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VERSION:2.0
PRODID:-//Vrije Universiteit Amsterdam//NONSGML v1.0//EN
NAME:PhD defence M.B.M.J. Kes
METHOD:PUBLISH
BEGIN:VEVENT
DTSTART:20260629T114500
DTEND:20260629T131500
DTSTAMP:20260629T114500
UID:phd-defence-m-b-m-j-kes@8F96275E-9F55-4B3F-A143-836282E12573
CREATED:20260921T050259
LOCATION:
SUMMARY:PhD defence M.B.M.J. Kes
X-ALT-DESC;FMTTYPE=text/html: <html> <body> <p><p>From transcriptome a
 nalysis to protein secretion</p></p> <h3>A behind-the-scenes look at 
 industrial bacteria reveals bottlenecks to increased protein producti
 on</h3><p>In the bioindustry, bacteria are often used to make protein
 s, for example to produce food, make fuel or develop drugs. Molecular
  biologist Mariah Kes examined the bottlenecks in protein production 
 of the bacterium "Bacillus subtilis" and how they can be solved to in
 crease the yield of various industrial proteins and enzymes.</p><p>Ke
 s shows how a combination of techniques can be used to figure out how
  to modify the bacterium to produce more proteins, but also shows the
  potential pitfalls of those techniques and how to overcome them.</p>
 <p>Kes and her colleagues found several improved bacterial strains th
 at can be used in industry to produce different proteins. Thus, highe
 r yields can be obtained from the same raw materials.</p><p>Learn mor
 e about the <a href="https://hdl.handle.net/1871.1/d8fb35a1-450b-4baf
 -b3d2-9aaab14e8fd9" data-new-window="true" target="_blank" rel="noope
 ner noreferrer">thesis</a></p> </body> </html>
DESCRIPTION: From transcriptome analysis to protein secretion <h3>A be
 hind-the-scenes look at industrial bacteria reveals bottlenecks to in
 creased protein production</h3>In the bioindustry, bacteria are often
  used to make proteins, for example to produce food, make fuel or dev
 elop drugs. Molecular biologist Mariah Kes examined the bottlenecks i
 n protein production of the bacterium "Bacillus subtilis" and how the
 y can be solved to increase the yield of various industrial proteins 
 and enzymes.Kes shows how a combination of techniques can be used to 
 figure out how to modify the bacterium to produce more proteins, but 
 also shows the potential pitfalls of those techniques and how to over
 come them.Kes and her colleagues found several improved bacterial str
 ains that can be used in industry to produce different proteins. Thus
 , higher yields can be obtained from the same raw materials.Learn mor
 e about the <a href="https://hdl.handle.net/1871.1/d8fb35a1-450b-4baf
 -b3d2-9aaab14e8fd9" data-new-window="true" target="_blank" rel="noope
 ner noreferrer">thesis</a>
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