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23 results for author:"Artymiuk P.J." in Literature citations

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Structure-function dissection of the frizzled receptor in Drosophila melanogaster suggests different mechanisms of action in planar polarity and canonical Wnt signaling.

Strutt D., Madder D., Chaudhary V., Artymiuk P.J.

Genetics 192:1295-1313(2012) · Mapped (3)

Structure of the human obesity receptor leptin-binding domain reveals the mechanism of leptin antagonism by a monoclonal antibody.

Carpenter B., Hemsworth G.R., Wu Z., Maamra M., Strasburger C.J., Ross R.J., Artymiuk P.J.

Structure 20:487-497(2012) · UniProtKB (1)

A Burkholderia pseudomallei toxin inhibits helicase activity of translation factor eIF4A.

Cruz-Migoni A., Hautbergue G.M., Artymiuk P.J., Baker P.J., Bokori-Brown M., Chang C.T., Dickman M.J., Essex-Lopresti A., Harding S.V., Mahadi N.M. et al.

Science 334:821-824(2011) · UniProtKB (1) · Mapped (8)

Mycobacterium tuberculosis cAMP receptor protein (Rv3676) differs from the Escherichia coli paradigm in its cAMP binding and DNA binding properties and transcription activation properties.

Stapleton M., Haq I., Hunt D.M., Arnvig K.B., Artymiuk P.J., Buxton R.S., Green J.

J. Biol. Chem. 285:7016-7027(2010) · UniProtKB (2)

Analysis of the open and closed conformations of the GTP-binding protein YsxC from Bacillus subtilis.

Ruzheinikov S.N., Das S.K., Sedelnikova S.E., Baker P.J., Artymiuk P.J., Garcia-Lara J., Foster S.J., Rice D.W.

J. Mol. Biol. 339:265-278(2004) · Mapped (1)

E. coli aconitase B structure reveals a HEAT-like domain with implications for protein-protein recognition.

Williams C.H. Jr., Stillman T.J., Barynin V.V., Sedelnikova S.E., Tang Y., Green J., Guest J.R., Artymiuk P.J.

Nat. Struct. Biol. 9:447-452(2002) · UniProtKB (1)

Crystal structure of manganese catalase from Lactobacillus plantarum.

Barynin V.V., Whittaker M.M., Antonyuk S.V., Lamzin V.S., Harrison P.M., Artymiuk P.J., Whittaker J.W.

Structure 9:725-738(2001) · UniProtKB (1)

The high-resolution X-ray crystallographic structure of the ferritin (EcFtnA) of Escherichia coli; comparison with human H ferritin (HuHF) and the structures of the Fe(3+) and Zn(2+) derivatives.

Stillman T.J., Hempstead P.D., Artymiuk P.J., Andrews S.C., Hudson A.J., Treffry A., Guest J.R., Harrison P.M.

J. Mol. Biol. 307:587-603(2001) · UniProtKB (1)

Structure-function relationships of a novel bacterial toxin, hemolysin E. The role of alpha G.

Atkins A., Wyborn N.R., Wallace A.J., Stillman T.J., Black L.K., Fielding A.B., Hisakado M., Artymiuk P.J., Green J.

J. Biol. Chem. 275:41150-41155(2000) · UniProtKB (1)

E. coli hemolysin E (HlyE, ClyA, SheA): X-ray crystal structure of the toxin and observation of membrane pores by electron microscopy.

Wallace A.J., Stillman T.J., Atkins A., Jamieson S.J., Bullough P.A., Green J., Artymiuk P.J.

Cell 100:265-276(2000) · UniProtKB (2)

Crystal structure of E.coli RuvA with bound DNA Holliday junction at 6-A resolution.

Hargreaves D., Rice D.W., Sedelnikova S.E., Artymiuk P.J., Lloyd R.G., Rafferty J.B.

Nat. Struct. Biol. 5:441-446(1998) · UniProtKB (1)

Comparison of the three-dimensional structures of recombinant human H and horse L ferritins at high resolution.

Hempstead P.D., Yewdall S.J., Fernie A.R., Lawson D.M., Artymiuk P.J., Rice D.W., Ford G.C., Harrison P.M.

J. Mol. Biol. 268:424-448(1997) · UniProtKB (2)

Crystal structure of DNA recombination protein RuvA and a model for its binding to the Holliday junction.

Rafferty J.B., Sedelnikova S.E., Hargreaves D., Artymiuk P.J., Baker P.J., Sharples G.J., Mahdi A.A., Lloyd R.G., Rice D.W.

Science 274:415-421(1996) · UniProtKB (1)

The structure of Pyrococcus furiosus glutamate dehydrogenase reveals a key role for ion-pair networks in maintaining enzyme stability at extreme temperatures.

Yip K.S.P., Stillman T.J., Britton K.L., Artymiuk P.J., Baker P.J., Sedelnikova S.E., Engel P.C., Pasquo A., Chiaraluce R., Consalvi V. et al.

Structure 3:1147-1158(1995) · UniProtKB (2)

Common themes in redox chemistry emerge from the X-ray structure of oilseed rape (Brassica napus) enoyl acyl carrier protein reductase.

Rafferty J.B., Simon J.W., Baldock C., Artymiuk P.J., Baker P.J., Stuitje A.R., Slabas A.R., Rice D.W.

Structure 3:927-938(1995) · UniProtKB (1)

Human triosephosphate isomerase deficiency resulting from mutation of Phe-240.

Chang M.-L., Artymiuk P.J., Wu X., Hollan S., Lammi A., Maquat L.E.

Am. J. Hum. Genet. 52:1260-1269(1993) · UniProtKB (1)

Refinement of human lysozyme at 1.5-A resolution analysis of non-bonded and hydrogen-bond interactions.

Artymiuk P.J., Blake C.C.F.

J. Mol. Biol. 152:737-762(1981) · UniProtKB (1)

X-ray studies of water in crystals of lysozyme.

Blake C.C.F., Pulford W.C.A., Artymiuk P.J.

J. Mol. Biol. 167:693-723(1983) · UniProtKB (1)

An X-ray-crystallographic study of beta-lactamase II from Bacillus cereus at 0.35-nm resolution.

Sutton B.J., Artymiuk P.J., Cordero-Borboa A.E., Little C., Phillips D.C., Waley S.G.

Biochem. J. 248:181-188(1987) · UniProtKB (1)

Human triose-phosphate isomerase deficiency: a single amino acid substitution results in a thermolabile enzyme.

Daar I.O., Artymiuk P.J., Phillips D.C., Maquat L.E.

Proc. Natl. Acad. Sci. U.S.A. 83:7903-7907(1986) · UniProtKB (1)

Solving the structure of human H ferritin by genetically engineering intermolecular crystal contacts.

Lawson D.M., Artymiuk P.J., Yewdall S.J., Smith J.M.A., Livingstone J.C., Treffry A., Luzzago A., Levi S., Arosio P., Cesarini G. et al.

Nature 349:541-544(1991) · UniProtKB (1)

Refinement of an enzyme complex with inhibitor bound at partial occupancy. Hen egg-white lysozyme and tri-N-acetylchitotriose at 1.75 A resolution.

Cheetham J.C., Artymiuk P.J., Phillips D.C.

J. Mol. Biol. 224:613-628(1992) · Mapped (1)

The aconitase of Escherichia coli. Nucleotide sequence of the aconitase gene and amino acid sequence similarity with mitochondrial aconitases, the iron-responsive-element-binding protein and isopropylmalate isomerases.

Prodromou C., Artymiuk P.J., Guest J.R.

Eur. J. Biochem. 204:599-609(1992) · UniProtKB (3)

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