repeat: premutation and normal alleles.

The most common mutation causing Friedreich ataxia (FRDA), an autosomal recessive neurodegenerative disease, is the hyperexpansion of a polymorphic GAA triplet repeat localized within an Alu sequence (GAA-Alu) in the first intron of the frataxin (X25) gene. GAA-Alu belongs to the AluSx subfamily and contains several polymorphisms in strong linkage disequilibrium either with a subgroup of normal alleles, or with hyperexpanded FRDA-associated alleles. GAA repeat sizes in 300 normal chromosomes (97 from carriers and 203 from controls) were distributed in two separate groups: 83% of them contained between six and 10 triplets (small normal alleles), while the remaining 17% had more than 12 triplets, up to 36 (large normal alleles). Sequence analysis showed that no normal, stable allele contained more than 27 uninterrupted GAA triplets. All longer normal alleles were interrupted by a hexanucleotide repeat (GAGGAA). An allele containing an uninterrupted run of 34 GAA triplets was stably transmitted in four instances, but in one case underwent hyperexpansion to 650 triplets. Overall, our results suggest that the FRDA-associated expanded GAA repeats originate from normal alleles by recurrent expansions of alleles at risk.

Alleles↗

Roles of the hydrophobic triplet in the motor domain of myosin in the interaction between myosin and actin.

Myosin is a molecular motor and a member of a protein family comprising at least 18 classes. There is an about 1,000-fold difference in the in vitro sliding velocity between the fastest myosin and the slowest one. Previous studies revealed that the hydrophobic triplet in the motor domain (Val534, Phe535, and Pro536 in Dictyostelium myosin) is important for the strong binding of myosin to actin. We studied the role of the triplet in the sliding motion of myosin by means of site directed mutagenesis because the sliding velocity is determined by the time that myosin interacts with actin strongly. We produced mutant Dictyostelium myosins and subfragment-1s that have the triplet sequences of various classes of myosin with different sliding velocities. The V(max) and K(actin) values of the actin-activated ATPase for all these mutant subfragment-1s were lower than those of the wild-type Dictyostelium myosin. The mutant myosins exhibited much lower sliding velocities than the wild type. The time that the mutant subfragment-1s are in the strongly bound state did not correlate well with the sliding velocity. Our results suggested that (i) the hydrophobic triplet alone does not determine the sliding velocity of myosin, (ii) the size of the amino acid side chain in the triplet is crucial for the ATPase activity and the motility of myosin, and (iii) the hydrophobic triplet is important not only for strong binding to actin but also for the structural change of the myosin motor domain during the power stroke.

Actins↗

The influence of single base triplet changes on the stability of a pur.pur.pyr triple helix determined by affinity cleaving.

The influence of sixteen base triplet changes at a single position within a pur.pur.pyr triple helix was examined by affinity cleaving. For the 15 base pair target site studied here, G.GC, A.AT and T.AT triplets stabilize a triple helix to a greater extent than the other 13 natural triplets (pH = 7.4, 25 degrees C). Weaker interactions were detected for the C.AT, A.GC and T.CG triplets. The absence of specific, highly stabilizing interactions between third strand bases and the CG or TA base pairs demonstrates a current sequence limitation to formation of this structure. Models for the two dimensional base triplet interactions for all possible 16 natural triplets are presented.

Base Sequence↗

Formation of DNA triple helices incorporating blocks of G.GC and T.AT triplets using short acridine-linked oligonucleotides.

We have used DNase I footprinting to assess triple helix formation at target sites containing the sequences A6G6.C6T6 and G6A6.T6C6. These sequences can be recognized by the acridine-linked oligopyrimidines Acr-T5C5 and Acr-C5T5 respectively at low pH, using well-characterised T.AT and C+.GC triplets. At pH 7.5 A6G6.C6T6 is specifically bound by Acr-G5T5, utilising G.GC and T.AT triplets in which the third strand runs antiparallel to the purine strand of the duplex. This interaction requires the presence of magnesium ions. No interaction was detected with Acr-T5G5, an oligonucleotide designed to form parallel G.GC and T.AT triplets. In contrast neither Acr-T5G5 nor Acr-G5T5 produced DNase I footprints with the target sequence G6A6.T6C6. These results suggest that, in an antiparallel R.RY triple helix, the T.AT triplet is weaker than the G.GC triplet. We find no evidence for the formation of structures containing parallel G.GC triplets.

Acridines↗

Comparison of antiparallel A.AT and T.AT triplets within an alternate strand DNA triple helix.

We have examined the formation of alternate strand triple-helices at the target sequence A11(TC)6.(GA)6T11 using the oligonucleotides T11(AG)6 and T11(TG)6, by DNase I footprinting. These third strands were designed so as to form parallel T.AT triplets together with antiparallel G.GC and A.AT or T.AT triplets. We find that, although both oligonucleotides yield clear footprints at similar concentrations (0.3 microM) in the presence of manganese, only T11(TG)6 forms a stable complex in magnesium-containing buffers, albeit at a higher concentration (10-30 microM). Examination of the interaction of (AG)6 and (TG)6 with half the target site confirmed that the complex containing A.AT triplets was only stable in the presence of manganese. In contrast no binding of (TG)6 was detected in the presence of either metal ion, suggesting that the reverse-Hoogsteen T.AT triplet is less stable that G.GC. We suggest that, within the context of G.GC triplets, the rank order of antiparallel triplet stability is A.AT (Mn2+) > T.AT (Mn2+) > T.AT (Mg2+) > A.AT (Mg2+). Third strands containing a single base substitution in the centre of either the parallel or antiparallel portion showed a (10-fold) weaker interaction in manganese-containing buffers, and no interaction in the presence of magnesium.

Base Composition↗

Thermodynamic and kinetic stability of intermolecular triple helices containing different proportions of C+*GC and T*AT triplets.

We have used oligonucleotides containing appropriately placed fluorophores and quenchers to measure the stability of 15mer intermolecular triplexes with third strands consisting of repeats of TTT, TTC, TCC and TCTC. In the presence of 200 mM sodium (pH 5.0) triplexes that contain only T.AT triplets are unstable and melt below 30 degrees C. In contrast, triplets with repeats of TTC, TCC and CTCT melt at 67, 72 and 76 degrees C, respectively. The most stable complex is generated by the sequence containing alternating C+*GC and T*AT triplets. All four triplexes are stabilised by increasing the ionic strength or by the addition of magnesium, although triplexes with a higher proportion of C+*GC triplets are much less sensitive to changes in the ionic conditions. The enthalpies of formation of these triplexes were estimated by examining the concentration dependence of the melting profiles and show that, in the presence of 200 mM sodium at pH 5.0, each C+*GC triplet contributes about 30 kJ x mol(-1), while each T*AT contributes only 11 kJ x mol(-1). Kinetic experiments with these oligonucleotides show that in 200 mM sodium (pH 5.0) repeats of TCC and TTC have half-lives of approximately 20 min, while the triplex with alternating C+*GC and T.AT triplets has a half-life of approximately 3 days. In contrast, the dissociation kinetics of the triplex containing only T*AT are too fast to measure.

Base Sequence↗

Chromatin structure of yeast minichromosomes containing triplet repeat sequences associated with human hereditary neurological diseases.

Expansion of triplet repeat sequences such as (CTG)n, (CGG)n, and (GAA)n causes human genetic diseases. Since DNA is packaged into arrays of nucleosomes in eukaryotic cells, chromatin may be involved in the mechanism of triplet repeat diseases. To elucidate this issue, we have examined effects of triplet repeat sequences on the chromatin organization in vivo using well defined yeast minichromosomes. We show here that (CGG)12 disrupts an array of positioned nucleosomes, whereas (CTG)12 promotes the nucleosome formation. Thus, triplet repeat sequences can affect the chromatin organization in vivo, which may contribute to the triplet repeat expansion or alterations in the expression of genes associated with triplet repeat diseases.

Chromosomes, Fungal↗

HLAmatchmaker: a molecularly based algorithm for histocompatibility determination. III. Effect of matching at the HLA-A,B amino acid triplet level on kidney transplant survival.

BACKGROUND: HLAMatchmaker is a recently developed computer-based algorithm to determine donor-recipient HLA compatibility at the molecular level. Originally designed for highly alloimmunized patients, this algorithm is based on the concept that immunogenic epitopes are represented by amino acid triplets on exposed parts of protein sequences of HLA-A, -B, and -C chains accessible to alloantibodies. Donor HLA compatibility is determined by intralocus and interlocus comparisons of triplets in polymorphic sequence positions. For most patients, HLAMatchmaker can identify certain mismatched HLA antigens that are zero-triplet mismatches to the patient's HLA phenotype and should, therefore, be considered fully histocompatible. The present study was designed to determine how class I HLA matching at the triplet level affects kidney transplant outcome. METHODS: We analyzed two multicenter databases of zero-HLA-DR-mismatched kidneys transplanted from 1987 to 1999. One database consisted of 31,879 primary allografts registered by U.S. transplant centers in the United Network for Organ Sharing database and the other consisted of 15,872 transplants in the Eurotransplant program. RESULTS: HLA-A,B mismatched kidneys that were compatible at the triplet level exhibited almost identical graft survival rates as the zero-HLA-A,B antigen mismatches defined by conventional criteria. This beneficial effect of triplet matching was seen for both nonsensitized and sensitized patients and also for white and nonwhite patients. CONCLUSIONS: These findings suggest that the application of HLAMatchmaker will increase the number of successful transplants, at least in the HLA-DR match combinations.

Algorithms↗

Beneficial effect of matching at the HLA-A and -B amino-acid triplet level on rejection-free clear graft survival in penetrating keratoplasty.

OBJECTIVE: The beneficial effect of human leukocyte antigen (HLA) matching on long-term prognosis in penetrating keratoplasty is now unequivocal but has to be weighed against the additional waiting period on an individual basis. HLAMatchmaker is a molecularly based algorithm for histocompatibility determination that can identify immunologically acceptable mismatches and thus potentially reduce time on the waiting list dramatically without negatively affecting prognosis. METHODS: The HLAMatchmaker algorithm (triplet-string matching) was applied on each of 545 normal-risk keratoplasties for which complete HLA type was known at split-level resolution. Two homogeneous groups were defined. Group I consisted of the 147 penetrating keratoplasties with up to 13 triplet-string mismatches (the typical upper limit of foreign in case of a single HLA-A or HLA-B allele mismatch) and was compared to the remaining 398 patients with more triplet mismatches (group II) using the Kaplan-Meier method and log-rank statistics. Analysis of clear graft survival on the basis of conventional HLA-A and HLA-B matching was performed as well. Reduction of time on the waiting list as compared to conventional HLA-A and HLA-B matching was predicted individually. RESULTS: Triplet-string matching yielded 85% rejection-free clear graft survival 3 years after penetrating keratoplasty in group I but only 76% in group II (P<0.05), whereas conventional HLA-A and HLA-B matching did not result in any statistically significant reduction of immune reactions because of lack of statistical power (P=0.08). Triplet-string matching (13 mismatches accepted) reduces median time on the waiting list by 80%. CONCLUSIONS: Triplet-string matching seems to improve mid- to long-term prognosis in penetrating keratoplasties while simultaneously reducing time on the waiting list in most cases. It should thus be considered for histocompatibility determination in penetrating keratoplasty.

Aged↗

The number of amino acid triplet differences between patient and donor is predictive for the antibody reactivity against mismatched human leukocyte antigens.

BACKGROUND: The correlation between antibody production against mismatched donor human leukocyte antigens (HLA) and the number of amino acid sequence mismatches was analyzed in patients who rejected a kidney transplant (n=146). METHODS: A similar analysis was performed for the antibody production of women against the paternal HLA antigens of their child (n=1,397). The amino acid sequence (triplet) differences were analyzed using the HLAMatchmaker algorithm. RESULTS: In both groups, a positive correlation was found between the number of triplet mismatches and the percentage of individuals producing antibodies (P <0.0001). If zero triplet mismatches were present, no antibodies were formed in all cases. When 11 or 12 triplet mismatches were present, 94% of the transplant patients produced antibodies against the donor. In pregnancy, 11 or 12 triplet mismatches led to 27% of the women producing specific antibodies. CONCLUSIONS: These results indicate that the immunogenicity of the fetus is lower than that of a rejected kidney and that analysis of the number of triplet mismatches can predict the antibody reactivity against the mismatched HLA antigens.

Amino Acid Sequence↗

Application of known triplet phases in the crystallographic study of bovine pancreatic trypsin inhibitor. I: studies at 1.55 and 1.75 a resolution.

The structure of bovine pancreatic trypsin inhibitor could be re-determined both with data at 1.55 and 1.75 A resolution using direct methods strengthened by the application of about 90 and 130 triplet phases, respectively, assumed known with a mean error of +/-20 degrees. From the known triplets a similar number of single phases were derived and used as starting values, thereby reducing or eliminating the need for permuting reflections in the starting set. The known triplets provide better estimates for the mean direction parameters in the corresponding Cochran distributions. This improvement is crucial for obtaining a structure solution. Single phases derived from these triplets could be combined to yield a larger set of triplets which forms the basis for a new figure of merit (FOM). The new FOM appears superior to the conventional ones for initial selection of the best phase model, and can also be used for assessing the correctness of structure expansion if the number of triplet phase relationships is sufficient.

Journal Article↗

The anaerobic photolysis of lens alpha-crystallin: evidence for triplet state mediated photodamage.

Anaerobic solutions of lens alpha-crystallin were subjected to near-UV (greater than 295 nm) irradiation, and the photoproducts were analyzed by fluorescence and room-temperature phosphorescence spectroscopy. The principal photoproduct was excited maximally at 340 nm, fluoresced maximally at 430 nm, and phosphoresced with an emission maximum at 510 nm. The phosphorescence intensity decay of this species was well fit by a sum of two exponentials with lifetimes of 9.2 ms (78%) and 61 ms (22%); this report is the first demonstration of a long-lived triplet state associated with a protein photolysis product. As reported previously, 3trp* is also long-lived in deoxygenated alpha-crystallin solution at room-temperature (Berger and Vanderkooi, 1989, Biochemistry 28, 5501-5508), hence both tryptophan and photoproduct triplet states are good candidates to mediate photodamage. Photolysis experiments in the presence of agents known to alter the tryptophan triplet yield provide evidence for the importance of triplet-state-mediated photodamage of lens crystallins in anaerobic solution. In 30 mM acrylamide where 3trp*, but not 1trp*, is efficiently quenched, anaerobic solutions exhibited marked resistance to protein photodamage, whereas the photoprotection in aerobic solution was minimal. In D2O, where photoionization is suppressed but triplet states are longer-lived, photodamage was accelerated in anaerobic solution but reduced in aerobic solutions. Finally, the anaerobic photodestruction rate was increased in 500 mM Cs+ solution where the triplet yield is increased by a heavy atom effect.

Anaerobiosis↗

The photophysics of monomeric bacteriochlorophylls c and d and their derivatives: properties of the triplet state and singlet oxygen photogeneration and quenching.

Measurements of pigment triplet-triplet absorption, pigment phosphorescence and photosensitized singlet oxygen luminescence were carried out on solutions containing monomeric bacteriochlorophylls (Bchl) c and d, isolated from green photosynthetic bacteria, and their magnesium-free and farnesyl-free analogs. The energies of the pigment triplet states fell in the range 1.29-1.34 eV. The triplet lifetimes in aerobic solutions were 200-250 ns; they increased to 280 +/- 70 microseconds after nitrogen purging in liquid solutions and to 0.7-2.1 ms in a solid matrix at ambient or liquid nitrogen temperatures. Rate constants for quenching of the pigment triplet state by oxygen were (2.0-2.5) x 10(9) M-1 s-1, which is close to 1/9 of the rate constant for diffusion-controlled reactions. This quenching was accompanied by singlet oxygen formation. The quantum yields for the triplet state formation and singlet oxygen production were 55-75% in air-saturated solutions. Singlet oxygen quenching by ground-state pigment molecules was observed. Quenching was the most efficient for magnesium-containing pigments, kq = (0.31-1.2) x 10(9) M-1 s-1. It is caused mainly by a physical process of singlet oxygen (1O2) deactivation. Thus, Bchl c and d and their derivatives, as well as chlorophyll and Bchl a, combine a high efficiency of singlet oxygen production with the ability to protect photochemical and photobiological systems against damage by singlet oxygen.

Bacteria↗

Breastfeeding rates among singletons, twins and triplets in Japan: A population-based study.

This study was performed to determine the rates of breastfeeding among singletons, twins and triplets in Japan, and identify factors associated with the decision to breastfeed or bottle-feed. We analyzed a database of medical check-up of infants aged 3 to 6 months between April 2001 and July 2004 in Nishinomiya City in Japan. This medical check-up is given to almost 100% of infants in Japan and the data of 15,262 infants were analyzed. Among these, 14,963 (98.0%) were singletons, 290 (1.9%) were twins and 9 (0.1%) were triplets. Exclusive breast-feeding was chosen by 6680 (43.8%) mothers, mixed-feeding by 4645 (30.4%) mothers, and bottle-feeding with formula milk only by 3900 (25.6%) mothers. The rate of exclusive breastfeeding among twins or triplets was significantly lower than among singleton babies: 4.1% among twins or triplets, and 44.7% among singletons. Moreover, twins and triplets were independently associated with a higher rate of bottle-feeding: the odds ratio indicated that mothers who had twins or triplets were 2.44 times more likely to choose bottle-feeding with formula milk only than those who had singletons. Sucking ability at birth was associated with a higher rate of bottle-feeding: the odds ratio indicated that mothers who had infants with poor sucking ability at birth were 1.56 times more likely to choose bottle-feeding as those who had infants with normal sucking ability.

Breast Feeding↗

Triply discordant triplets: probability, management options, and risks.

The spontaneous occurrence of triplets is rare. With increased utilization of "assisted reproductive technologies," multifetal gestations have become more common. The empiric fetal risk for major malformation is approximately 3%. In a triplet pregnancy each fetus independently carries this risk so that the probability of having at least one malformed fetus is approximately 9%. It is much less likely to have 2 or 3 simultaneously but discordantly malformed fetuses in a multizygotic triplet gestation (.09% and .0027% risk, respectively). We report on the first case, to our knowledge, of an ovulation-stimulated triplet pregnancy complicated by 3-way discordance for major malformations diagnosed in the late second trimester by ultrasound. Fetus A was affected by congenital diaphragmatic hernia and trisomy 21; fetus B had encephalocele, a midline facial defect, and a cleft palate; and fetus C had evidence of unilateral claw hand but an otherwise normal fetal survey. At 19 weeks of gestation, fetus A was found to have spontaneously died, and a selective termination of triplet B was performed. We conclude: (1) the finding of a single major malformation in one fetus should lead to extensive search for malformations in all members of the pregnancy, and (2) the simultaneous occurrence of major malformations in more than one member of a multifetal gestation is a circumstance under which multiple selective termination deserves consideration. In this article we discuss important issues and caveats in the performance of selective termination for abnormal members of multifetal gestations.

Abnormalities, Multiple↗

Conjoined twins in a monozygotic triplet pregnancy: prenatal diagnosis and X-inactivation.

BACKGROUND: The etiology of monozygotic twinning is not known. Some investigators have implicated abnormal X-inactivation, which could also be related to the increased female:male ratio in higher order multiple gestations in general, and in monozygotic and conjoined twins (CTS) in particular. CTS are rare, and even more unusual when part of a triplet pregnancy. METHODS: DNA polymorphism analysis using 13 markers in the buccal cells of the triplets and the lymphocytes of the parents were used to evaluate zygosity. We investigated the X-inactivation pattern of the triplets by analyzing methylation at the androgen receptor gene. RESULTS: We found a female triplet gestation consisting of CTS and a normal singleton. The thoracopagus CTS were joined from the clavicles to the umbilicus. Congenital heart disease was suspected antenatally, but the precise delineation of the heart defects required extensive postnatal evaluation. There was a single placental mass with a thin dividing membrane. Cesarean section was carried out at 32 weeks after the onset of labor. Histologically, the placenta was diamniotic monochorionic. The normal singleton did well after delivery; the CTS died at 35 days from cardiopulmonary collapse. The babies were monozygotic (>99.99% probability). Each baby in this triplet set exhibited a random and symmetric X-inactivation pattern. The degree of X-inactivation skewing fell in the range of 50-65%. CONCLUSION: Genetic or environmental factors other than abnormal X-inactivation must be involved in causing monozygous multiple gestation or CTS. Despite prenatal diagnosis, shared myocardium or cardiac anomalies in CTS often determine the prognosis.

Dosage Compensation, Genetic↗

Further studies on a male monozygotic triplet with schizophrenia: cytogenetical and neurobiological assessments in the patients and their parents.

We previously described a Swedish set of male schizophrenic monozygotic triplets. In this study the patients as well as their parents were further characterized. By high-resolution chromosomal analysis an extra band at chromosome 15p was found in all the triplets and the father. Microdissection, degenerate oligonucleotide-primed PCR (DOP-PCR) amplification and reverse painting indicates that the extra band probably contains only repetitive DNA sequences with no known effect on the phenotype. Magnetic resonance imaging (MRI) showed similar borderline ventricular enlargement and widened subarachnoid spaces over frontoparietal and basal regions as well as around the pituitary gland (empty sella) in all the triplets. The father also had widened subarachnoid spaces over the frontal and basal regions. The mother had an empty sella indicating widened subarachnoid spaces. All the boys also had a right-sided conductive hearing defect, probably due to malformation and fixation of the ossicular chain. The parents did not present any otological abnormalities. Neuropsychological assessment demonstrated similar marked reductions of attentional, mnestic, and executive functions in all the triplets, but the mother showed a normal pattern. Possible joint etiological mechanisms for the psychological and somatic abnormalities recorded in the triplets are discussed.

Adult↗