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DTSTART:20251026T030000
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DTSTART:20260329T020000
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UID:d0c1e88126e0e8d6d06c9b3fa91284f3http://www.ucmr.umu.se
DTSTAMP:20260621T112628Z
CATEGORIES:General
DESCRIPTION:<strong>IceLab welcomes you to our interdisciplinary seminar se
 ries with two short presentations\, coffee\, and cake!</strong><br /><br /
 ><strong>Presentations: </strong><br /><strong>Benefits of cooperation and
  communication in bacteria by Sandeep Krishna and <br />Modeling intracell
 ular regulation: Transcription factor kinetics by Andreas Grönlund</strong
 > <br />(details below).<br /><br /><strong>Place:</strong> <br />IceLab <
 a href='http://www.org.umu.se/icelab/english/' target='_blank'>(www.org.um
 u.se/icelab/english/)</a> - located in the NA-building (Naturvetarhuset)\,
  floor 3 near the skywalk from Universum<br /><br /><strong>Abstracts:</st
 rong><br /><strong>'Benefits of cooperation and communication in bacteria'
 </strong><br /><strong>Sandeep Krishna\,</strong> National Centre for Biol
 ogical Sciences\, Bangalore\, India<br /><br />Individual bacteria excrete
  many common goods\, such as exoenzymes\, siderophores\, biofilm products 
 and virulence factors\, which can benefit the functioning and growth of no
 t only themselves but also other individuals in their surroundings. I'll d
 iscuss how the functional form of this benefit affects the decision of whe
 ther to turn on or turn off production of the common good\, and how commun
 ication between bacteria may then become crucial for making such decisions
  correctly.<br /><br /><strong>'Modeling intracellular regulation: Transcr
 iption factor kinetics'</strong><br /><strong>Andreas Grönlund\,</strong> 
 UPSC\, Umeå University<br /><br />Basic physical constraints in how macrom
 olecules are made and how fast they can find each other in the intracellul
 ar environment constrain the fidelity of cellular regulation. These two pr
 operties are recently studied experimentally as well as analytically. I wi
 ll give a brief overview of how such processes can be characterized and mo
 deled.<br /><br />
DTSTART;TZID=Europe/Stockholm:20120830T150000
DTEND;TZID=Europe/Stockholm:20120830T160000
SUMMARY:IceLab Seminar Series - Sandeep Krishna and Andreas Grönlund
URL:http://www.ucmr.umu.se/about-ucmr/events/162-ucmr-calendar/165-general/
 244-icelab-seminar-series-sandeep-krishna-and-andreas-groenlund.html
X-ALT-DESC;FMTTYPE=TEXT/HTML:<strong>IceLab welcomes you to our interdiscip
 linary seminar series with two short presentations\, coffee\, and cake!</s
 trong><br /><br /><strong>Presentations: </strong><br /><strong>Benefits o
 f cooperation and communication in bacteria by Sandeep Krishna and <br />M
 odeling intracellular regulation: Transcription factor kinetics by Andreas
  Grönlund</strong> <br />(details below).<br /><br /><strong>Place:</stron
 g> <br />IceLab <a href='http://www.org.umu.se/icelab/english/' target='_b
 lank'>(www.org.umu.se/icelab/english/)</a> - located in the NA-building (N
 aturvetarhuset)\, floor 3 near the skywalk from Universum<br /><br /><stro
 ng>Abstracts:</strong><br /><strong>'Benefits of cooperation and communica
 tion in bacteria'</strong><br /><strong>Sandeep Krishna\,</strong> Nationa
 l Centre for Biological Sciences\, Bangalore\, India<br /><br />Individual
  bacteria excrete many common goods\, such as exoenzymes\, siderophores\, 
 biofilm products and virulence factors\, which can benefit the functioning
  and growth of not only themselves but also other individuals in their sur
 roundings. I'll discuss how the functional form of this benefit affects th
 e decision of whether to turn on or turn off production of the common good
 \, and how communication between bacteria may then become crucial for maki
 ng such decisions correctly.<br /><br /><strong>'Modeling intracellular re
 gulation: Transcription factor kinetics'</strong><br /><strong>Andreas Grö
 nlund\,</strong> UPSC\, Umeå University<br /><br />Basic physical constrai
 nts in how macromolecules are made and how fast they can find each other i
 n the intracellular environment constrain the fidelity of cellular regulat
 ion. These two properties are recently studied experimentally as well as a
 nalytically. I will give a brief overview of how such processes can be cha
 racterized and modeled.<br /><br />
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