Literature DB >> 11287593

Human T-cell leukemia virus type 1 (HTLV-1) infection of mice: proliferation of cell clones with integrated HTLV-1 provirus in lymphoid organs.

M Tanaka1, B Sun, J Fang, T Nitta, T Yoshida, S Kohtoh, H Kikukawa, S Hanai, K Uchida, M Miwa.   

Abstract

Human T-cell leukemia virus type 1 (HTLV-1) is suggested to cause adult T-cell leukemia after 40 to 50 years of latency in a small percentage of carriers. However, little is known about the pathophysiology of the latent period and the reservoir organs where polyclonal proliferation of cells harboring integrated provirus occurs. The availability of animal models would be useful to analyze the latent period of HTLV-1 infection. At 18 months after HTLV-1 infection of C3H/HeJ mice inoculated with the MT-2 cell line, which is an HTLV-1-producing human T-cell line, HTLV-1 provirus was detected in spleen DNA from eight of nine mice. No more than around 100 proviruses were found per 10(5) spleen cells. Cellular sequences flanking the 3' long terminal repeat (LTR) and the clonalities of the cells which harbor integrated HTLV-1 provirus were analyzed by linker-mediated PCR. The results showed that the flanking sequences are of mouse genome origin and that polyclonal proliferation of the spleen cells harboring integrated HTLV-1 provirus had occurred in three mice. A sequence flanking the 5' LTR was isolated from one of the mice and revealed the presence of a 6-nucleotide duplication of cellular sequences, consistent with typical retroviral integration. Moreover, PCR was performed on DNA from infected tissues, with LTR primers and primers derived from seven novel flanking sequences of the three mice. Data revealed that the expected PCR products were found from lymphatic tissues of the same mouse, suggesting that the lymphatic tissues were the reservoir organs for the infected and proliferating cell clones. The mouse model described here should be useful for analysis of the carrier state of HTLV-1 infection in humans.

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Year:  2001        PMID: 11287593      PMCID: PMC114189          DOI: 10.1128/JVI.75.9.4420-4423.2001

Source DB:  PubMed          Journal:  J Virol        ISSN: 0022-538X            Impact factor:   5.103


  28 in total

1.  Adult T-cell leukemia: clinical and hematologic features of 16 cases.

Authors:  T Uchiyama; J Yodoi; K Sagawa; K Takatsuki; H Uchino
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Authors:  M Kazanji; A Ureta-Vidal; S Ozden; F Tangy; B de Thoisy; L Fiette; A Talarmin; A Gessain; G de Thé
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3.  Experimental infection of cynomolgus monkeys with a human retrovirus, adult T-cell leukemia virus.

Authors:  N Yamamoto; M Hayami; A Komuro; J Schneider; G Hunsmann; M Okada; Y Hinuma
Journal:  Med Microbiol Immunol       Date:  1984       Impact factor: 3.402

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Authors:  A T Haase
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5.  Type C virus particles in a cord T-cell line derived by co-cultivating normal human cord leukocytes and human leukaemic T cells.

Authors:  I Miyoshi; I Kubonishi; S Yoshimoto; T Akagi; Y Ohtsuki; Y Shiraishi; K Nagata; Y Hinuma
Journal:  Nature       Date:  1981-12-24       Impact factor: 49.962

6.  Experimental infection of rabbits with human T-cell leukemia virus type I.

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7.  Monoclonal integration of human T-cell leukemia provirus in all primary tumors of adult T-cell leukemia suggests causative role of human T-cell leukemia virus in the disease.

Authors:  M Yoshida; M Seiki; K Yamaguchi; K Takatsuki
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9.  Oral transmission of human T-cell leukemia virus type-I into a common marmoset (Callithrix jacchus) as an experimental model for milk-borne transmission.

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2.  Route of primary HTLV-1 infection regulates HTLV-1 distribution in reservoir organs of infected mice.

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3.  Animals Models of Human T Cell Leukemia Virus Type I Leukemogenesis.

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5.  Effects of radiation based on whole-body irradiation in HTLV-1-infected mice.

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Review 6.  The utilization of humanized mouse models for the study of human retroviral infections.

Authors:  Rachel Van Duyne; Caitlin Pedati; Irene Guendel; Lawrence Carpio; Kylene Kehn-Hall; Mohammed Saifuddin; Fatah Kashanchi
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7.  Induction of galectin-1 expression by HTLV-I Tax and its impact on HTLV-I infectivity.

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8.  Animal models on HTLV-1 and related viruses: what did we learn?

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9.  Cell-free human T-cell leukemia virus type 1 binds to, and efficiently enters mouse cells.

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