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# Query Length Result vs. Range Score %id Covered by template(s)
1 gi|6319249|ref|NP_009332.1|(removed signalp:1-20) hypothetical protein; Pau8p (YAL068C) [Saccharomyces cerevisiae] 100 SCOP175 21-95 -6.710 d1zh5a1 a.4.5.46 (A:5-103) Lupus La autoantigen N-terminal domain {Human (Homo sapiens) [TaxId: 9606]}
2 gi|33438754|ref|NP_878038.1| Putative protein of unknown function; identified by gene-trapping, microarray-based expression analysis, and genome-wide homology searching; Yal067w-ap (YAL067W-A) [Saccharomyces cerevisiae] 75 SCOP175 3-75 -6.430 d1yrba1 c.37.1.10 (A:1-244) ATP(GTP)-binding protein PAB0955 {Pyrococcus abyssi [TaxId: 29292]}
3 gi|6319250|ref|NP_009333.1| Putative permease, member of the allantoate transporter subfamily of the major facilitator superfamily; mutation confers resistance to ethionine sulfoxide; Seo1p (YAL067C) [Saccharomyces cerevisiae] 593 SCOP175 124-566 -30.600 12  d1pw4a_ f.38.1.1 (A:) Glycerol-3-phosphate transporter {Escherichia coli [TaxId: 562]}
4 gi|6319252|ref|NP_009335.1| Putative protein of unknown function; has homology to FLO1; possible pseudogene; (YAL065C) [Saccharomyces cerevisiae] 128 SCOP175 28-128 -5.880 13  d1oaoc_ e.26.1.3 (C:) Bifunctional carbon monoxide dehydrogenase/acetyl-CoA synthase (CODH/ACS) alpha (ACS) subunit {Moorella thermoacetica [TaxId: 1525]}
5 gi|6319253|ref|NP_009336.1| Fungal-specific protein of unknown function; Yal064w-bp (YAL064W-B) [Saccharomyces cerevisiae] 126 SCOP175 2-87 -4.930 16  d1dw0a_ a.3.1.1 (A:) SHP, an oxygen binding cytochrome c {Rhodobacter sphaeroides [TaxId: 1063]}
6 gi|7839146|ref|NP_058136.1| Putative protein of unknown function; YAL064C-A is not an essential gene; Yal064c-ap (YAL064C-A) [Saccharomyces cerevisiae] 126 SCOP175 2-114 -23.200 11  d1acca_ f.11.1.1 (A:) Anthrax protective antigen {Anthrax bacillus (Bacillus anthracis) [TaxId: 1392]}
7 gi|6319254|ref|NP_009337.1| Protein of unknown function; may interact with ribosomes, based on co-purification experiments; (YAL064W) [Saccharomyces cerevisiae] 108 SCOP175 49-94 -7.570 23  d1nuba3 g.68.1.1 (A:78-135) Domain of BM-40/SPARC/osteonectin {Human (Homo sapiens) [TaxId: 9606]}
8 gi|33438755|ref|NP_878039.1| Putative protein of unknown function; identified by expression profiling and mass spectrometry; Yal063c-ap (YAL063C-A) [Saccharomyces cerevisiae] 96 SCOP175 16-92 -7.030 10  d3cipg1 d.109.1.1 (G:2-125) Gelsolin {Human (Homo sapiens) [TaxId: 9606]}
9 gi|6319255|ref|NP_009338.1|(removed signalp:1-24) Lectin-like protein with similarity to Flo1p, thought to be expressed and involved in flocculation; Flo9p (YAL063C) [Saccharomyces cerevisiae] (Range: 1-500) 500 SCOP175 10-500 -13.800 d1acca_ f.11.1.1 (A:) Anthrax protective antigen {Anthrax bacillus (Bacillus anthracis) [TaxId: 1392]}
10 gi|6319255|ref|NP_009338.1|(removed signalp:1-24) Lectin-like protein with similarity to Flo1p, thought to be expressed and involved in flocculation; Flo9p (YAL063C) [Saccharomyces cerevisiae] (Range: 251-750) 500 SCOP175 118-202 -7.520 100  d1gw5a_ a.118.1.10 (A:) Adaptin alpha C subunit N-terminal fragment {Mouse (Mus musculus) [TaxId: 10090]}
11 gi|6319255|ref|NP_009338.1|(removed signalp:1-24) Lectin-like protein with similarity to Flo1p, thought to be expressed and involved in flocculation; Flo9p (YAL063C) [Saccharomyces cerevisiae] (Range: 501-1000) 500 SCOP175 3-87 -7.040 100  d1gw5a_ a.118.1.10 (A:) Adaptin alpha C subunit N-terminal fragment {Mouse (Mus musculus) [TaxId: 10090]}
12 gi|6319255|ref|NP_009338.1|(removed signalp:1-24) Lectin-like protein with similarity to Flo1p, thought to be expressed and involved in flocculation; Flo9p (YAL063C) [Saccharomyces cerevisiae] (Range: 751-1250) 500 SCOP175 6-90 -5.680 100  d1gw5a_ a.118.1.10 (A:) Adaptin alpha C subunit N-terminal fragment {Mouse (Mus musculus) [TaxId: 10090]}
13 gi|6319255|ref|NP_009338.1|(removed signalp:1-24) Lectin-like protein with similarity to Flo1p, thought to be expressed and involved in flocculation; Flo9p (YAL063C) [Saccharomyces cerevisiae] (Range: 1001-1298) 298 SCOP175 27-111 -5.270 100  d1gw5a_ a.118.1.10 (A:) Adaptin alpha C subunit N-terminal fragment {Mouse (Mus musculus) [TaxId: 10090]}
14 gi|6319256|ref|NP_009339.1| NADP(+)-dependent glutamate dehydrogenase, synthesizes glutamate from ammonia and alpha-ketoglutarate; rate of alpha-ketoglutarate utilization differs from Gdh1p; expression regulated by nitrogen and carbon sources; Gdh3p (YAL062W) [Saccharomyces cerevisiae] 457 SCOP175 2-179 -93.000 59  d1bgva2 c.58.1.1 (A:1-194) Glutamate dehydrogenase {Clostridium symbiosum [TaxId: 1512]}
180-457 -81.400 42  d1bgva1 c.2.1.7 (A:195-449) Glutamate dehydrogenase {Clostridium symbiosum [TaxId: 1512]}
15 gi|6319257|ref|NP_009340.1| Putative medium-chain alcohol dehydrogenase with similarity to BDH1; transcription induced by constitutively active PDR1 and PDR3; BDH2 is an essential gene; Bdh2p (YAL061W) [Saccharomyces cerevisiae] 417 SCOP175 1-203 -67.900 29  d1pl8a1 b.35.1.2 (A:1-145,A:317-356) Ketose reductase (sorbitol dehydrogenase) {Human (Homo sapiens) [TaxId: 9606]}
164-337 -51.400 26  d1pl8a2 c.2.1.1 (A:146-316) Ketose reductase (sorbitol dehydrogenase) {Human (Homo sapiens) [TaxId: 9606]}
16 gi|6319258|ref|NP_009341.1| NAD-dependent (R,R)-butanediol dehydrogenase, catalyzes oxidation of (R,R)-2,3-butanediol to (3R)-acetoin, oxidation of meso-butanediol to (3S)-acetoin, and reduction of acetoin; enhances use of 2,3-butanediol as an aerobic carbon source; Bdh1p (YAL060W) [Saccharomyces cerevisiae] 382 SCOP175 1-203 -67.700 25  d1pl8a1 b.35.1.2 (A:1-145,A:317-356) Ketose reductase (sorbitol dehydrogenase) {Human (Homo sapiens) [TaxId: 9606]}
164-336 -51.500 24  d1pl8a2 c.2.1.1 (A:146-316) Ketose reductase (sorbitol dehydrogenase) {Human (Homo sapiens) [TaxId: 9606]}
17 gi|6319259|ref|NP_009342.1| Protein of unknown function, localized in the nucleoplasm and the nucleolus, genetically interacts with MTR2 in 60S ribosomal protein subunit export; Ecm1p (YAL059W) [Saccharomyces cerevisiae] 212 SCOP175 9-183 -7.060 d2r6gf1 e.70.1.1 (F:13-260) Maltose transport system permease protein MalF {Escherichia coli [TaxId: 562]}
18 gi|6319260|ref|NP_009343.1|(removed signalp:1-19) Calnexin; integral membrane ER chaperone involved in folding and quality control of glycoproteins; chaperone activity is inhibited by Mpd1p, with which Cne1p interacts; 24% identical to mammalian calnexin; Ca+ binding not yet shown in yeast; Cne1p (YAL058W) [Saccharomyces cerevisiae] 483 SCOP175 3-261 -68.600 23  d1jhna4 b.29.1.12 (A:61-262,A:412-458) Calnexin {Dog (Canis familiaris) [TaxId: 9615]}
222-363 -79.800 44  d1jhna3 b.104.1.1 (A:270-411) Calnexin {Dog (Canis familiaris) [TaxId: 9615]}
19 gi|41629666|ref|NP_009345.2| Multistep regulator of cAMP-PKA signaling; inhibits PKA downstream of Gpa2p and Cyr1p, thereby increasing cAMP dependency; inhibits Ras activity through direct interactions with Ira1p/2p; regulated by G-alpha protein Gpa2p; homolog of Gpb1p; Gpb2p (YAL056W) [Saccharomyces cerevisiae] 880 SCOP175 375-880 -21.500 13  d1zgka1 b.68.11.1 (A:322-609) Kelch-like ECH-associated protein 1, KEAP1 {Human (Homo sapiens) [TaxId: 9606]}
20 gi|6319263|ref|NP_009346.1| Putative peroxisomal membrane protein required for import of peroxisomal proteins, functionally complements a Pichia pastoris pex22 mutation; Pex22p (YAL055W) [Saccharomyces cerevisiae] 180 SCOP175 40-179 -7.070 d1fo8a_ c.68.1.10 (A:) N-acetylglucosaminyltransferase I {Rabbit (Oryctolagus cuniculus) [TaxId: 9986]}


FFAS is supported by the NIH grant R01-GM087218-01
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Selected papers from Godzik Lab

Ying Zhang, Ines Thiele, Dana Weekes, Zhanwen Li, Lukasz Jaroszewski, Krzysztof Ginalski, Ashley Deacon, John Wooley, Scott Lesley, Ian Wilson, Bernhard Palsson, Andrei Osterman, Adam Godzik. Three-Dimensional Structural View of the Central Metabolic Network of Thermotoga maritima. Science. 2009 Sep 18;325(5947):1544-9.

Alexey M. Eroshkin, Andrew LeBlanc, Dana Weekes, Kai Post, Zhanwen Li, Akhil Rajput, Sal T. Butera, Dennis R. Burton, Adam Godzik. bNAber: database of broadly neutralizing HIV antibodies. Nucl. Acids Res. 2013; published on November 7, 2013.

Plewczynski D, Tkacz A, Godzik A., Rychlewski L. A support vector machine approach to the identification of phosphorylation sites. Cell Mol Biol Lett. 2005;10(1):73-89.