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该基因中的罕见单核苷酸多态性(SNP)会干扰RPA的相互作用以及HELB的细胞功能。

Rare SNP in the gene interferes with RPA interaction and cellular function of HELB.

作者信息

Osei Bertha, May Benjamin H, Beard Joseph S, Thompson Matthew D, Alkam Duah, Zafar Maroof Khan, Bergstrom Erik, Byrum Stephanie D, Enemark Eric J, West Kirk L, Byrd Alicia K

机构信息

Department of Biochemistry and Molecular Biology, University of Arkansas for Medical Sciences, Little Rock, AR 72205, United States.

Department of Biological Sciences, Missouri University of Science and Technology, Rolla, MO 65401, United States.

出版信息

NAR Mol Med. 2025 May 23;2(2):ugaf019. doi: 10.1093/narmme/ugaf019. eCollection 2025 Apr.

Abstract

HELB is a human helicase involved in initiation of DNA replication, the replication stress response, and regulation of double-strand DNA break repair. rs75770066 is a low-frequency single-nucleotide polymorphism (SNP) in the gene that affects age at natural menopause (ANM). rs75770066 results in a D506G substitution in a HELB-specific motif in the 1A domain of the helicase that contains amino acids known to interact with RPA. We found that this amino acid change has no effect on the enzymatic activity of HELB on naked DNA substrates but reduces the rate of unwinding by HELB on RPA coated substrates, likely because D506G substitution in HELB reduces interaction with RPA. This impaired interaction of D506G HELB with RPA dramatically impairs the cellular function of HELB and likely results in the effects of rs75770066 as this reduces recruitment of HELB to sites of DNA damage. Reduced recruitment of D506G-HELB to double-strand DNA breaks and the concomitant increase in homologous recombination likely alters the levels of meiotic recombination, which affects the viability of gametes. Because menopause occurs when oocyte levels drop below a minimum threshold, altered repair of meiotic double-stranded DNA breaks has the potential to directly affect the ANM.

摘要

HELB是一种参与DNA复制起始、复制应激反应和双链DNA断裂修复调控的人类解旋酶。rs75770066是该基因中的一个低频单核苷酸多态性(SNP),它会影响自然绝经年龄(ANM)。rs75770066导致解旋酶1A结构域中HELB特异性基序发生D506G替换,该基序包含已知与RPA相互作用的氨基酸。我们发现,这种氨基酸变化对HELB在裸DNA底物上的酶活性没有影响,但会降低HELB在RPA包被底物上的解旋速率,这可能是因为HELB中的D506G替换降低了与RPA的相互作用。D506G HELB与RPA之间这种受损的相互作用极大地损害了HELB的细胞功能,并且可能导致rs75770066产生相应影响,因为这会减少HELB向DNA损伤位点的募集。D506G-HELB向双链DNA断裂处的募集减少以及同源重组随之增加,可能会改变减数分裂重组的水平,从而影响配子的活力。由于当卵母细胞水平降至最低阈值以下时会发生绝经,减数分裂双链DNA断裂修复的改变有可能直接影响自然绝经年龄。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9a6/12147029/917bde7ab32a/ugaf019figgra1.jpg

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