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H Kühnel

Publications and source records attributed to H Kühnel.

12 recordsLinked to original sources

HIV-1 strains from India are highly divergent from prototypic African and US/European strains, but are linked to a South African isolate.

OBJECTIVE: To gain molecular insights into different HIV-1 strains present in two different states of India, nucleotide sequences derived from the env region of four HIV-1 strains were analysed. DESIGN: HIV-1 was isolated from high-risk patients from the states of Maharashtra (city of Bombay) and Goa. The molecular analysis of the env region encompassed all variable domains of the external glycoprotein, gp120. METHODS: Genomic DNA from cultured cells infected with each of the four Indian HIV-1 strains independently was amplified by polymerase chain reaction (PCR). PCR fragments were cloned and sequenced and a phylogenetic tree constructed. RESULTS: All four Indian HIV-1 sequences were closely related to each other. The closest related sequence to them was from a South African isolate, HIV-1NOF, with a homology of 85-87%. In the phylogenetic tree, the Indian and the South African HIV-1 sequences cluster together and constitute a subtype different from the North American/European, Central African, Uganda/Rwanda and Northern Thailand subtypes. Interestingly, the viruses of this subtype are characterized by an additional potential N-glycosylation site C-terminal to the CD4-binding domain. CONCLUSION: The low variation between the HIV-1 sequences from randomly chosen individuals from high-risk cohorts in two Indian states suggests a rapid and recent spread of HIV and, possibly, introduction of the virus by the same route, most probably heterosexual transmission. The rapid spread of HIV-1 variants in India, which form a subgroup of their own together with a South African strain, necessitate consideration of these strains in vaccine development.

Africa↗

A strong protein-tyrosine kinase activity is associated with a baculovirus-expressed chicken tkl gene.

We have previously described a gene named tkl (tyrosine kinase related to lck). It belongs to the src family of protein-tyrosine kinases and among these it has significant homology to the lck gene (lymphoide cell kinase). The tkl gene product may represent the avian homolog of Lck, which is believed to participate in a lymphocyte-specific signal transduction pathway by association with a membrane receptor. To study the biochemical properties of the protein, a nearly complete tkl gene (isolated from a cDNA library from chicken spleen cells) was expressed in a baculovirus system. Approximately 10% of the extracted protein consisted of the soluble 51-kDa Tkl protein (p51tkl) at 40 h post-infection. This protein was found to be phosphorylated on tyrosine and serine residues at a ratio of 5:1. As expected, glycosylation or myristoylation could not be detected. Immunocomplex kinase assays indicated strong autophosphorylation of p51tkl at tyrosine residues and phosphorylation of exogenous substrates such as D-glyceraldehyde-3-phosphate dehydrogenase (GAPDH), histones H2b and H4, and casein. This protein-tyrosine kinase activity also exhibited a marked preference for Mn2+ compared to Mg2+. The high level expression of enzymatically active Tkl should provide an excellent tool to further study the biological functions of this class of enzymes.

Amino Acids↗

Analysis of the envelope region of the highly divergent HIV-2ALT isolate extends the known range of variability within the primate immunodeficiency viruses.

HIV-2ALT is a highly divergent HIV-2-related isolate that is genetically equidistant to the prototypic HIV-2 strains, defined by HIV-2ROD, and to the simian immunodeficiency viruses SIVmac and SIVsm. We have now cloned and sequenced the envelope region of HIV-2ALT, thus completing the analysis of the whole viral genome. The sequences of env and nef and of the second exons of tat and rev were compared with those of the other viruses of the HIV-2/SIVsm/SIVmac group. Despite of the high degree of variation of HIV-2ALT, functional domains of the genes are conserved. Although in env, the overall pattern of constant and variable domains is maintained, many single amino acid exchanges exist at positions previously thought to be constant in HIV-2 strains. In addition, when compared with a broader spectrum of immunodeficiency viruses, which includes SIVMND from mandrill and SIVAGM from African green monkey, HIV-2ALT Env has a high percentage of amino acid exchanges, which are unique to this strain. This underlines the separate branch of HIV-2ALT within the phylogenetic tree and makes obvious the inclusion of such divergent strains in preventive and therapeutic programs.

Amino Acid Sequence↗

Expression of the heterodimeric form of human immunodeficiency virus type 2 reverse transcriptase in Escherichia coli and characterization of the enzyme.

A system for the expression of recombinant human immunodeficiency virus type 2 (HIV-2) reverse transcriptase (RT) in Escherichia coli has been developed, which allows purification of the heterodimeric form of the enzyme as well as the separate purification of the two subunits. It is shown that equilibrium formation between monomeric and homodimeric forms of the recombinant 66- and 51-kDa subunits is considerably more rapid than in the case of the corresponding homodimeric forms of HIV-1 RT. In accordance with our previously published studies on HIV-1 RT (Restle, T., Müller, B., and Goody, R.S. (1990) J. Biol. Chem. 265, 8986-8988) RNA-dependent DNA polymerase activity of the HIV-2 RT preparations can be exactly correlated to their dimer content. No significant heterodimer formation can be observed upon coexpression of the 66-kDa subunit of HIV-2 RT with the 51-kDa subunit of HIV-1 RT in the same cell, indicating differences in the dimerization domains of the two proteins. Recombinant HIV-2 RT is not recognized by a set of 23 monoclonal antibodies raised against HIV-1 RT, although it shows weak cross-reactivity with sera from HIV-1-infected patients.

Chromatography, Gel↗

Self-organization of associative memory and pattern classification: recurrent signal processing on topological feature maps.

We extend the neural concepts of topological feature maps towards self-organization of auto-associative memory and hierarchical pattern classification. As is well-known, topological maps for statistical data sets store information on the associated probability densities. To extract that information we introduce a recurrent dynamics of signal processing. We show that the dynamics converts a topological map into an auto-associative memory for real-valued feature vectors which is capable to perform a cluster analysis. The neural network scheme thus developed represents a generalization of non-linear matrix-type associative memories. The results naturally lead to the concept of a feature atlas and an associated scheme of self-organized, hierarchical pattern classification.

Algorithms↗

Molecular cloning of two west African human immunodeficiency virus type 2 isolates that replicate well in macrophages: a Gambian isolate, from a patient with neurologic acquired immunodeficiency syndrome, and a highly divergent Ghanian isolate.

Human immunodeficiency virus type 2 (HIV-2)-related viruses were isolated from a Gambian dying of exclusively neurological disease (HIV-2D194) and from an asymptomatic Ghanian (HIV-2D205). Both strains exhibited properties of HIV-1 biological subtype c: they grew slowly and induced few or no syncytia but eventually produced high levels of particle-associated reverse transcriptase in cultures of fresh peripheral blood lymphocytes, and they established stable infection of T-lymphoma (HUT-78) and monocytic (U937) cell lines. Each produced even higher levels of reverse transcriptase when fresh human monocytes/macrophages were used as target cells. The viruses were molecularly cloned after a single passage in culture, in order to minimize in vitro selection of subtypes present in vivo. Restriction-site analysis showed heterogeneity within each isolate. Nucleotide sequence analysis of a portion of the HIV-2D194 genome revealed that it is a member of the prototypic HIV-2 family, displaying 13% divergence versus HIV-2ROD and HIV-2NIHZ, as compared to 9% divergence between HIV-2ROD and HIV-2NIHZ. In contrast, HIV-2D205 is the most highly divergent HIV-2 strain yet described: it is equidistant in relation between the known HIV-2 strains and the simian immunodeficiency virus isolates from rhesus macaque monkeys (23-25% divergence).

Acquired Immunodeficiency Syndrome↗

[Not Available].

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Austria↗

Molecular cloning of two west African HIV2 isolates that replicate well in macrophages.

HIV2 strains were isolated from a Gambian with neuro-AIDS (HIV2D194) and from an asymptomatic Ghanian (HIV2D205). Like HIV1 biological subtype c, both isolates grew slowly and induced few or no syncytia, but eventually produced high levels of particle-associated reverse transcriptase (RT) in cultures of fresh peripheral blood lymphocytes. Each produced even higher levels of RT in fresh human macrophages, especially HIV2D194, where maximal RT values of 1,800,000 cpm/ml supernatant of approximately 30,000 cells were measured. The viruses were molecularly cloned after a single passage in culture. Restriction site analysis showed heterogeneity within each isolate. Nucleotide sequence analysis of HIV2D194 revealed that, genetically, it is a member of the prototypic HIV2 family, displaying 12% divergence vs. HIV2ROD and HIV2NIHZ. In contrast, HIV2D205 is the most highly divergent HIV2 strain yet described: it is equidistant in relation between the known HIV2 strains and the SIVMAC isolates (23-24% nucleotide sequence divergence).

Africa, Western↗

A highly divergent HIV-2-related isolate.

It has been suggested that the human immunodeficiency virus type 2 (HIV-2) and the simian immunodeficiency virus from rhesus macaques (SIVmac) evolved from the sooty mangabey virus SIVsm (ref. 1). We now describe an HIV-2-related isolate, HIV-2-D205, from a healthy Ghanaian woman that is genetically equidistant to the prototypic HIV-2 strains and to SIVsm and SIVmac. Supported by the observation that HIV-2D205 differs in a step of envelope glycoprotein processing, our data indicate that it could represent an alternative HIV-2 subtype and that viruses of the HIV-2/SIVsm/SIVmac group could have already infected humans before HIV-2 and SIVsm/SIVmac diverged.

Base Sequence↗

[Not Available].

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Austria↗