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Items: 1 to 20 of 493

1.

Engineering and characterization of a superfolder green fluorescent protein.

Pédelacq JD, Cabantous S, Tran T, Terwilliger TC, Waldo GS.

Nat Biotechnol. 2006 Jan;24(1):79-88. Epub 2005 Dec 20. Erratum in: Nat Biotechnol. 2006 Sep;24(9):1170.

PMID:
16369541
2.

Protein tagging and detection with engineered self-assembling fragments of green fluorescent protein.

Cabantous S, Terwilliger TC, Waldo GS.

Nat Biotechnol. 2005 Jan;23(1):102-7. Epub 2004 Dec 5.

PMID:
15580262
3.

Laboratory evolution of fast-folding green fluorescent protein using secretory pathway quality control.

Fisher AC, DeLisa MP.

PLoS One. 2008 Jun 11;3(6):e2351. doi: 10.1371/journal.pone.0002351.

4.

Rapid protein-folding assay using green fluorescent protein.

Waldo GS, Standish BM, Berendzen J, Terwilliger TC.

Nat Biotechnol. 1999 Jul;17(7):691-5.

PMID:
10404163
5.

New molecular reporters for rapid protein folding assays.

Cabantous S, Rogers Y, Terwilliger TC, Waldo GS.

PLoS One. 2008 Jun 11;3(6):e2387. doi: 10.1371/journal.pone.0002387. Erratum in: PLoS ONE. 2008;3(6). doi: 10.1371/annotation/acff33c4-bf92-4edb-ac57-53154ea38ab4.

6.
7.

Expression and use of superfolder green fluorescent protein at high temperatures in vivo: a tool to study extreme thermophile biology.

Cava F, de Pedro MA, Blas-Galindo E, Waldo GS, Westblade LF, Berenguer J.

Environ Microbiol. 2008 Mar;10(3):605-13. doi: 10.1111/j.1462-2920.2007.01482.x. Epub 2008 Jan 7.

PMID:
18190515
8.

Applicability of superfolder YFP bimolecular fluorescence complementation in vitro.

Ottmann C, Weyand M, Wolf A, Kuhlmann J, Ottmann C.

Biol Chem. 2009 Jan;390(1):81-90. doi: 10.1515/BC.2009.008.

PMID:
19007309
9.

A high-throughput approach to promoter study using green fluorescent protein.

Lu C, Bentley WE, Rao G.

Biotechnol Prog. 2004 Nov-Dec;20(6):1634-40.

PMID:
15575693
10.

In vivo and in vitro protein solubility assays using split GFP.

Cabantous S, Waldo GS.

Nat Methods. 2006 Oct;3(10):845-54.

PMID:
16990817
11.
12.

De novo folding of GFP fusion proteins: high efficiency in eukaryotes but not in bacteria.

Chang HC, Kaiser CM, Hartl FU, Barral JM.

J Mol Biol. 2005 Oct 21;353(2):397-409.

PMID:
16171814
13.

Mutations that suppress the thermosensitivity of green fluorescent protein.

Siemering KR, Golbik R, Sever R, Haseloff J.

Curr Biol. 1996 Dec 1;6(12):1653-63.

14.

Facilitating chromophore formation of engineered Ca(2+) binding green fluorescent proteins.

Holder AN, Ellis AL, Zou J, Chen N, Yang JJ.

Arch Biochem Biophys. 2009 Jun 1;486(1):27-34. doi: 10.1016/j.abb.2009.03.016. Epub 2009 Apr 7.

15.

Quantitative analysis of gene expression with an improved green fluorescent protein. p6.

Scholz O, Thiel A, Hillen W, Niederweis M.

Eur J Biochem. 2000 Mar;267(6):1565-70.

16.

Engineering fluorescent proteins.

Miyawaki A, Nagai T, Mizuno H.

Adv Biochem Eng Biotechnol. 2005;95:1-15. Review.

PMID:
16080263
17.

Systematic optimization of active protein expression using GFP as a folding reporter.

Omoya K, Kato Z, Matsukuma E, Li A, Hashimoto K, Yamamoto Y, Ohnishi H, Kondo N.

Protein Expr Purif. 2004 Aug;36(2):327-32.

PMID:
15249057
18.

Metal ion accessibility of histidine-modified superfolder green fluorescent protein expressed in Escherichia coli.

Tansila N, Becker K, Isarankura Na-Ayudhya C, Prachayasittikul V, Bülow L.

Biotechnol Lett. 2008 Aug;30(8):1391-6. doi: 10.1007/s10529-008-9692-7. Epub 2008 Mar 13.

PMID:
18338218
19.

Temperature influence on fluorescence intensity and enzyme activity of the fusion protein of GFP and hyperthermophilic xylanase.

Zhang C, Liu MS, Xing XH.

Appl Microbiol Biotechnol. 2009 Sep;84(3):511-7. doi: 10.1007/s00253-009-2006-8. Epub 2009 Apr 24.

PMID:
19390851
20.

Use of GFP fusions for the isolation of Escherichia coli strains for improved production of different target recombinant proteins.

Alfasi S, Sevastsyanovich Y, Zaffaroni L, Griffiths L, Hall R, Cole J.

J Biotechnol. 2011 Oct 20;156(1):11-21. doi: 10.1016/j.jbiotec.2011.08.016. Epub 2011 Aug 22.

PMID:
21875628
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