نتایج جستجو برای: ebers

تعداد نتایج: 229  

Journal: :Blood 1995
G Niedobitek A Agathanggelou M Rowe E L Jones D B Jones P Turyaguma J Oryema D H Wright L S Young

Epstein-Barr virus (EBV)-infected cells may sustain three distinct forms of virus latency. In lymphoblastoid cell lines, six EBV-encoded nuclear antigens (EBNA1, 2, 3A, 3B, 3C, -LP), three latent membrane proteins (LMP1, 2A, 2B), and two nuclear RNAs (EBERs) are expressed. This form of latency, termed latency III, is also encountered in some posttransplant lymphoproliferative disorders. In EBV-...

2015
Julia Alles Syed Mohammad Ali Kazmi Andrew Hamilton Linda Schlegel Richard Reinhardt Gunter Meister Joanna B. Wilson Friedrich A. Grässer

The oncogenic Epstein-Barr virus (EBV) expresses 44 mature microRNAs and two non-coding EBER RNAs of 167 (EBER1) and 172 (EBER2) nt length. MiRNA profiling of NK/T cell lines and primary cells and Northern blotting of EBV-infected cell lines and primary tumors revealed processing of EBER1 to short 5′-derived RNAs of approximately 23, 52 and 70 nt (EBER123, EBER152, and EBER170) and of EBER2 to ...

Journal: :Journal of virology 1988
J G Howe M D Shu

Genes for the Epstein-Barr virus-encoded RNAs (EBERs), two low-molecular-weight RNAs encoded by the human gammaherpesvirus Epstein-Barr virus (EBV), hybridize to two small RNAs in a baboon cell line that contains a similar virus, herpesvirus papio (HVP). The genes for the HVP RNAs (HVP-1 and HVP-2) are located together in the small unique region at the left end of the viral genome and are trans...

Journal: :Journal of virology 1999
J Komano S Maruo K Kurozumi T Oda K Takada

Our previous reports indicated that Epstein-Barr virus (EBV) contributes to the malignant phenotype and resistance to apoptosis in Burkitt's lymphoma (BL) cell line Akata (N. Shimizu, A. Tanabe-Tochikura, Y. Kuroiwa, and K. Takada, J. Virol. 68:6069-6073, 1994; J. Komano, M. Sugiura, and K. Takada, J. Virol. 72:9150-9156, 1998). Here we report that the EBV-encoded small RNAs (EBERs) are respons...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 1986
J G Howe J A Steitz

Human B lymphocytes latently infected with Epstein-Barr virus (EBV) synthesize two low molecular weight RNAs designated EBER 1 and 2. Using an in situ hybridization technique we have localized EBER 1 and 2 within the nucleus of single EBV-harboring B lymphocytes from established and recently transformed cell lines. As controls, the locations of the small nuclear RNA, U1, and the small cytoplasm...

2014
Waqar Ahmed Pretty S. Philip Saeed Tariq Gulfaraz Khan

Epstein-Barr virus (EBV) is an oncogenic herpesvirus associated with a number of human malignancies of epithelial and lymphoid origin. However, the mechanism of oncogenesis is unclear. A number of viral products, including EBV latent proteins and non-protein coding RNAs have been implicated. Recently it was reported that EBV-encoded small RNAs (EBERs) are released from EBV infected cells and th...

Journal: :Folia histochemica et cytobiologica 2007
Aldona Kasprzak Rafal Spachacz Jacek Wachowiak Katarzyna Stefanska Maciej Zabel

Epstein Barr virus (EBV) infection of human B lymphocytes in vitro results in immortalisation of the cells and augmented membranous expression of numerous B-cell activation molecules, including CD23. Other studies demonstrated that only those B lymphocytes which carry the surface CD21 (EBV receptor) become transformation-competent. Inspired by the relatively unclear relations between expression...

2006
Yusuke Nakaya Shin’ichi Oishi Tetsuo Nishi Martin Claus

This paper is concerned with the number of operating points in two-transistor circuits. Recently, a new method was proposed for analyzing twotransistor circuit and an Ebers-Moll BJT circuit possessing five operating points was shown numerically. In this paper, applying the technique of numerical validation, we verify the numerical results rigorously and prove that the circuit have more than thr...

2006
V. C. PRASAD

It is shown that the "Jacobian determinant is nonzero forall values of its variables" is both necessary and sufficient for unique-ness of solutions of a wide class of networks. These networks maycontain negative resistance devices as well as Ebers-Moll transistors.

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