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Elulookirjeldus (CV)
1.Eesnimi Juhan
2.Perekonnanimi Sedman
3.Töökoht TArtu Ülikool
4.Ametikoht Professor
5.Sünniaeg 07.12.1958 (päev.kuu.aasta)
6.Haridus Keemia (bioorgaaniline keemia), Tartu Riiklik Ülikool
7.Teenistuskäik alates 09.2003 TÜMRI juhataja

alates 09.2001 TÜMRI professor,üldise ja mikroobibiokeemia õppetooli juhataja

2000-2001 Tartu Ülikooli Molekulaar ja Rakubioloogia Instituudi erakorraline dotsent, üldise ja mikroobibiokeemia õppetooli hoidja

1998-2000 Eesti Biokeskuse venemteadur

1997-1998 Tartu Ülikooli Molekulaar ja Rakubioloogia Instituudi erakorraline vanemteadur, (repatriant finantseeritud PHARE programmi raames)

1993-1997 Järeldoktor Cold Spring Harbor Laboratooriumis, New York, USA

aastani 1992 Aspirant, nooremteadur ja teadur Tartu Riiklikus Ülikoolis
8.Teaduskraad Bioloogiateaduste kandidaat
9.Teaduskraadi välja
andnud asutus, aasta
Tartu Riiklik Ülikool, 1990
10.Tunnustused
11.Teadusorganisatsiooniline
ja –administratiivne
tegevus
ETF ja TKN eriala ekspertkomisjonide liige
TÜ strateegiakomisjoni liige
12.Juhendamisel kaitstud
väitekirjad

Dmitri Lubenets, MSc, 2005, juh. Juhan Sedman. In vivo studies of Saccharomyces cerevisiae Hmi1 helicase mitochondrial transport. Tartu

Silja Kuusk, DSc, 2001, juh. Juhan Sedman. Pärmi Saccharomyces cerevisiae mitokondriaalne helikaas Hmi1. Tartu

Priit Jõers, MSc, 2000, juh. Juhan Sedman. Eksperimentaalne süsteem Hmi1 valgu transportimise uurimiseks in vivo. Tartu

Tiina Sedman, MSc, 2000, juh. Juhan Sedman. Identification of the novel mitochondrial DNA helicase Hmi1. Tartu

13.Teadustöö põhisuunad DNA replikatsioon, valkude transport mitokondrisse
14.Jooksvad grandid sihtfinantseeritav teema 0182129s02 Postgenoomiks: sekveneeritud genoomi biokeemiline ja geneetiline funktsionaalanalüüs

ETF 5512 Mitokondriaalse DNA intaktsuse säilitamine: replikatsioon ja segregatsioon
15.Teaduspublikatsioonid

Kuusk S, Sedman T, Joers P, Sedman J. (2005) Hmi1p from Saccharomyces cerevisiae mitochondria is a structure-specific DNA helicase. J. Biol. Chem.280, 24322-24329.

Sedman T, Joers P, Kuusk S, Sedman J. (2005) Helicase Hmi1 stimulates the synthesis of concatemeric mitochondrial DNA molecules in yeast Saccharomyces cerevisiae. Curr. Genet. 47, 213-222.

Kuusk, S., Sedman, T., Sedman, J. Yeast mitochondrial DNA helicases: purification and functional assays. In: Methods in Molecular Biology 197: Mitochondrial DNA. Copeland W.P ed. Humana Press 2002 pp. 303-316

Sedman T., Kuusk, S., Kivi, S., Sedman, J. (2000) A DNA helicase required for maintenance of the functional mitochondrial genome in the yeast Saccharomyces cerevisiae. Mol. Cell. Biol. 20, 1816-1824

Lee, C.M., Sedman, J., Neupert, W., Stuart, R.A. (1999) The DNA helicase, Hmi1p, is transported into mitochondria by a C-terminal cleavable targeting signal. J. Biol. Chem. 274, 20937-20942

Sedman, J., Stenlund, A. (1998) The papillomavirus E1 protein forms a DNA-dependent hexameric complex with ATPase and DNA helicase activities. J. Virol. 72, 6893-6897

Sedman, T, J. Sedman and A. Stenlund (1997) Binding of the E1 and E2 proteins to the origin of replication of bovine papillomavirus. J. Virol. 71, 2887-2896

Sedman, J., Stenlund, A.(1996) The initiator protein E1 binds to the BPV origin of replication as a trimeric ring-like structure EMBO J. 15, 5085-50929

Melendy, T., Sedman, J., Stenlund, A. (1995) Cellular factors required for papillomavirus replication. J. Virol. 69, 7857-7867

Sedman, J., Stenlund, A., (1995) Co-operative interaction between the initiator E1 and the transcriptional activator E2 is required for replicator specific DNA replication of bovine papillomavirus in vivo and in vitro. EMBO J. 14, 6218-6228

Felgengauer, P., Sedman, J., Shostak, N., Timofeeva, M., Lind, A., Bayev, A.(1990)The 5'-flanking sequence of the loach oocyte 5S rRNA gene contains a signal for effective transcription. Gene, 90, 243-248

Sedman, J., Shostak, N.G., Kuprijanova, N.S., Serenkova, T.I., Felgengauer, P.E., Gimalov, F., Lind, A.J., Timofeeva, M.J., Bajev, A.A. (1989) Intragenic polymorphism of the primary structure of 5S rRNA gene variants of the loach (Misgurnus fossilis L.) Molek. Biol. Mosk. 23, 1295-1308

Bergman, P, Ustav, M., Sedman, J., Moreno-Lopez, J., Vennstrom, B., Peterson, U. (1988) The E5 gene of bovine papillomavirus type 1 is sufficient for complete oncogenic transformation of mouse fibroblasts. Oncogene, 2, 453-459

Sedman, J., Felgengauer, P., Shostak, N.G., Timofeeva, M.J. (1988) The transcriptional efficiency of loach oocyte 5S rRNA genes depends on the region of 5'-flanking spacer. Dokl. Akad. Nauk SSSR, 303, 736-737

Sedman, J., Maimets, T., Ustav, M., Villems, R.(1981) The interaction of 5S rRNA and its large fragments with ribosomal proteins. FEBS Lett. 136, 251-254

viimati muudetud: 09.10.2005

Curriculum Vitae (CV)
1.First Name Juhan
2.Surname Sedman
3.Institution University of Tartu
4.Position Professor
5.Date of birth 07.12.1958 (day.month.year)
6.Education Chemistry (bioorganic chemistry), Tartu State University
7.Research and
professional experience
09.2003- Head of IMCB University of Tartu

09.2001- Professor, Dep. of Biochemistry, IMCB University of Tartu

2000-2001 Ass. Prof IMCB

1998-2000 senior research fellow EBC

1997-1998 senior research fellow, IMCB

1993-1997 postdoc Cold Spring Harbor Laboratory with Dr. Arne Stenlund

-1992 junior research fellow, University of Tartu
8.Academic degree Cand Sci (Biology)
9.Dates and sites of
earning the degrees
Tartu State University, 1990
10.Honours/awards
11.Research-administrative
experience
Expert in Molecular Biology for Estonian Science Foundation and Research Competency Council

Member of Tartu University Strategy Comission
12.Supervised dissertations

Dmitri Lubenets, MSc, 2005, superv. Juhan Sedman. In vivo studies of Saccharomyces cerevisiae Hmi1 helicase mitochondrial transport. Tartu

Silja Kuusk, DSc, 2001, superv. Juhan Sedman. Pärmi Saccharomyces cerevisiae mitokondriaalne helikaas Hmi1. Tartu

Priit Jõers, MSc, 2000, superv. Juhan Sedman. Eksperimentaalne süsteem Hmi1 valgu transportimise uurimiseks in vivo. Tartu

Tiina Sedman, MSc, 2000, superv. Juhan Sedman. Identification of the novel mitochondrial DNA helicase Hmi1. Tartu

13.Current research program DNA replication, mitochondrial protein transport
14.Current grant funding 0182129s02 Postgenomics: functional analysis of the sequenced genome with the tools of biochemistry and genetics

ETF5512 Maintenance of the mtDNA integrity: replication and segregation
15.List of most important publications

Kuusk S, Sedman T, Joers P, Sedman J. (2005) Hmi1p from Saccharomyces cerevisiae mitochondria is a structure-specific DNA helicase. J. Biol. Chem.280, 24322-24329.

Sedman T, Joers P, Kuusk S, Sedman J. (2005) Helicase Hmi1 stimulates the synthesis of concatemeric mitochondrial DNA molecules in yeast Saccharomyces cerevisiae. Curr. Genet. 47, 213-222.

Kuusk, S., Sedman, T., Sedman, J. Yeast mitochondrial DNA helicases: purification and functional assays. In: Methods in Molecular Biology 197: Mitochondrial DNA. Copeland W.P ed. Humana Press 2002 pp. 303-316

Sedman T., Kuusk, S., Kivi, S., Sedman, J. (2000) A DNA helicase required for maintenance of the functional mitochondrial genome in the yeast Saccharomyces cerevisiae. Mol. Cell. Biol. 20, 1816-1824

Lee, C.M., Sedman, J., Neupert, W., Stuart, R.A. (1999) The DNA helicase, Hmi1p, is transported into mitochondria by a C-terminal cleavable targeting signal. J. Biol. Chem. 274, 20937-20942

Sedman, J., Stenlund, A. (1998) The papillomavirus E1 protein forms a DNA-dependent hexameric complex with ATPase and DNA helicase activities. J. Virol. 72, 6893-6897

Sedman, T, J. Sedman and A. Stenlund (1997) Binding of the E1 and E2 proteins to the origin of replication of bovine papillomavirus. J. Virol. 71, 2887-2896

Sedman, J., Stenlund, A.(1996) The initiator protein E1 binds to the BPV origin of replication as a trimeric ring-like structure EMBO J. 15, 5085-50929

Melendy, T., Sedman, J., Stenlund, A. (1995) Cellular factors required for papillomavirus replication. J. Virol. 69, 7857-7867

Sedman, J., Stenlund, A., (1995) Co-operative interaction between the initiator E1 and the transcriptional activator E2 is required for replicator specific DNA replication of bovine papillomavirus in vivo and in vitro. EMBO J. 14, 6218-6228

Felgengauer, P., Sedman, J., Shostak, N., Timofeeva, M., Lind, A., Bayev, A.(1990)The 5'-flanking sequence of the loach oocyte 5S rRNA gene contains a signal for effective transcription. Gene, 90, 243-248

Sedman, J., Shostak, N.G., Kuprijanova, N.S., Serenkova, T.I., Felgengauer, P.E., Gimalov, F., Lind, A.J., Timofeeva, M.J., Bajev, A.A. (1989) Intragenic polymorphism of the primary structure of 5S rRNA gene variants of the loach (Misgurnus fossilis L.) Molek. Biol. Mosk. 23, 1295-1308

Bergman, P, Ustav, M., Sedman, J., Moreno-Lopez, J., Vennstrom, B., Peterson, U. (1988) The E5 gene of bovine papillomavirus type 1 is sufficient for complete oncogenic transformation of mouse fibroblasts. Oncogene, 2, 453-459

Sedman, J., Felgengauer, P., Shostak, N.G., Timofeeva, M.J. (1988) The transcriptional efficiency of loach oocyte 5S rRNA genes depends on the region of 5'-flanking spacer. Dokl. Akad. Nauk SSSR, 303, 736-737

Sedman, J., Maimets, T., Ustav, M., Villems, R.(1981) The interaction of 5S rRNA and its large fragments with ribosomal proteins. FEBS Lett. 136, 251-254

last updated: 09.10.2005

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