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G Gemmecker

Explore the profile of G Gemmecker including associated specialties, affiliations and a list of published articles. Areas
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Articles 19
Citations 127
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Recent Articles
1.
Gschwind R, Gemmecker G, Kessler H
J Biomol NMR . 2010 Aug; 11(2):191-8. PMID: 20700828
The introduction of deuterated and partially deuterated protein samples has greatly facilitated the 13C assignment of larger proteins. Here we present a new version of the HC(CO)NH-TOCSY experiment, the ed-H(CCO)NH-TOCSY...
2.
Kessler H, Heller M, Gemmecker G, Diercks T, Planker E, Coles M
Ernst Schering Res Found Workshop . 2003 Apr; (42):59-85. PMID: 12664536
No abstract available.
3.
Dehner A, Planker E, Gemmecker G, Broxterman Q, Bisson W, Formaggio F, et al.
J Am Chem Soc . 2001 Jul; 123(27):6678-86. PMID: 11439056
The solution structure and the dimerization behavior of the lipophilic, highly C(alpha)-methylated model peptide, mBrBz-Iva(1)-Val(2)-Iva(3)-(alphaMe)Val(4)-(alphaMe)Phe(5)-(alphaMe)Val(6)-Iva(7)-NHMe, was studied by NMR spectroscopy and molecular dynamics simulations. The conformational analysis resulted in a...
4.
Gschwind R, Kessler H, Gemmecker G
J Magn Reson . 1999 Mar; 137(1):285-8. PMID: 10053162
A new multi-quantum version of the HBHA(CBCACO)NH experiment for partially deuterated protein samples is presented. The method is based on the significant reduction of the proton and carbon relaxation rates...
5.
Huenges M, Rolz C, Gschwind R, Peteranderl R, Berglechner F, Richter G, et al.
EMBO J . 1998 Jul; 17(14):4092-100. PMID: 9670024
The NusB protein of Escherichia coli is involved in the regulation of rRNA biosynthesis by transcriptional antitermination. In cooperation with several other proteins, it binds to a dodecamer motif designated...
6.
Leutner M, Gschwind R, Liermann J, Schwarz C, Gemmecker G, Kessler H
J Biomol NMR . 1998 Jun; 11(1):31-43. PMID: 9615996
The sequential assignment of backbone resonances is the first step in the structure determination of proteins by heteronuclear NMR. For larger proteins, an assignment strategy based on proton side-chain information...
7.
Berglechner F, Richter G, Fischer M, Bacher A, Gschwind R, Huenges M, et al.
Eur J Biochem . 1997 Nov; 248(2):338-46. PMID: 9346286
The product of the nusB gene of Escherichia coli modulates the efficiency of transcription termination at nut (N utilization) sites of various bacterial and bacteriophage lambda genes. Similar control mechanisms...
8.
Gemmecker G, Eberstadt M, Buhr A, Lanz R, Grdadolnik S, Kessler H, et al.
Biochemistry . 1997 Jun; 36(24):7408-17. PMID: 9200688
The transmembrane subunit of the glucose transporter, IICB(Glc), mediates vectorial transport with concomitant phosphorylation of glucose. Glucose phosphorylation proceeds through a cystein phosphate intermediate of the cytosolic IIB domain of...
9.
Gschwind R, Gemmecker G, Leutner M, Kessler H, Gutknecht R, Lanz R, et al.
FEBS Lett . 1997 Mar; 404(1):45-50. PMID: 9074635
The mannose transporter of the Escherichia coli bacterial phosphotransferase system consists of three subunits: IIAB, IIC and IID. IIABMan transfers phosphoryl groups to the transported substrate via phosphohistidine intermediates. Its...
10.
Eberstadt M, Grdadolnik S, Gemmecker G, Kessler H, Buhr A, Erni B
Biochemistry . 1996 Sep; 35(35):11286-92. PMID: 8784182
The structure of the IIBGlc domain of the Escherichia coli transporter for glucose was determined by multidimensional heteronuclear NMR. The glucose transporter (IICBGlc) belongs to the bacterial phosphotransferase system. It...