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THE PLANT CELL, Vol 4, Issue 10 1213-1227, Copyright © 1992 by American Society of Plant Biologists
Nuclear Localization Signal(s) Required for Nuclear Targeting of the Maize Regulatory Protein Opaque-2
M. J. Varagona, R. J. Schmidt and N. V. Raikhel
Department of Energy Plant Research Laboratory, Michigan State University, East Lansing, Michigan 48824-1312
The maize regulatory protein Opaque-2 (O2) localizes to the nucleus in both
maize and tobacco cells. Here we show that in-frame carboxy- and
amino-terminal fusions of O2 to reporter protein [beta]-glucuronidase (GUS)
were sufficient to direct GUS to the nucleus in transgenic tobacco plants
and in transiently transformed onion cells. Two independent regions of O2
containing 135 and 149 amino acids were identified that were able to
redirect GUS to the nucleus in both systems. A quantitative biochemical
analysis of GUS in nuclei isolated from transgenic tobacco plants revealed
that the second region was more efficient than the first one. The precise
location of nuclear localization signals (NLSs) was determined using an
onion transformation system. The first NLS was located between residues 101
and 135 and had the structure of a simian virus 40 NLS. The second NLS was
located in the basic, DNA binding domain (between residues 223 and 254) and
had a bipartite structure. The presence of one of the O2 NLSs in the basic
domain is in complete agreement with similar findings of NLSs in the basic
domain of three other basic/leucine zipper proteins, suggesting that this
domain may be bifunctional. The effect of amino- versus carboxy-terminal
GUS fusions is discussed.
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