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1  and D17Z1 (from chromosome 17), to generate human artificial chromosomes.
2  stable chromosome rearrangements and from a human artificial chromosome assay demonstrate that DXZ1
3 s and their importance in the development of human artificial chromosome assays.
4 d these strains will serve as good hosts for human artificial chromosome assembly and propagation.
5                                 Here, we use human artificial chromosome assembly assays to show that
6 , successful transfection of functional 1 Mb human artificial chromosome DNA into human cells has als
7 ammalian cells, or alphoid DNA, which allows human artificial chromosome formation in some human cell
8 uring CIN based on the use of a nonessential human artificial chromosome (HAC) carrying a constitutiv
9                     In the Tc goat system, a human artificial chromosome (HAC) comprising the entire
10                            Our method uses a human artificial chromosome (HAC) expressing the GFP tra
11    Harnessing centromere epigenetics permits human artificial chromosome (HAC) formation but is not s
12  cloned human centromeric regions to support human artificial chromosome (HAC) formation was assessed
13                                              Human artificial chromosome (HAC) technology has develop
14                               We have used a human artificial chromosome (HAC) to manipulate the epig
15                                            A human artificial chromosome (HAC) vector was constructed
16         In a comparative study, we show that human artificial chromosome (HAC) vectors based on alpha
17 an centromeric regions and in de novo formed Human Artificial Chromosome (HAC) was analyzed.
18                                              Human artificial chromosome (HAC)-based vectors offer a
19                                              Human artificial chromosome (HAC)-based vectors represen
20                                              Human artificial chromosome (HAC)-based vectors represen
21  memory, from the kinetochore of a synthetic human artificial chromosome (HAC).
22  human embryonic stem cells (hESc) utilizing human artificial chromosomes (HAC), which behave as auto
23                                              Human artificial chromosomes (HACs) are a potentially po
24                                              Human artificial chromosomes (HACs) can be formed de nov
25                                              Human artificial chromosomes (HACs) provide a unique opp
26                                        Prior human artificial chromosomes (HACs) required large array
27          Efficient construction of BAC-based human artificial chromosomes (HACs) requires optimizatio
28 ng of mammalian cells and the development of human artificial chromosomes (HACs).
29                                              Human artificial chromosomes have been used to model req
30                                 Here, a HAC (human artificial chromosome) module with a regulated cen
31 st-generation system for the construction of human artificial chromosomes should be suitable for diss
32                           This generation of human artificial chromosomes should be suitable for stud
33 upted higher-order alpha-satellite DNA, with human artificial chromosomes that contain discontinuous
34   Tc cattle were generated by transferring a human artificial chromosome vector carrying the entire u
35            We used the method to construct a human artificial chromosome vector of 404 kb encompassin
36                                              Human artificial chromosomes were also organized into di