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- <p style="font-size:125%">Epstein, W., & Kim, B. S. (1971). Potassium transpor <br><br>Laermann, V., Ćudić, E., Kipschull, K., Zimmann, P., & Altendorf, K. (2013). The sensor kinase KdpD of <i>Escherichia coli</i>4 KB (564 words) - 03:26, 19 September 2015
- <p style="font-size:125%">Epstein, W., & Kim, B. S. (1971). Potassium transpor <br><br>Laermann, V., Ćudić, E., Kipschull, K., Zimmann, P., & Altendorf, K. (2013). The sensor kinase KdpD of <i>Escherichia coli</i>4 KB (564 words) - 03:27, 19 September 2015
- <p style="font-size:125%">Epstein, W., & Kim, B. S. (1971). Potassium transpor <br><br>Laermann, V., Ćudić, E., Kipschull, K., Zimmann, P., & Altendorf, K. (2013). The sensor kinase KdpD of <i>Escherichia coli</i>4 KB (564 words) - 03:27, 19 September 2015
- <p style="font-size:125%">Epstein, W., & Kim, B. S. (1971). Potassium transpor <br><br>Laermann, V., Ćudić, E., Kipschull, K., Zimmann, P., & Altendorf, K. (2013). The sensor kinase KdpD of <i>Escherichia coli</i>4 KB (568 words) - 03:28, 19 September 2015
- ...mpR-P. At high osmolarity, EnvZ is more active, creating more OmpR-P. OmpR-P then binds to the low-affinity OmpR operator sites upstream of ompC. '''Group:''' Hamburg / '''Authors:''' Kai Pohl, Daniel Wedemeyer16 KB (2,412 words) - 13:18, 19 October 2021
- <p style="font-size:125%">Epstein, W., & Kim, B. S. (1971). Potassium transpor <br><br>Laermann, V., Ćudić, E., Kipschull, K., Zimmann, P., & Altendorf, K. (2013). The sensor kinase KdpD of <i>Escherichia coli</i>4 KB (639 words) - 16:45, 19 October 2019
- ...g. 7. Statistical analysis of binding efficiency of mSA. ****p < 0.0001. **p < 0.01. n=3. Error bars indicate SD.''' ...oated beads. Statistical analysis of binding efficiency of Spy network. ***p < 0.001. n=3. Error bars indicate SD.'''16 KB (2,512 words) - 10:26, 16 October 2016
- ...o>BBa_K3183000</partinfo>), P-ldh (<partinfo>BBa_K3183002</partinfo>), and P-slp (<partinfo>BBa_K3183001</partinfo>), when fused to mGFP5 (<partinfo>BBa 1. O'sullivan, Daniel J., and Todd R. Klaenhammer. “High- and Low-Copy-Number Lactococcus Shutt2 KB (255 words) - 17:49, 21 October 2019
- ...xS or SAH-hydrolase<ref>Sun, J., Daniel, R., Wagner-Döbler, I. & Zeng, A.-P. Is autoinducer-2 a universal signal for interspecies communication: a comp [''P''] = [''S'']<sub>0</sub> - K<sub>m</sub> W<sub>o</sub>([''S'']<sub>0</sub>K9 KB (1,335 words) - 14:15, 17 December 2020
- ...f name="First" />, <ref>Sun, J., Daniel, R., Wagner-Döbler, I. & Zeng, A.-P. Is autoinducer-2 a universal signal for interspecies communication: a comp ...rec, which has the same as WT function and successfully evolved <ref>Hauk, P. ''et al.'' Insightful directed evolution of Escherichia coli quorum sensin5 KB (685 words) - 18:01, 17 December 2020
- ...e= "First"></ref>, <ref>Sun, J., Daniel, R., Wagner-Döbler, I. & Zeng, A.-P. Is autoinducer-2 a universal signal for interspecies communication: a comp ...eron‘s repressor LsrR resulting in the induction of the genes <ref>Hauk, P. <i>et al.</i> Insightful directed evolution of <i>Escherichia coli</i> quo4 KB (583 words) - 21:22, 16 December 2020
- ...ame="First"></ref>,<ref>Sun, J., Daniel, R., Wagner-Döbler, I. & Zeng, A.-P. Is autoinducer-2 a universal signal for interspecies communication: a comp ...''', which has the same as WT function and successfully evolved <ref>Hauk, P. ''et al.'' Insightful directed evolution of Escherichia coli quorum sensin3 KB (469 words) - 22:31, 16 December 2020
- ...Pgrac by Spacer_0. Five genes encoding the shell proteins of Pdu BMC from P. thermoglucosidasius are placed downstream of the Pgrac promotor with their ...in the Pdu BMCs of S. enterica, which is highly similar to the Pdu BMCs of P. thermoglucosidasius, PduK and PduN are present less than PduA, PduB and Pd3 KB (400 words) - 11:35, 7 October 2021
- p { ...RAMM and virulence factor of <i>Streptococcus pyogenes</i><sup>[1]</sup>.</p>23 KB (2,952 words) - 15:34, 12 October 2023
- p { ...strands (β1–β6), and three α helices (α1–α3)</i><sup>[1]</sup>.</p>4 KB (562 words) - 12:23, 12 October 2023
- [http://www.ncbi.nlm.nih.gov/pubmed/22122227 Domínguez-Cuevas P, Mercier R, Leaver M, Kawai Y, Errington J. (2012) The rod to L-form transi ...i.nlm.nih.gov/pubmed/19212404 Leaver M., Dominguez-CuevasP., Coxhead J.M., Daniel R.A. and Errington J. (2009) Life without a wall or division machine in Bac15 KB (2,148 words) - 12:08, 26 October 2013
- [http://www.ncbi.nlm.nih.gov/pubmed/22122227 Domínguez-Cuevas P, Mercier R, Leaver M, Kawai Y, Errington J. (2012) The rod to L-form transi ...i.nlm.nih.gov/pubmed/19212404 Leaver M., Dominguez-CuevasP., Coxhead J.M., Daniel R.A. and Errington J. (2009) Life without a wall or division machine in Bac2 KB (350 words) - 11:46, 26 October 2013
- P. patens - NRT2.1, NRT2.2, NRT2.3, NRT2.4, NRT2.5 Filleur S, Daniel-Vedele F. 1998. Expression analysis of a high-affinity nitrate transporter2 KB (312 words) - 02:40, 11 October 2014
- ...tNRT2.2; N. plumbaginifolia - NpNRT2; C. reinhardtii - CrNRT2.1, CrNRT2.3; P. patens - NRT2.1, NRT2.2, NRT2.3, NRT2.4, NRT2.5 Filleur S, Daniel-Vedele F. 1998. Expression analysis of a high-affinity nitrate transporter2 KB (313 words) - 02:56, 11 October 2014
- ...tNRT2.2; N. plumbaginifolia - NpNRT2; C. reinhardtii - CrNRT2.1, CrNRT2.3; P. patens - NRT2.1, NRT2.2, NRT2.3, NRT2.4, NRT2.5 Filleur S, Daniel-Vedele F. 1998. Expression analysis of a high-affinity nitrate transporter2 KB (313 words) - 03:00, 11 October 2014