That is possible, but can you suggest a particular leucine zipper (name or sequence) in particular? I feel embarassed because I don't remember anyone of them right now.
【在 C*********m 的大作中提到】 : leucine zipper? : : which : these : any
l*y
7 楼
GCN4 more controllable-fkbp/frb
【在 s******y 的大作中提到】 : That is possible, but can you suggest a particular leucine zipper (name or : sequence) in particular? : I feel embarassed because I don't remember anyone of them right now.
s*y
8 楼
Wow, the fkbp/frb seems like a cool stuff with super high affinity! I am definitly going to read a lot more of the literature about it. The only concern I have is those domains are bigger than my expectation. The GCN leucine zipper sounds like a good idea because it is smaller, but the affinity is so so...let me see if they have mutants with higher affinity...
【在 l****y 的大作中提到】 : GCN4 : more controllable-fkbp/frb
w*e
9 楼
conjugate to ssDNA/RNA using like NHS chemistry?
which these any
【在 s******y 的大作中提到】 : Wow, the fkbp/frb seems like a cool stuff with super high affinity! : I am definitly going to read a lot more of the literature about it. The only concern I have is those domains are bigger than my expectation. : The GCN leucine zipper sounds like a good idea because it is smaller, but the affinity is so so...let me see if they have mutants with higher affinity...
s*y
10 楼
Unfortunately we cannot do that either because we need to express the protein in vivo. Conjugate them with nucleotide can only be done in vitro and there is no guarantee where the connection site is.
【在 w******e 的大作中提到】 : conjugate to ssDNA/RNA using like NHS chemistry? : : which : these : any
y*8
11 楼
how about Protein G B1 domain and binding motif on Fc
y*8
12 楼
Don't know the size limits. If the fusion domain can go above 25kd, then GST is a very good choice.
s*y
13 楼
这个应该也可以。但是我担心protein A or G 的binding domain 有人 单独用过么?就是不包含其他序列,光用那个binding domain,能和Fc 里面的 单独的motif结合么? GST蛋白不行。太大,而且GST 会导致转录出来的蛋白直接就成了homodimer 了。 其实,我刚才想了一下,发现不能用dimerization domain, 因为一旦成了 homodimer 就麻烦了,最好还是heterodimer, 象你说的那个Protein G + Fc domain
【在 y******8 的大作中提到】 : how about Protein G B1 domain and binding motif on Fc
y*8
14 楼
Tandem repeats of motif could increase the affinity by 10 fold or even more. Homodimerization could be diminished by polycistronic expression. By the way, if you are willing to dig the bacterial protein database, there are many many possibilities. In general, those proteins are small and readily folded. The affinity of those interaction are tremendously high.
【在 s******y 的大作中提到】 : 这个应该也可以。但是我担心protein A or G 的binding domain 有人 : 单独用过么?就是不包含其他序列,光用那个binding domain,能和Fc 里面的 : 单独的motif结合么? : GST蛋白不行。太大,而且GST 会导致转录出来的蛋白直接就成了homodimer 了。 : 其实,我刚才想了一下,发现不能用dimerization domain, 因为一旦成了 : homodimer 就麻烦了,最好还是heterodimer, 象你说的那个Protein G + Fc domain
y*8
15 楼
I think people hold patents on all of these. You might need to get approval first.
【在 s******y 的大作中提到】 : 这个应该也可以。但是我担心protein A or G 的binding domain 有人 : 单独用过么?就是不包含其他序列,光用那个binding domain,能和Fc 里面的 : 单独的motif结合么? : GST蛋白不行。太大,而且GST 会导致转录出来的蛋白直接就成了homodimer 了。 : 其实,我刚才想了一下,发现不能用dimerization domain, 因为一旦成了 : homodimer 就麻烦了,最好还是heterodimer, 象你说的那个Protein G + Fc domain
【在 y******8 的大作中提到】 : Tandem repeats of motif could increase the affinity by 10 fold or even more. : Homodimerization could be diminished by polycistronic expression. : By the way, if you are willing to dig the bacterial protein database, there : are many many possibilities. In general, those proteins are small and : readily folded. The affinity of those interaction are tremendously high.
s*y
17 楼
啊呀这么麻烦啊?难道这种类似的实验以前没有人设计过么?
approval
【在 y******8 的大作中提到】 : I think people hold patents on all of these. You might need to get approval : first.
y*8
18 楼
The protein G B1 domain is about 8kd, and would be hard to synthesize. Pratically, this is the only reason you need to ask for the material and permission to start. Otherwise, you could just do it and wait for response. Usually, people don't pay attention to nonprofit stuff.
Scaffold protein? Like PDZ domain in neuron junction? two PDZ domains from two differnt proteins pull them together to perform the function. Zhang Mingjie in HKUST studied a lot on PDZ and PDZ heterdimerization. you may check his website. http://bcz102.ust.hk/index_publications.htm
s*y
24 楼
谢谢。明天到实验室仔细看看去
【在 d******1 的大作中提到】 : Scaffold protein? : Like PDZ domain in neuron junction? two PDZ domains from two differnt : proteins pull them together to perform the function. : Zhang Mingjie in HKUST studied a lot on PDZ and PDZ heterdimerization. you : may check his website. : http://bcz102.ust.hk/index_publications.htm