Lee Oukseub, Fought Angela J, Shidfar Ali, Heinz Richard E, Kmiecik Thomas E, Gann Peter H, Khan Seema A, Chatterton Robert T
Department of Surgery, Northwestern University Feinberg School of Medicine, Chicago, IL 60611, USA.
Department of Preventive Medicine, Northwestern University Feinberg School of Medicine, Chicago, IL 60611, USA.
Steroids. 2022 Jan;177:108937. doi: 10.1016/j.steroids.2021.108937. Epub 2021 Nov 9.
Although alterations of concentrations in circulating steroids have been linked to single nucleotide polymorphisms (SNPs) of steroidogenic enzymes, we hypothesized that SNPs of such enzymes located within the breast affect local steroid concentrations more than products of such SNPs absorbed from the circulation.
Steroids (estradiol, estrone, testosterone, androstenedione, DHEA, DHEA sulfate, progesterone) in nipple aspirate fluid (NAF) were purified by HPLC and they along with serum steroids were quantified by immunoassays. Polymorphisms of the transporter SLCO2B1 and enzymes HSD3B1, CYP19A1, HSD17B12, AKR1C3, CYP1B1, and SRD5A1 were measured in white blood cell DNA.
Steroid concentrations in NAF of subjects with homozygous minor genotypes differed from those with heterozygotes, i.e., SLCO2B1 (rs2851069) decreased DHEAS (p = 0.04), HSD17B12 (rs11555762) increased estradiol (p < 0.004), and CYP1B1 (rs1056836) decreased estradiol (p = 0.017) and increased progesterone (p = 0.05). Also, in serum, CYP19A1 (rs10046 and rs700518) both decreased testosterone (p = 0.02) and SRD5A1 increased androstenedione (p = 0.006). Steroids in subjects with major homozygotes did not differ from those with heterozygotes indicating recessive characteristics.
In the breast, SNPs were associated with decreased uptake of DHEAS (SLCO2B1), increased estradiol concentrations through increased oxidoreductase activity (HSD17B12), or decreased estradiol concentrations by presumed formation of 4-hydroxyestradiol (CYP1B1). CYP19A1 was associated with decreased testosterone concentrations in serum but had no significant effect on estrogen or androgen concentrations within the breast. The hormone differences observed in NAF were not usually evident in serum, indicating the importance of assessing the effect of these SNPs within the breast.
尽管循环类固醇激素浓度的改变与类固醇生成酶的单核苷酸多态性(SNP)有关,但我们推测位于乳腺内的此类酶的SNP对局部类固醇激素浓度的影响大于从循环中吸收的此类SNP产物。
通过高效液相色谱法(HPLC)纯化乳头抽吸液(NAF)中的类固醇激素(雌二醇、雌酮、睾酮、雄烯二酮、脱氢表雄酮、硫酸脱氢表雄酮、孕酮),并通过免疫测定法对其以及血清类固醇激素进行定量。在白细胞DNA中检测转运蛋白SLCO2B1和酶HSD3B1、CYP19A1、HSD17B12、AKR1C3、CYP1B1和SRD5A1的多态性。
纯合子次要基因型受试者的NAF中类固醇激素浓度与杂合子受试者不同,即SLCO2B1(rs2851069)降低了硫酸脱氢表雄酮(p = 0.04),HSD17B12(rs11555762)升高了雌二醇(p < 0.004),CYP1B1(rs1056836)降低了雌二醇(p = 0.017)并升高了孕酮(p = 0.05)。此外,在血清中,CYP19A1(rs10046和rs700518)均降低了睾酮(p = 0.02),SRD5A1升高了雄烯二酮(p = 0.006)。纯合子主要基因型受试者的类固醇激素与杂合子受试者无差异,表明具有隐性特征。
在乳腺中,SNP与硫酸脱氢表雄酮摄取减少(SLCO2B1)、通过氧化还原酶活性增加导致雌二醇浓度升高(HSD17B12)或通过推测形成4-羟基雌二醇导致雌二醇浓度降低(CYP1B1)有关。CYP19A1与血清中睾酮浓度降低有关,但对乳腺内雌激素或雄激素浓度无显著影响。在NAF中观察到的激素差异在血清中通常不明显,表明评估这些SNP在乳腺内的作用很重要。