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1 , PITALRE, could be the human homolog of the Drosophila protein.
2  share 55-58% amino acid similarity with the Drosophila protein.
3  hedgehog, a homolog of hedgehog, a secreted Drosophila protein.
4 e highest degree of sequence homology to the Drosophila protein.
5 human HIWI protein was 52% homologous to the Drosophila protein.
6 to the N-terminal 406 amino acid residues in Drosophila protein.
7 rly 5,000 individual, FLAG-HA epitope-tagged Drosophila proteins.
8 s in the amino termini of both the human and Drosophila proteins.
9 alogous to interactions observed between the Drosophila proteins.
10 e we demonstrate that a second IL-1R-related Drosophila protein, 18-Wheeler (18W), is a critical comp
11                                   Coracle, a Drosophila protein 4.1 homologue, is required during emb
12                        Studies of coracle, a Drosophila Protein 4.1 homologue, provide an opportunity
13  we show that, unlike other learning-related Drosophila proteins, AMN is not preferentially expressed
14                       Similarity between the Drosophila protein and the topoisomerase IIIbetas is par
15 OAP reveals functional analogies between the Drosophila proteins and subunits of the yeast and mammal
16          The product of the egl-46 gene, two Drosophila proteins, and two proteins in human and mice
17 age variants of lacZalpha and 74 challenging Drosophila protein antigens, which were then screened fo
18                    The available fraction of Drosophila proteins appears to lack representatives of m
19 iguingly, a large majority of the identified Drosophila proteins are essential developmental proteins
20 eta-catenin (the vertebrate homologue of the Drosophila protein Armadillo), a critical effector of th
21 sphorylation site, which is conserved in the Drosophila protein armadillo.
22 simultaneously binds to two molecules of the Drosophila protein B52 and two copies of streptavidin, t
23                             The LZIP-related Drosophila protein BBF-2/dCREB-A contains this HCF-bindi
24 is protein, Bicd2, is a human homolog of the Drosophila protein Bicaudal D, a coiled-coil protein.
25                    LexA protein fused to the Drosophila protein bicoid (LexA-bicoid) failed to intera
26                        Hairless (H), a novel Drosophila protein, binds to Su(H) and has been proposed
27        We show that a locust ortholog of the Drosophila protein Bruchpilot is localized to the presyn
28 d multiple long homopeptides in about 12% of Drosophila proteins but in only about 1.7% of human, mou
29          This protein is 57% homologous to a Drosophila protein called heix.
30  the physiological properties of three other Drosophila proteins (CG17137, CG17139, and CG17140) whos
31                                          The Drosophila protein Chip potentiates activation by severa
32                             For example, the Drosophila proteins Clock (Clk) and Cycle (Cyc) activate
33 pansions were engineered into Dishevelled, a Drosophila protein containing a naturally occurring poly
34                                           In Drosophila, proteins containing leucine-rich repeats (LR
35                                          The Drosophila protein Cortex (Cort) is a female, meiosis-sp
36 sis of an overgrowth phenotype driven by the Drosophila protein Crumbs (Crb), which nucleates an apic
37 resence of 18 chitinase-like proteins in the Drosophila protein database.
38 concentration; a well-studied example is the Drosophila protein decapentaplegic (DPP) acting in the w
39                    Here, we describe a novel Drosophila protein, Discs Lost (DLT), that plays a cruci
40                                          The Drosophila protein DSas-4 is related to the human microc
41                             We show that the Drosophila protein DSP1, an HMG-1/2-like protein, binds
42  There are also sequence similarities to the Drosophila protein DVE.
43 sting of the Shroom targeting domain and the Drosophila protein elicits constriction.
44 the WRPW-bHLH proteins, which are similar to Drosophila proteins encoded by hairy and genes in the en
45                                        Three Drosophila proteins, ERCC1, MUS312, and MEI-9, function
46 er cells (BCs), identify the uncharacterized Drosophila protein Evi5 as an essential membrane traffic
47 ogs of Tribbles, an evolutionarily conserved Drosophila protein family that mediates protein degradat
48                                  The related Drosophila protein Fat interacts genetically and physica
49 plasmin-like domain (NPL) from the unrelated Drosophila protein, FKBP39, and we present evidence that
50                                          The Drosophila protein frequenin and its mammalian homolog n
51 ella, transcriptome was higher (28%) than to Drosophila proteins/genes (18%) in NCBI.
52                      Both are related to the Drosophila protein Groucho, a transcriptional corepresso
53 t the EBNA-3 proteins act analogously to the Drosophila protein Hairless.
54 inal tetra-peptide in mature Smac and in the Drosophila proteins Hid/Grim/Reaper, defining a conserve
55 as the conserved N-terminal sequences in the Drosophila proteins Hid/Grim/Reaper.
56                  The leonardo gene encodes a Drosophila protein highly homologous to the vertebrate 1
57 n of human DSCAM is highly homologous to the Drosophila protein; however, the intracellular domains o
58 ein 80 kDa subunit and the VHS domain of the Drosophila protein Hrs, though strict analysis of the st
59               Recent studies of mutations of Drosophila proteins implicated in synaptic transmission
60                   We previously found that a Drosophila protein in the vanilloid receptor subfamily (
61 similar to the amino termini of proapoptotic Drosophila proteins in the Reaper/Hid/Grim family were i
62 graphy and mass spectroscopy to identify the Drosophila proteins in this complex.
63 rchitecture that is conserved in at least 14 Drosophila proteins, including Adf-1 and Stonewall.
64 ein interactions, led to the generation of a Drosophila protein interaction map (DPiM) encompassing 5
65                     We therefore propose the Drosophila protein is a member of the beta-subfamily of
66 revious results obtained with yeast HSF, the Drosophila protein is dispensable for general cell growt
67 essed in human cells, implying that no other Drosophila protein is necessary for inhibition.
68                                          The Drosophila protein is required for proper chromosome seg
69               cDNA sequences reveal that the Drosophila protein is similar to quaking (64% identity o
70 te that the average selection coefficient on Drosophila proteins is weakly positive.
71         The closest relative of mACF7 is the Drosophila protein Kakapo, which shares similar architec
72  repeats, a motif initially described in the Drosophila protein Kelch, and another domain predicted t
73  antibodies against the catalytic subunit of Drosophila protein kinase A (anti-DC0) label an unusual
74              Human PDK1 is homologous to the Drosophila protein kinase DSTPK61, which has been implic
75          The pathway takes its name from the Drosophila protein kinase, Hippo (STK4/MST1 and STK3/MST
76               Here we test the complement of Drosophila protein kinases (kinome) for cell cycle funct
77 y conserved linkers, first identified in the Drosophila protein Kruppel, that are found in many DNA b
78                           Like the prototype Drosophila protein Mad, many members of the family play
79                                          The Drosophila protein MEI-S332, the founding member of a co
80 omain; this structure was conserved with the Drosophila protein Msp-300 and the mammalian Syne protei
81                                          The Drosophila protein Nanos encodes an evolutionarily conse
82  modular structure that can be traced to the Drosophila protein nervy.
83                                          The Drosophila protein O-glucosyltransferase (Poglut) Rumi r
84                             We found that in Drosophila, Protein O-fucosyltransferase 1 (OFUT1), an e
85                                 Pellino is a Drosophila protein originally isolated in a two-hybrid s
86                  LGN is closely related to a Drosophila protein, Partner of inscuteable (Pins), which
87                                  We identify Drosophila protein phosphatase 2A (PP2A) regulatory subu
88                                      Another Drosophila protein previously implicated in fat body spe
89                                    As in the Drosophila proteins Reaper, Grim and Hid, the amino-term
90  of these loci, located 3' to Psn, encodes a Drosophila protein related to the yeast 60S ribosomal pr
91          Here, we show that Cutoff (Cuff), a Drosophila protein related to the yeast transcription te
92 ment from model organisms indicates that the Drosophila protein resembles nonmuscle myosin-2s from me
93                              We searched the Drosophila protein sequences database using fully charac
94                                  Twenty-four Drosophila protein sequences were more similar to their
95                                          The Drosophila protein Sex Comb on Midleg (Scm) is a member
96                                          The Drosophila protein Sex-lethal (Sxl) contains two RNP con
97                                          The Drosophila protein Shaggy (Sgg, also known as Zeste-whit
98    In addition to the homology to yGCN5, the Drosophila protein shares sequencesimilarity with the N-
99                    shut-down encodes a novel Drosophila protein similar to the heat-shock protein-bin
100 a yeast two-hybrid screen to isolate a novel Drosophila protein, SIN (SXL interactor), that interacts
101 h a newly cloned vertebrate homologue of the Drosophila protein Smoothened (vSmo), and that vSmo is c
102  to identify splicing events regulated by 56 Drosophila proteins, some previously unknown to regulate
103                        Here we show that the Drosophila protein Spire represents a third class of act
104 y of the binding of a dsRBM derived from the Drosophila protein Staufen, indicates that dsRBMs can bi
105 th four transmembrane domains related to the Drosophila protein strabismus/van gogh (vang).
106 ral distinctions exist between the human and Drosophila proteins suggesting overlapping but not ident
107           An interaction between LC8 and the Drosophila protein swallow has been previously character
108 strulation (Sog) protein is another secreted Drosophila protein that contains a type-II signal and di
109              Thus, we have identified both a Drosophila protein that is directly associated with TBP
110     TLRs are mammalian homologues of Toll, a Drosophila protein that is essential for host defense ag
111                       We report here a novel Drosophila protein that is homologous to Sina, named Sin
112                              The latter is a Drosophila protein that is involved in transcriptional s
113                                              Drosophila proteins that confer apical membrane identity
114 ike receptor (TLR) proteins, homologs of the Drosophila protein Toll, have been found on the surface
115 la adapter protein, which interacts with the Drosophila protein-tyrosine phosphatase (PTP) dPTP61F.
116 the large cytosolic N-terminal region of the Drosophila protein V100, the neuron-specific V(0) subuni
117                                          The Drosophila protein Vein has structural similarities with
118 tigial-like 2 (Vgl-2) that is related to the Drosophila protein Vestigial.
119                         We have identified a Drosophila protein with homology to vertebrate Crk, term
120               We describe a technique to tag Drosophila proteins with GFP at their native genomic loc
121                             More than 80% of Drosophila proteins with multiple runs seem to function
122 in, a region of E(z) also conserved in other Drosophila proteins with roles in development and/or chr

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