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1
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0027339865
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L10 gene of herpes simplex virus 1 encodes a novel viral glycoprotein, gM, which is present in the virion, and in the plasma membrane of infected cells
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L10 gene of herpes simplex virus 1 encodes a novel viral glycoprotein, gM, which is present in the virion, and in the plasma membrane of infected cells. J. Virol. 67:1993;1441-1452.
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Baines, J.D.1
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3
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0028275522
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L10 genes, and identification of a novel delayed-early gene product, OBPC
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L10 genes, and identification of a novel delayed-early gene product, OBPC. J. Virol. 68:1994;4251-4261.
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Baradaran, K.1
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5
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0029655513
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The promoter and transcriptional unit of a novel herpes simplex virus 1 α gene is contained in, and encodes a protein in frame with, the open reading frame of the α22 gene
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Carter K. L., Roizman B. The promoter and transcriptional unit of a novel herpes simplex virus 1 α gene is contained in, and encodes a protein in frame with, the open reading frame of the α22 gene. J. Virol. 70:1996;172-178.
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Carter, K.L.1
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7
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0025219307
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The herpes simplex virus 1 gene for ICP34.5, which maps in inverted repeats, is conserved in several limited-passage isolates but not in strain 17syn+
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Chou J., Roizman B. The herpes simplex virus 1 gene for ICP34.5, which maps in inverted repeats, is conserved in several limited-passage isolates but not in strain 17syn+. J. Virol. 64:1990;1147-1156.
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Chou, J.1
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8
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0021354281
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Direct demonstration that the abundant 6-kilobase herpes simplex virus type 1 mRNA mapping between 0.23, and 0.27 map units encodes the major capsid protein VP5
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Costa R. H., Cohen G., Eisenberg R., Long D., Wagner E. Direct demonstration that the abundant 6-kilobase herpes simplex virus type 1 mRNA mapping between 0.23, and 0.27 map units encodes the major capsid protein VP5. J. Virol. 49:1984;287-292.
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Costa, R.H.1
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9
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0019503317
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Characterization of a major late herpes simplex virus type 1 mRNA
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Costa R. H., Gayathri Devi B., Anderson K. P., Gaylord B. H., Wagner E. K. Characterization of a major late herpes simplex virus type 1 mRNA. J. Virol. 38:1981;483-496.
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Costa, R.H.1
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10
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0028237175
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Preexisting nuclear architecture defines the intranuclear location of herpesvirus DNA replication structures
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de Bruyn Kops A., Knipe D. M. Preexisting nuclear architecture defines the intranuclear location of herpesvirus DNA replication structures. J. Virol. 68:1994;3512-3526.
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De Bruyn Kops, A.1
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11
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0024276563
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Formation of DNA replication structure in herpes simplex virus requires a viral DNA binding protein
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de Bruyn Kops A., Knipe D. M. Formation of DNA replication structure in herpes simplex virus requires a viral DNA binding protein. Cell. 55:1988;857-868.
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De Bruyn Kops, A.1
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12
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0031935813
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Dolan, A., Jamieson, F. E., Cunningham, C., Barnett, B. C., and McGeoch, D.1998. The genome of herpes simplex virus type 2. 72, 2010-2021.
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Dolan, A.1
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13
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0014286962
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Characterization of herpes simplex virus strains differing in their effects on social behavior of infected cells
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Ejercito P. M., Kieff E. D., Roizman B. Characterization of herpes simplex virus strains differing in their effects on social behavior of infected cells. J. Gen. Virol. 2:1968;357-364.
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Ejercito, P.M.1
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Roizman, B.3
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14
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0025058827
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L41, the gene controlling virion-associated host shutoff, between two strains of herpes simplex virus
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L41, the gene controlling virion-associated host shutoff, between two strains of herpes simplex virus. J. Gen. Virol. 71:1990;411-418.
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Fenwick, M.L.1
Everett, R.D.2
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15
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0027174993
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Identification of a new transcriptional unit that yields a gene product within the unique sequence of the short component of the herpes simplex virus 1 genome
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Georgopoulou U., Michaelidou A., Roizman B., Mavromara-Nazos P. Identification of a new transcriptional unit that yields a gene product within the unique sequence of the short component of the herpes simplex virus 1 genome. J. Virol. 67:1993;3961-3968.
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Georgopoulou, U.1
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16
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0027407749
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Construction, and properties of a recombinant herpes simplex virus 1 lacking both S-component origins of DNA synthesis
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Igarashi K., Roller R., Roizman B. Construction, and properties of a recombinant herpes simplex virus 1 lacking both S-component origins of DNA synthesis. J. Virol. 67:1993;2123-2132.
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Igarashi, K.1
Roller, R.2
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17
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0033033075
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L4 protein with infected cell protein 22 in small, dense nuclear structures formed prior to onset of DNA synthesis
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L4 protein with infected cell protein 22 in small, dense nuclear structures formed prior to onset of DNA synthesis. J. Virol. 73:1999;5132-5136.
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Jahedi, S.1
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Filatov, F.3
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18
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0023834392
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Herpes simplex virus immunoglobulin G Fc receptor activity depends on a complex of two viral glycoproteins, gE, and gI
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Johnson D. C., Frame M. C., Ligas M. W., Cross A. M., Stow N. D. Herpes simplex virus immunoglobulin G Fc receptor activity depends on a complex of two viral glycoproteins, gE, and gI. J. Virol. 62:1988;1347-1354.
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Johnson, D.C.1
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Stow, N.D.5
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19
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0028018154
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Expression of a herpes simplex virus 1 open reading frame antisense to the γ1 34.5 gene and transcribed by an RNA 3′ coterminal with the unspliced latency-associated transcript
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Lagunoff M., Roizman B. Expression of a herpes simplex virus 1 open reading frame antisense to the γ1 34.5 gene and transcribed by an RNA 3′ coterminal with the unspliced latency-associated transcript. J. Virol. 68:1994;6021-6028.
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Lagunoff, M.1
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21
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0026003618
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L26 open reading frame
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L26 open reading frame. J. Virol. 65:1991;206-212.
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Liu, F.1
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22
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0022504699
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Generation of an inverting herpes simplex virus 1 mutant lacking the L-S junction a sequences, an origin of DNA synthesis, and several genes including those specifying glycoprotein E, and the á47 gene
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Longnecker R., Roizman B. Generation of an inverting herpes simplex virus 1 mutant lacking the L-S junction a sequences, an origin of DNA synthesis, and several genes including those specifying glycoprotein E, and the á47 gene. J. Virol. 58:1986;583-591.
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Longnecker, R.1
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23
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0033989722
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L3 protein of herpes simplex virus 1 is translated predominantly from the second in-frame methionine codon, and is subject to at least two post-translational modifications
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L3 protein of herpes simplex virus 1 is translated predominantly from the second in-frame methionine codon, and is subject to at least two post-translational modifications. J. Virol. 74:2000;523-528.
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Markovitz, N.S.1
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24
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Modification of discrete nuclear domains induced by herpes simplex virus type 1 immediate early gene 1 product (ICPO)
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Maul G. G., Guldner H. H., Spivak J. G. Modification of discrete nuclear domains induced by herpes simplex virus type 1 immediate early gene 1 product (ICPO). J. Gen. Virol. 74:1993;2679-2690.
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Maul, G.G.1
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25
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0023899276
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The complete DNA sequence of the long unique region in the genome of herpes simplex virus type 1
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McGeoch D. J., Dalrymple M. A., Davison A. J., Dolan A., Frame M. C., McNab D., Perry L. J., Scott J. E., Taylor P. The complete DNA sequence of the long unique region in the genome of herpes simplex virus type 1. J. Gen. Virol. 69:1988;1531-1574.
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McGeoch, D.J.1
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Frame, M.C.5
McNab, D.6
Perry, L.J.7
Scott, J.E.8
Taylor, P.9
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26
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0019176944
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Molecular engineering of the herpes simplex virus genome: Insertion of a second L-S junction into the genome causes additional genome inversions
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Mocarski E. S., Post L. E., Roizman B. Molecular engineering of the herpes simplex virus genome: Insertion of a second L-S junction into the genome causes additional genome inversions. Cell. 22:1980;243-255.
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Mocarski, E.S.1
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27
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0019306157
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Cloning of reiterated and nonreiterated herpes simplex virus 1 sequences as BamHI fragments
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Post L. E., Conley A. J., Mocarski E. S., Roizman B. Cloning of reiterated and nonreiterated herpes simplex virus 1 sequences as BamHI fragments. Proc. Natl. Acad. Sci. USA. 77:1980;4201-4205.
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Post, L.E.1
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Mocarski, E.S.3
Roizman, B.4
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28
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0019404891
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A generalized technique for deletion of specific genes in large genomes: α gene 22 of herpes simplex virus 1 is not essential for growth
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Post L. E., Roizman B. A generalized technique for deletion of specific genes in large genomes: α gene 22 of herpes simplex virus 1 is not essential for growth. Cell. 25:1981;227-232.
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Cell
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Post, L.E.1
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29
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0030923588
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The product of ORF O located within the domain of herpes simplex virus 1 genome transcribed during latent infection binds to and inhibits in vitro binding of infected cell protein 4 to its cognate DNA site
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Randall G., Lagunoff M., Roizman B. The product of ORF O located within the domain of herpes simplex virus 1 genome transcribed during latent infection binds to and inhibits in vitro binding of infected cell protein 4 to its cognate DNA site. Proc. Natl. Acad. Sci. USA. 94:1997;10379-10384.
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Randall, G.1
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30
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0003156753
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The replication of herpesviruses
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H. Fraenkel-Conrat, & R. R. Wagner. New York: Plenum Press
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Roizman B., Furlong D. The replication of herpesviruses. Fraenkel-Conrat H., Wagner R. R. Comprehensive Virology. 1974;229-403 Plenum Press, New York.
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Comprehensive Virology
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Roizman, B.1
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32
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0016700864
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Detection of specific sequences among DNA fragments separated by gel electrophoresis
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Southern E. M. Detection of specific sequences among DNA fragments separated by gel electrophoresis. J. Mol. Biol. 98:1975;503-517.
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34
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0016790290
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Anatomy of herpes simplex virus DNA. II. Size, composition, and arrangement of inverted terminal repetitions
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Wadsworth S., Jacob R. J., Roizman B. Anatomy of herpes simplex virus DNA. II. Size, composition, and arrangement of inverted terminal repetitions. J. Virol. 15:1975;1487-1497.
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Wadsworth, S.1
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Roizman, B.3
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35
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0029976436
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L43 gene and encodes a protein which colocalizes in nuclear structures with capsid proteins
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L43 gene and encodes a protein which colocalizes in nuclear structures with capsid proteins. J. Virol. 70:1996;2684-2690.
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Ward, P.L.1
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