Scheinman S J
Department of Medicine, SUNY-Health Science Center, Syracuse 13210.
J Cell Physiol. 1988 Apr;135(1):122-6. doi: 10.1002/jcp.1041350117.
The LLC-PK1 cell line transports phosphate (Pi), glucose, and amino acids using carriers similar to those in proximal tubular cells. Others have reported that when monolayers reach confluence, hexose transport increases and activity of the A-amino acid transporter falls. The present study evaluates Pi uptake by two continuous cell lines derived from renal proximal tubule, and demonstrates that phosphate uptake falls sharply upon reaching confluence in LLC-PK1 cells but not in cultured opossum kidney (OK) cells. The fall in Pi uptake in LLC-PK1 cells at confluence represents a halving in Vmax for Na-dependent phosphate uptake (2.33 vs. 5.00 nmol/mg protein/5 min) without a change in Km (82 vs. 94 microM). Suppression of phosphate transport in confluent monolayers of LLC-PK1 cells is completely reversed by bringing the cells into suspension. As has been shown for the phorbol ester 12-O-tetradecanoyl-phorbol-13-acetate (TPA), exposure of monolayers to serum stimulates phosphate uptake, but unlike phorbol ester, serum does so without stimulating alanine uptake. OK cells differ from LLC-PK1 in that no change occurs in Pi uptake at confluence, although they resemble LLC-PK1 cells in that sugar uptake rises and alanine uptake falls at confluence. The different temporal patterns for Pi uptake in the two cell lines indicates that developmental change in the uptake of Pi is not linked to that of glucose or alanine.
LLC-PK1细胞系通过与近端肾小管细胞中相似的载体转运磷酸盐(Pi)、葡萄糖和氨基酸。其他人曾报道,当单层细胞达到汇合状态时,己糖转运增加,而α-氨基酸转运体的活性下降。本研究评估了源自肾近端小管的两种连续细胞系对Pi的摄取,并证明在LLC-PK1细胞中达到汇合状态时磷酸盐摄取急剧下降,但在培养的负鼠肾(OK)细胞中则不然。LLC-PK1细胞汇合时Pi摄取的下降代表钠依赖性磷酸盐摄取的Vmax减半(2.33对5.00 nmol/mg蛋白质/5分钟),而Km没有变化(82对94 microM)。将LLC-PK1细胞汇合单层中的细胞悬浮起来,可完全逆转对磷酸盐转运的抑制。正如佛波酯12-O-十四烷酰佛波醇-13-乙酸酯(TPA)所示,单层细胞暴露于血清会刺激磷酸盐摄取,但与佛波酯不同的是,血清这样做时不会刺激丙氨酸摄取。OK细胞与LLC-PK1细胞的不同之处在于,汇合时Pi摄取没有变化,尽管它们与LLC-PK1细胞相似,在汇合时糖摄取增加而丙氨酸摄取下降。两种细胞系中Pi摄取的不同时间模式表明,Pi摄取的发育变化与葡萄糖或丙氨酸的摄取变化无关。