54 동전양면/ Two sides of a coin

다른 이를

이해 할 수 있다 해도

이해라는 말 속에서

옳고 그름을 버려서는 안 되요

하지만 옳고 그름은 동전 양면일지도 몰라요

삶은 모두 허용할지 몰라요

Two sides of a coin

Someone else who you can understand

In the word of understanding

You must not abandon right and wrong.

However, right and wrong seem be two sides of the same coin

Life will allow it both, maybe

52 감사기도 / Thanksgiving

무언가 그대의 것이 될때, 

그대가 무엇인 가를 이루었을 때

감사 기도부터 하세요

충분히 감사한 연 후에나 

그것을 온전히 즐길 수 있어요.

When something becomes yours, 

When you achieve something

Start by praying thanks

After giving enough thanks 

You can fully enjoy it.

50 돌봄 / Take care

올바름과 그름

나쁨과 좋음이란 선입견 아래

자신의 감정을 속박하지 말아요

자신의 감정에 솔직해야 해요

자신의 마음 돌보는 일은 중요해요

Right and wrong

Under the preconceptions

Don’t bind your feelings

You have to be honest about your feelings

It’s important to take care of your own mind

Molecular work 02: Cloning and sub-cloning, vectors

Since 2000, I generated quite a numbers of plasmids inserted with GOI (gene of interest).

During my master’s course,

The first project of cloning was to generate the human CD1d molecule-inserted plasmid that will be expressed in mammalian cells and set up high-expressed CD1d NKT.

Another cloning project was making a reference vector that has several cytokine fragments for PCRs for expression comparison among different cytokines. 

During my Ph.D. course, 

My project included generating quite a lot of in situ probes. I generated probe vectors that usually work for several species—rats, mice, and humans—even though I used them for only rat tissues.

Another project was to generate mammalian cell expression vectors for gene expression studies in cells and animals. Our group used liporfectamine, electroporation, and lentivirus for the functional studies in vitro and in vivo. I also generated siRNA fragments and dominant negative vectors to knock down gene expression. To generate antibodies, the first step I did was also to generate several different bacterial expression vectors that cover the pan, extracellular domain, and each isoform’s part.

Another project was to generate different promoter fragment-expressed vectors for luciferase assays. I generated a lot of mutagenetized promoter fragment vectors to find which promoter regions are critical.

During my post-doc stages, from time to time, whenever I felt like I needed something, I added vectors in need.

I switched from siRNA fragments to the shRNA lenti vector system and/or the Crisper/Cas9 system to knockdown or knockout genes.

I do not know when synthesized nucleotides started supporting cloning procedures. around 2010, we still used synthesized nucleotide fragments primarily for PCR probes, siRNA fragments, or mutagenesis fragments, but around 2020, I started ordering long-length synthesized fragments. That method really supports codon optimization as well.

Nowadays, people, including me, use SnapGene and other software to generate vector maps, but in 2000, I remember that we used MacVector. In or before 2000, the reason that laboratories had Macs was to use MacVector and FACS analysis software.

For cloning,

  1. Choose the proper vectors and check the vector maps.
  2. If you need to change or update the vector backbone, plan together.
  3. Design the final vector and set up cloning strategies.
  4. Order synthesized fragments and prepare backbone fragments, and other fragments needed.
  5. Anneal, select, screen, and confirm the sequences.

Which one is your choice: Snapgene vs. MacVector?

They are almost the same; just use the one that the company or academic lab provides!! I used MacVector, but recently I used Sanpgene. I feel they are similar without a big difference.

Which one is your choice: IDT vs. ThermoFisher or Life Technologies Gene Art for Synthesized Fragments?

You could check other companies as well, like mine, but the best choice was Life Technologies for me and my projects.

Sometimes, some fragments and others fail, but Thermo Gene Art almost succeeded.

When comparing IDT and Fisher, Fisher supports highly difficult nucleotides.

For codon optimization, please check different companies, including IDT, ThermoFisher, Nvoprolabs, etc. For the best optimization, your company might want its own program.

Which kits are yours to assemble several fragments?

NEB HiFi DNA Assembly vs. GeneArt Seamless, Gibson HiFi, EX, etc.

Generally, NEB HiFi could be comfortable with room-temperature reactions and fine up to 12 fragments.

GeneArt EX assembles up to 15 fragments.

Up to 6 to 7 fragments, both of them worked very well in my tubes.

Just check the manual and test them! 

For mutagenesis, the most common method is to just use PCR using fragments; I never used commercial mutagenesis kits. There are no reasons to use them.

Maybe you heard about T vector cloning. I think there is no reason to use T vector cloning system any more, but a long time ago, in or before 2000, we made a T vector system in the lab just using a PCR machine, a blunt-ended vector, and dTTP. Within 2 hours, we could make a T vector backbone for the next step. 

Who believes that in the old days of laboratories, we generated lab-made taqs, lab-made pfu, lab-made Lama phage DNA ladders, and more for our own experiments? Who believes we made PCR buffers as well!!

If you need consider Patent application for your design or GOI for your team and your company, you might use Patsnap

48. 함께 / Together

함께 바라보고
함께 꿈꾸고
함께 나아갈 수 있는 사람을
만날 수 있기 바래요
길고도 짧은 길
재미있고, 아름답게
이해 하고 이해 받으면서 걷기 바래요.


Looking together
dreaming together
I hope you meet Someone, 
whom you can move forward with
I hope you walk with someone, understanding and being understood.
long and short way during your journey
Full with fun and beauty

46. 틀 / the norm

비가 와도 우산을 쓰지 말아 봐요

자리가 비어도 앉지 말아 봐요

가질수 있는 걸 놓쳐도 보아요

생각의 틀에서 벗어나 봐요

이것도 저것도 즐겨봐요

Even if it rains, don’t use an umbrella

Even if the seat is empty, don’t sit down.

Even if you have what you could have, Just miss it out  

Step outside the norm

Enjoy this and that 

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