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Sphingomyelins and ceramides with VLCPUFAs are excluded from low-density raft-like domains in differentiating spermatogenic cells

机译:带有VLCPUFA的鞘磷脂和神经酰胺从分化生精细胞的低密度筏状结构域中排除

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摘要

Rat spermatogenic cells contain sphingomyelins (SMs) and ceramides (Cers) with very long-chain PUFAs (VLCPUFAs) in nonhydroxylated (n-V) and 2-hydroxylated (h-V) forms. How these atypical species distribute among membrane fractions during differentiation was investigated here using a detergent-free procedure to isolate a small light raft-like low-density fraction and a large heavy fraction, mostly derived from the plasma membrane of spermatocytes, round spermatids, and late spermatids. The light fraction contained cholesterol, glycerophospholipids (GPLs), and SM with the same saturated fatty acids in all three stages. In the heavy fraction, as PUFA increased in the GPL and VLCPUFA in SM from spermatocytes to spermatids, the concentration of cholesterol was also augmented. The heavy fraction had mostly n-V SM in spermatocytes, but accumulated h-V SM and h-V Cer in spermatids. A fraction containing intracellular membranes had less SM and more Cer than the latter, but in both fractions SM and Cer species with h-V increased over species with n-V with differentiation. This accretion of h-V was consistent with the differentiation-dependent expression of fatty acid 2-hydroxylase (Fa2h), as it increased significantly from spermatocytes to spermatids. The non-raft region of the plasma membrane is thus the main target of the dynamic lipid synthesis and remodeling that is involved in germ cell differentiation.
机译:大鼠生精细胞包含鞘磷脂(SM)和神经酰胺(Cers),以及非羟基化(n-V)和2-羟基化(h-V)形式的超长链PUFA(VLCPUFA)。本文使用无洗涤剂程序研究了这些非典型物种如何在分化过程中分布于各膜组分之间,以分离出小的轻筏状低密度组分和大的重组分,这些组分主要来源于精细胞,圆形精子细胞和晚期精子细胞。轻馏分在所有三个阶段均包含胆固醇,甘油磷脂(GPL)和SM,以及相同的饱和脂肪酸。在大部分情况下,随着SM中GPL和VLCPUFA中PUFA从精细胞到精子细胞的增加,胆固醇的浓度也增加了。重组分在精细胞中大部分具有n-V SM,但在精细胞中积累了h-V SM和h-V Cer。含有细胞内膜的馏分比后者具有更少的SM和更多的Cer,但是在h-V的两个馏分中,SM和Cer物种均高于具有分化的n-V的物种。 h-V的这种增加与脂肪酸2-羟化酶(Fa2h)的分化依赖性表达相一致,因为它从精母细胞到精子细胞显着增加。因此,质膜的非筏形区域是参与生殖细胞分化的动态脂质合成和重塑的主要目标。

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