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EcoKI特异性多肽的酪氨酸27可通过紫外线与溴脱氧尿苷取代的DNA靶序列发生交联。

Tyrosine 27 of the specificity polypeptide of EcoKI can be UV crosslinked to a bromodeoxyuridine-substituted DNA target sequence.

作者信息

Chen A, Powell L M, Dryden D T, Murray N E, Brown T

机构信息

Institute of Cell and Molecular Biology, University of Edinburgh, UK.

出版信息

Nucleic Acids Res. 1995 Apr 11;23(7):1177-83. doi: 10.1093/nar/23.7.1177.

Abstract

The specificity (S) subunit of the restriction enzyme EcoKI imparts specificity for the sequence AAC(N6)GTGC. Substitution of thymine with bromodeoxyuridine in a 25 bp DNA duplex containing this sequence stimulated UV light-induced covalent crosslinking to the S subunit. Crosslinking occurred only at the residue complementary to the first adenine in the AAC sequence, demonstrating a close contact between the major groove at this sequence and the S subunit. Peptide sequencing of a proteolytically-digested, crosslinked complex identified tyrosine 27 in the S subunit as the site of crosslinking. This is consistent with the role of the N-terminal domain of the S subunit in recognizing the AAC sequence. Tyrosine 27 is conserved in the S subunits of the three type I enzymes that share the sequence AA in the trinucleotide component of their target sequence. This suggests that tyrosine 27 may make a similar DNA contact in these other enzymes.

摘要

限制性内切酶EcoKI的特异性(S)亚基赋予了对序列AAC(N6)GTGC的特异性。在含有该序列的25bp DNA双链体中,用溴脱氧尿苷取代胸腺嘧啶会刺激紫外线诱导的与S亚基的共价交联。交联仅发生在与AAC序列中第一个腺嘌呤互补的残基处,这表明该序列的大沟与S亚基之间存在紧密接触。对经蛋白酶消化的交联复合物进行肽测序,确定S亚基中的酪氨酸27为交联位点。这与S亚基的N端结构域在识别AAC序列中的作用一致。酪氨酸27在其靶序列的三核苷酸组分中共享序列AA的三种I型酶的S亚基中是保守的。这表明酪氨酸27在这些其他酶中可能进行类似的DNA接触。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b395/306828/2456aaa268e1/nar00007-0100-a.jpg

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