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M V Frolov

Publications and source records attributed to M V Frolov.

At least 19 recordsLinked to original sources

Model-independent quantum approach for intense laser detachment of a weakly bound electron.

We present a model-independent theory for laser detachment of a weakly bound electron having a nonzero angular momentum. Our treatment reduces to the well-known Keldysh result for tunnel ionization upon neglecting rescattering effects. Numerical results for the above-threshold detachment spectrum of a negative ion having an outer p electron show significant modification of the rescattering plateau as compared to that for an ion having an outer s electron.

Journal Article↗

Threshold-related enhancement of the high-energy plateau in above-threshold detachment.

We present nonperturbative theoretical results showing a resonant-like enhancement of above-threshold detachment spectra in the region of the high-energy plateau as the laser intensity sweeps across channel thresholds. This enhancement has a pure quantum origin stemming from well-known threshold phenomena in multichannel problems whose features are clearly demonstrated in our numerical results. Similar well-known anomalies at neutral atom thresholds are expected to explain experimentally observed resonant-like enhancements of above-threshold ionization spectra.

Journal Article↗

Functional antagonism between E2F family members.

E2F is a heterogenous transcription factor and its role in cell cycle control results from the integrated activities of many different E2F family members. Unlike mammalian cells, that have a large number of E2F-related genes, the Drosophila genome encodes just two E2F genes, de2f1 and de2f2. Here we show that de2f1 and de2f2 provide different elements of E2F regulation and that they have opposing functions during Drosophila development. dE2F1 and dE2F2 both heterodimerize with dDP and bind to the promoters of E2F-regulated genes in vivo. dE2F1 is a potent activator of transcription, and the loss of de2f1 results in the reduced expression of E2F-regulated genes. In contrast, dE2F2 represses the transcription of E2F reporters and the loss of de2f2 function results in increased and expanded patterns of gene expression. The loss of de2f1 function has previously been reported to compromise cell proliferation. de2f1 mutant embryos have reduced expression of E2F-regulated genes, low levels of DNA synthesis, and hatch to give slow-growing larvae. We find that these defects are due in large part to the unchecked activity of dE2F2, since they can be suppressed by mutation of de2f2. Examination of eye discs from de2f1; de2f2 double-mutant animals reveals that relatively normal patterns of DNA synthesis can occur in the absence of both E2F proteins. This study shows how repressor and activator E2Fs are used to pattern transcription and how the net effect of E2F on cell proliferation results from the interplay between two types of E2F complexes that have antagonistic functions.

Alleles↗

Molecular analysis of a novel Drosophila diacylglycerol kinase, DGKepsilon.

Diacylglycerol kinase plays a central role in the metabolism of diacylglycerol by converting diacylglycerol into phosphatidic acid thus initiating resynthesis of phosphatidylinositols. Diacylglycerol is a known second messenger reversibly activating protein kinase C. In addition, diacylglycerol is a potential precursor for polyunsaturated fatty acids. We describe the identification and molecular analysis of a novel type III Drosophila diacylglycerol kinase isoform, DGKepsilon. Drosophila DGKepsilon is mapped to the cytological position 49C1-3. DGKepsilon mRNA is 1.9 kb in length and is broadly distributed throughout development in different cells, primordia and organs, including testes. In embryogenesis, the transcripts are enriched in the cells, which are in S-phase or undergoing endoreplication. Comparison of the Drosophila DGKepsilon with the human homologue revealed that the first zinc finger-like motif is specific for the type III isoform. Although the testis-specific diacylglycerol kinase activity is dependent upon the dose of DGKepsilon gene, the deletion of DGKepsilon does not modulate the total cellular diacylglycerol level. In spite of a proposed key role of diacylglycerol kinase in termination of the diacylglycerol signal, overexpression of a DGKepsilon transgene in flies under the control of a yeast upstream activating sequence promoter does not disrupt normal development in Drosophila.

Amino Acid Sequence↗

Molecular analysis of novel Drosophila gene, Gap69C, encoding a homolog of ADP-ribosylation factor GTPase-activating protein.

Adenosine diphosphate-ribosylation factor, ARF1, regulates membrane traffic and structure in the endoplasmic reticulum-Golgi and endosomal systems. The ARF activity, in turn, is regulated by the guanine nucleotide exchange factors and GTPase-activating proteins (GAPs). We have cloned by transposon tagging a novel Drosophila gene, Gap69C, coding for a putative homolog of ARF1 GTPase-activating protein. The GAP69C protein shares an extensive similarity within its N-terminal zinc-finger domain with the rat and yeast homologs. This domain is known to be required for ARF-GAP activity. The Gap69C is a single-copy gene producing a major 2.1-kb mRNA throughout development, but its amount is decreased in larvae. The eye pigmentation produced by the reporter mini-white gene inserted into the 5' UTR of Gap69C suggests that the expression of Gap69C is nonuniform. In situ hybridization revealed a high level of Gap69C transcripts in the morphogenetic furrow of the eye imaginal disc, where cells are arrested in G(1). Generated by the excision of the P-element, the null allele of Gap69C was found to be viable and fertile and showed no apparent abnormal phenotype, indicating that Gap69C is not essential for fly development. Analysis of the Drosophila genome sequence revealed the presence of other genes related to Gap69C. We propose that the absence of a distinctive phenotype in Gap69C null mutants is attributable to redundancy with other homologs.

ADP-Ribosylation Factors↗

Krüppel homolog (Kr h) is a dosage-dependent modifier of gene expression in Drosophila.

A lethal mutation in the Krüppel homolog (Kr h) was isolated in screens of P-element insertion mutations for modifiers of white gene expression. The mutation occurs in the 5' untranslated region of the Kr h gene and causes a lightening of the eye colour for several alleles of white due to a decrease in white steady-state mRNA levels at pupal stages. Two related genes, scarlet and brown, were significantly affected as well in early pupae. Genetic analysis of different white alleles suggests that enhancer sequences are necessary for interaction with KR H. Thus, the Kr h gene is a member of the dosage-dependent hierarchy effective upon white.

ATP-Binding Cassette Transporters↗

The oxen gene of Drosophila encodes a homolog of subunit 9 of yeast ubiquinol-cytochrome c oxidoreductase complex: evidence for modulation of gene expression in response to mitochondrial activity.

A P-element insertion in the oxen gene, ox(1), has been isolated in a search for modifiers of white gene expression. The mutation preferentially exerts a negative dosage effect upon the expression of three genes encoding ABC transporters involved in pigment precursor transport, white, brown, and scarlet. A precise excision of the P element reverts the mutant phenotype. Five different transcription units were identified around the insertion site. To distinguish a transcript responsible for the mutant phenotype, a set of deletions within the oxen region was generated. Analysis of gene expression within the oxen region in the case of deletions as well as generation of transgenic flies allowed us to identify the transcript responsible for oxen function. It encodes a 6.6-kD homolog of mitochondrial ubiquinol cytochrome c oxidoreductase (QCR9), subunit 9 of the bc(1) complex in yeast. In addition to white, brown, and scarlet, oxen regulates the expression of three of seven tested genes. Thus, our data provide additional evidence for a cellular response to changes in mitochondrial function. The oxen mutation provides a model for the genetic analysis in multicellular organisms of the effect of mitochondrial activity on nuclear gene expression.

ATP-Binding Cassette Transporters↗

[Information technology of diagnostics of the operator's functional status].

Consideration has been given to the theoretical and applied aspects of regulation of the operator's functional state and its impact on work quality from the standpoint of preparation for and implementation of space mission. Determinations of the reflectory and regulatory functions of the operator's state are given and the neurophysiological mechanism of the latter is characterized. Analyzed were fresh methods of controlling the states of healthy persons and patients subjected to psychogenic depression via remote monitoring of voice, motor activity, etc., and recording of electrical indices (EEG, autonomous functions, etc.). Peculiarities of modifications of errors made by human subjects in identification of masked visual images within the "fatigue--negative emotions" range were investigated.

Affect↗

[Insertion of transposon P(lacW) with gradual expression of reporter genes].

In Drosophila, insertions of the P¿lacW¿ transposon led to uncommon expression patterns of the reporter genes white and lacZ: gene activity was gradually reduced in the neighboring cells along the dorsal-ventral or proximal-distal axes. Using in situ hybridization, the gradual gene expression was shown to be caused by P¿lacW¿ insertions in regions 40A (lines G1 and G2) and 69C (line G3) of the Drosophila genome. The expression patterns of genes lacZ and white were similar in eye cells of each line. In salivary gland polytene cells of G3 flies, the lacZ expression was also gradually reduced, which indicates the existence of a mechanism maintaining the gene activity gradient during endomitosis.

Animals↗

[Diagnosis of healthy and depressed patients based on their speech patterns].

Analysis of the speech signal allowed to propose methods for quantitative diagnosis of patients with psychogenic depression with overwhelming melancholy and anxiety, and the functional state of essentially healthy professional operators. The methods are based on evaluation of intonation, motor and ideational speech parameters. They were successfully demonstrated in a psychiatric clinic and during fulfillment of jobs by operators.

Depressive Disorder↗

[The characteristics of operator activity in a sensorially enriched environment].

The mechanism of Ukhtomskiĭ's dominant was used to improve operator's performance activity. Recognition of visual images--obscured Arabic numerals--in a sensorially rich environment (classic or rock music records) turned to be more successful: time of the task was reduced and the probability of correct identification increased. A reverse U-shaped dependence between the intensity of music and identification was stated. Repetition of music fragments at a constant value marred the positive effect.

Environment, Controlled↗

The sugarless mutation affects the expression of the white eye color gene in Drosophila melanogaster.

Investigation of a modifier locus displaying a darker eye phenotype in white-apricot flies led to the isolation of the gene encoding UDP-glucose dehydrogenase (UDPGDH). The P-element insertion l(3)05007 occurs upstream of the transcription start site of the sugarless (sgl) gene and greatly reduces its transcription at various developmental stages. A single abundant sgl transcript shows a ubiquitous distribution and encodes a 53-kDa protein which is 64% identical in sequence to bovine UDP-glucose dehydrogenase. Overexpression of sgl in E. coli resulted in synthesis of a protein with high levels of UDPGDH activity. Expression of three genes that participate in pigment deposition, white, scarlet and brown, was significantly affected in populations segregating for sgl, suggesting that it is the decrease in UDPGDH level that produces the modifying effect observed. In addition, genetic effects on white-apricot were observed in sgl-wingless and sgl-hedgehog double mutants. Recent data have indicated an effect of UDPGDH on cell surface glycosaminoglycans (GAGs) which modulate the activity of growth factors, and in particular wingless signaling. Our results suggest that the levels of GAGs are rate limiting for cell-cell signaling pathways which mediate changes in gene expression.

ATP-Binding Cassette Transporters↗

Regena (Rga), a Drosophila homolog of the global negative transcriptional regulator CDC36 (NOT2) from yeast, modifies gene expression and suppresses position effect variegation.

A mutation in Regena (Rga) was isolated in screens for modifiers of white eye color gene expression. The reduction in the level of the Rga product results in a complex modulation of white mRNA both positively and negatively, depending on the developmental stage. In addition to white, Rga also affects the expression of several other tested genes, with one of them, Vinculin, being regulated in a strong sex-specific manner. Rga was cloned by transposon tagging. Its predicted product lacks any recognized nucleic acid-binding motif but is homologous to a global negative transcriptional regulator, CDC36 (NOT2), from yeast. Rga also acts as a suppressor of position effect variegation, suggesting that a possible function of Rga could be mediation of an interaction between chromatin proteins and the transcriptional complex.

Amino Acid Sequence↗

Mutation in P0, a dual function ribosomal protein/apurinic/apyrimidinic endonuclease, modifies gene expression and position effect variegation in Drosophila.

In a search for modifiers of gene expression with the white eye color gene as a target, a third chromosomal P-element insertion mutant l(3)01544 has been identified that exhibits a strong pigment increase in a white-apricot background. Molecular analysis shows that the P-element insertion is found in the first intron of the gene surrounding the insertion site. Sequencing both the cDNA and genomic fragments revealed that the identified gene is identical to one encoding ribosomal protein P0/apurinic/apyrimidinic endonuclease. The P-element-induced mutation, l(3)01544, affects the steady-state level of white transcripts and transcripts of some other genes. In addition, l(3)01544 suppresses the variegated phenotypes of In(1)wm4h and In(1)y3P, suggesting a potential involvement of the P0 protein in modifying position effect variegation. The revertant generated by the precise excision of the P element has lost all mutant phenotypes. Recent work revealed that Drosophila ribosomal protein P0 contains an apurinic/apyrimidinic endonuclease activity. Our results suggest that this multifunctional protein is also involved in regulation of gene expression in Drosophila.

Alleles↗

Vinculin gene is non-essential in Drosophila melanogaster.

Vinculin is thought to be an important cytoskeletal protein in the linkage between actin cytoskeleton and integrin transmembrane receptors. We identified Vinculin (Vinc) gene in the X chromosome of D. melanogaster. Drosophila vinculin is highly homologous in its N- and C-terminal domains both to mammalian and nematode vinculins, and contains internal repeats and proline-rich region typical for vinculins. The X chromosome rearrangement In(1LR)pn2a was found to disrupt Vinc so that the coding sequence is interrupted by the (AAGAG)n satellite DNA. Northern analysis revealed that the Vinc transcript is completely absent in the In(1LR)pn2a homozygous flies. Surprisingly, these Vinc flies are viable and fertile. This finding highlights plasticity and adaptive capacity of cellular cytoskeletal and anchorage system.

Amino Acid Sequence↗

The mRNA product of the Drosophila gene prune is spliced and encodes a protein containing a putative transmembrane domain.

A full-length 1.8 kb cDNA of the Drosophila melanogaster gene prune together with the corresponding genomic sequence was cloned and sequenced. Comparison of the two sequences revealed the existence of the intron in the prune primary transcript. The putative prune protein is likely to have a single transmembrane domain. The nature of several prune mutant alleles was analysed: the size and quantity of prune mRNA were found to be decreased in pn1 and pn3 mutations. Mutations pn1 and pn54c were shown to be accompanied by insertions of the same novel mobile repeated element.

Amino Acid Sequence↗